TY - THES A1 - Maimari, Theopisti T1 - The influence of N-terminal peptides of G-protein coupled receptor kinase (GRK) 2, 3 and 5 on β-adrenergic signaling T1 - Der Einfluss von N-terminalen Peptiden der G-Protein gekoppelten Rezeptorkinasen (GRK) 2, 3 und 5 in der β-adrenergen Signaltransduktion N2 - G protein coupled receptor kinases (GRK) phosphorylate and thereby desensitize G protein coupled receptors (GPCR) including β-adrenergic receptors (βAR), which are critical regulators of cardiac function. We identified the Raf kinase inhibitor protein (RKIP) as an endogenous inhibitor of GRK2 that leads to increased cardiac contractility via βAR activation. RKIP binds to the N-terminus (aa1-185) of GRK2, which is important for the GRK2/receptor interaction. Thereby it interferes with the GRK2/receptor interaction without interference with cytosolic GRK2 target activation. In this project, the RKIP/GRK interface was investigated to develop strategies that simulate the effects of RKIP on βAR. RKIP binding to different isoforms of GRK expressed in the heart was analyzed by protein interaction assays using full-length and N-termini of GRK2, GRK3 and GRK5: 1-53, 54-185 and 1-185. Co-immunoprecipitation (Co-IPs) and pull-down assays revealed that RKIP binds to the peptides of GRK2 and GRK3 but not to the ones of GRK5, which suggests the existence of several binding sites of RKIP within the N-termini of GRK2 and GRK3. To analyze whether the peptides of GRK2 and GRK3 are able to simulate the RKIP mediated interference of the GRK2/receptor interaction, we analyzed the β2-AR phosphorylation in the absence and presence of the peptides. Interestingly, N-termini (aa1-185) of GRK2 and GRK3 reduced β2AR phosphorylation to a comparable extent as RKIP. In line with reduced receptor phosphorylation, the peptides also reduced isoproterenol-stimulated receptor internalization as shown by [3H] CGP-12177 radioligand binding assay and fluorescence microscopy compared to control cells. Subsequently, these peptides increased downstream signaling of β2AR, i.e. the phosphorylation of the PKA substrate phosducin. In an attempt to elucidate the mechanism behind the observed effects, Co-IPs were performed in order to investigate whether the peptides bind directly to the β2-AR and block its phosphorylation by GRK2. Indeed, GRK2 1-185 and GRK3 1-185 could bind the receptor, suggesting that this way GRK2 is prevented from inhibiting the receptor. To investigate the physiological effect of GRK2 1-185, GRK3 1-185 and GRK5 1-185, their effect on neonatal mouse cardiomyocyte contractility and hypertrophy was analyzed. After long-term isoproterenol stimulation, in the presence of GRK2 1 185 and GRK3 1-185 the cross-sectional area of the cardiomyocytes showed no significant increase in comparison to the unstimulated control cells. In addition, upon isoproterenol stimulation, GRK2 1-185 and GRK3 1-185 increased the beat rate in cardiomyocytes, mimicking RKIP while the base impedance, an indicator of viability, remained stable. The N-termini (1-185) of GRK2 and GRK3 simulated RKIP’s function and had a significant influence on β2AR phosphorylation, on its downstream signaling and internalization, could bind β2-AR, increased beat rate and did not significantly induce hypertrophy, suggesting that they may serve as a model for the generation of new and more specific targeting strategies for GRK mediated receptor regulation. N2 - G-Protein gekoppelte Rezeptorkinasen (GRK) phosphorylieren und desensitisieren G-Protein gekoppelte Rezeptoren (GPCR), einschließlich β-adrenerge Rezeptoren (βAR), welche wichtige Regulatoren der Herzfunktion sind. Raf Kinase Inhibitor Protein (RKIP) ist ein endogener Inhibitor von GRK2, der zur Aktivierung von βAR führt und dadurch zur Steigerung der Herzkontraktilität. RKIP bindet N-terminal (1-185) an GRK2; der GRK2 N-Terminus ist wichtig für die GRK2/Rezeptor Interaktion. Durch diese Bindung wird GRK2 inhibiert und derer Interaktion mit den Rezeptor gestört, allerdings bleiben die zytosolische GRK2 Substrate unbeeinflusst. In diesem Projekt wurde die Interaktion zwischen RKIP und GRK untersucht, um neue Targeting Strategien zu entwickeln, die die positiven Effekte von RKIP auf βAR Signalwege simulieren. Die Bindung von RKIP an verschiedene, im Herzen lokalisierte GRK-Isoformen wurde über protein interaction assays untersucht: mit GRK2, GRK3 und GRK5 und mit deren N-terminalen Peptiden 1-53, 54-185, 1-185. Die Co-Immunopräzipitationen (Co-IPs) und die pull-down Versuche haben gezeigt, dass RKIP sowohl GRK2 und GRK3 als auch deren N-Termini bindet, GRK5 und dessen N-termini hingegen nicht. Daraus lässt sich schlussfolgern, dass sich mehrere RKIP Bindungsstellen an dem GRK2 N-Terminus befinden. Um zu analysieren, ob die GRK2- und GRK3-Peptide eine ähnliche Wirkung wie RKIP auf die Interaktion von GRK2 und Rezeptor aufweisen, wurde die Rezeptorphosphorylierung ermittelt. Es konnte gezeigt werden, dass GRK2 1-185 und GRK3 1-185 die Phosphorylierung des βAR reduzieren können. Radioligandbindungsassays mit [3H] CGP-12177 und Fluoreszenzmikroskopie zeigten zudem, dass GRK2 1-185 und GRK3 1-185 auch die Internalisierungsrate des βAR senken können. Anschließend hatten GRK2 1-185 und GRK3 1-185 einen positiven Effekt auf einem βAR downstream Signalmolekül. Hierbei handelte es sich um die Phosphorylierung von Phosducin, was ein PKA-Substrat ist. Um die Wirkungsweise der N-termini zu erläutern, wurde untersucht, ob diese direkt den β2AR binden und somit die GRK2 vermittelte Phosphorylierung hindern. Interessanterweise konnte gezeigt werden, dass GRK2 1-185 und GRK3 1- 185 den β2AR binden und dementsprechend einen Einfluss auf die Phosphorylierung haben. Des Weiteren, wurden die Effekte der Peptide auf Kontraktilität und Hypertrophie in neonatalen Mauskardiomyozyten analysiert. In Anwesenheit von GRK2 1-185 und GRK3 1-185 war die Querschnittsfläche der Mauskardiomyozyten nicht signifikant größer im Vergleich zu den unstimulierten Kontrollzellen. Außerdem wurde eine signifikante Erhöhung der Kontraktilität in den Mauskardiomyozyten mit GRK2 1-185 und GRK3 1-185 beobachtet. Insgesamt, konnten GRK2 1-185 und GRK3 1-185 RKIPs Funktion simulieren: sie hatten einen signifikanten Effekt auf β2AR-Phosphorylierung, Internalisierung und downstream Signaling. Zudem konnten sie die Kontraktilität erhöhen und hatten keinen Einfluss auf Hypertrophie. Somit könnten sie als Prototyp für die Entwicklung neuer Targeting Strategien für die GRK-vermittelte Rezeptor Regulation, genutzt werden. KW - G protein-coupled receptor kinase KW - Raf kinase inhibitor protein KW - Inhibition KW - Heart failure KW - Peptides Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-199322 ER - TY - JOUR A1 - Dekant, Wolfgang A1 - Bridges, James T1 - Assessment of reproductive and developmental effects of DINP, DnHP and DCHP using quantitative weight of evidence JF - Regulatory Toxicology and Pharmacology N2 - Quantitative weight of evidence (QWoE) methodology utilizes detailed scoring sheets to assess the quality/reliability of each publication on toxicity of a chemical and gives numerical scores for quality and observed toxicity. This QWoE-methodology was applied to the reproductive toxicity data on diisononylphthalate (DINP), di-n-hexylphthalate (DnHP), and dicyclohexylphthalate (DCHP) to determine if the scientific evidence for adverse effects meets the requirements for classification as reproductive toxicants. The scores for DINP were compared to those when applying the methodology DCHP and DnHP that have harmonized classifications. Based on the quality/reliability scores, application of the QWoE shows that the three databases are of similar quality; but effect scores differ widely. Application of QWoE to DINP studies resulted in an overall score well below the benchmark required to trigger classification. For DCHP, the QWoE also results in low scores. The high scores from the application of the QWoE methodology to the toxicological data for DnHP represent clear evidence for adverse effects and justify a classification of DnHP as category 1B for both development and fertility. The conclusions on classification based on the QWoE are well supported using a narrative assessment of consistency and biological plausibility. KW - n-hexyl phthalate KW - male rats KW - dicyclohexyl phthalate KW - Diisononyl phthalate KW - in-vivo KW - 2-Generation reproduction KW - testosterone production KW - sexual development KW - risk-assesment KW - fetal testis KW - weight of evidence KW - classification and labeling KW - reproductive and developmental toxicity KW - quantitative assessments Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186750 VL - 81 ER - TY - JOUR A1 - Arimany-Nardi, Cristina A1 - Minuesa, Gerard A1 - Pastor-Anglada, Marçal A1 - Keller, Thorsten A1 - Erkizia, Itziar A1 - Koepsell, Hermann A1 - Martinez-Picado, Javier T1 - Role of Human Organic Cation Transporter 1 (hOCT1) Polymorphisms in Lamivudine (3TC) Uptake and Drug-Drug Interactions JF - Frontiers in Pharmacology N2 - Lamivudine (3TC), a drug used in the treatment of HIV infection, needs to cross the plasma membrane to exert its therapeutic action. Human Organic cation transporter 1 (hOCT1), encoded by the SLC22A1 gene, is the transporter responsible for its uptake into target cells. As SLC22A1 is a highly polymorphic gene, the aim of this study was to determine how SNPs in the OCT1-encoding gene affected 3TC internalization and its interaction with other co-administered drugs. HEK293 cells stably transfected with either the wild type form or the polymorphic variants of hOCT1 were used to perform kinetic and drug-drug interaction studies. Protein co-immunoprecipitation was used to assess the impact of selected polymorphic cysteines on the oligomerization of the transporter. Results showed that 3TC transport efficiency was reduced in all polymorphic variants tested (R61C, C88R, S189L, M420del, and G465R). This was not caused by lack of oligomerization in case of variants located at the transporter extracellular loop (R61C and C88R). Drug-drug interaction measurements showed that co-administered drugs [abacavir (ABC), zidovudine (AZT), emtricitabine (FTC), tenofovir diproxil fumarate (TDF), efavirenz (EFV) and raltegravir (RAL)], differently inhibited 3TC uptake depending upon the polymorphic variant analyzed. These data highlight the need for accurate analysis of drug transporter polymorphic variants of clinical relevance, because polymorphisms can impact on substrate (3TC) translocation but even more importantly they can differentially affect drug-drug interactions at the transporter level. KW - hOCT1 KW - pharmacogenetics KW - lamivudine KW - HIV infection KW - therapy Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165236 VL - 7 IS - 175 ER - TY - JOUR A1 - Propping, Stefan A1 - Lorenz, Kristina A1 - Michel, Martin C. A1 - Wirth, Manfred P. A1 - Ravens, Ursula T1 - beta-Adrenoceptor-mediated Relaxation of Urinary Bladder Muscle in beta 2-Adrenoceptor Knockout Mice JF - Frontiers in Pharmacology N2 - Background and Objective: In order to characterize the β-adrenoceptor (AR) subtypes involved in agonist-stimulated relaxation of murine urinary bladder we studied the effects of (-)-isoprenaline and CL 316,243 on tonic contraction and spontaneous contractions in detrusor strips of wild-type (WT) and β2-AR knockout (β2-AR KO) mice. Materials and Methods: Urinary bladders were isolated from male WT and β2-AR KO mice. β-AR subtype expression was determined with quantitative real-time PCR. Intact muscle strips pre-contracted with KCl (40 mM) were exposed to cumulatively increasing concentrations of (-)-isoprenaline or β3-AR agonist CL 316,243 in the presence and absence of the subtype-selective β-AR blockers CGP 20712A (β1-ARs), ICI 118,551 (β2-ARs), and L748,337 (β3-ARs). Results: Quantitative real-time PCR confirmed lack of β2-AR expression in bladder tissue from β2-AR KO mice. In isolated detrusor strips, pre-contraction with KCl increased basal tone and enhanced spontaneous activity significantly more in β2-AR KO than in WT. (-)-Isoprenaline relaxed tonic tension and attenuated spontaneous activity with similar potency, but the concentrations required were two orders of magnitude higher in β2-AR KO than WT. The concentration-response curves (CRCs) for relaxation were not affected by CGP 20712A (300 nM), but were shifted to the right by ICI 118,551 (50 nM) and L748,337 (10 μM). The -logEC50 values for (-)-isoprenaline in WT and β2-AR KO tissue were 7.98 and 6.00, respectively, suggesting a large receptor reserve of β2-AR. (-)-CL 316,243 relaxed detrusor and attenuated spontaneous contractions from WT and β2-AR KO mice with a potency corresponding to the drug’s affinity for β3-AR. L743,337 shifted the CRCs to the right. Conclusion: Our findings in β2-AR KO mice suggest that there is a large receptor reserve for β2-AR in WT mice so that this β-AR subtype will mediate relaxation of tone and attenuation of spontaneous activity under physiological conditions. Nevertheless, upon removal of this reserve, β3-AR can also mediate murine detrusor relaxation. KW - detrusor muscle KW - relaxation KW - mucosa KW - beta2-adrenoceptor knockout KW - beta3 CL 316,243 Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165245 VL - 7 IS - 118 ER - TY - CHAP A1 - Werner, Rudolf A1 - Wakabayashi, Hiroshi A1 - Jahns, Roland A1 - Ergün, Süleyman A1 - Jahns, Valerie A1 - Higuchi, Takahiro T1 - PET-Guided Histological Characterization of Myocardial Infiltrating Cells in a Rat Model of Myocarditis T2 - European Heart Journal - Cardiovascular Imaging N2 - No abstract available. KW - Myokarditis KW - positron emission tomography KW - myocarditis KW - PET KW - 18F-FDG Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-161127 SN - 2047-2404 N1 - This is a pre-copyedited, author-produced version of an article accepted for publication in European Heart Journal Cardiovascular Imaging following peer review. The version of record . Eur Heart J Cardiovasc Imaging. ISSN: 2047-2404. Supplement, vol. 18, i1-i3, May 2017 is available online at: 10.1093/ehjci/jex071. VL - 18 IS - Supplement PB - Oxford University Press ER - TY - JOUR A1 - Bankoglu, Ezgi Eyluel A1 - Tschopp, Oliver A1 - Schmitt, Johannes A1 - Burkard, Philipp A1 - Jahn, Daniel A1 - Geier, Andreas A1 - Stopper, Helga T1 - Role of PTEN in Oxidative Stress and DNA Damage in the Liver of Whole-Body Pten Haplodeficient Mice JF - PLoS One N2 - Type 2 diabetes (T2DM) and obesity are frequently associated with non-alcoholic fatty liver disease (NAFLD) and with an elevated cancer incidence. The molecular mechanisms of carcinogenesis in this context are only partially understood. High blood insulin levels are typical in early T2DM and excessive insulin can cause elevated reactive oxygen species (ROS) production and genomic instability. ROS are important for various cellular functions in signaling and host defense. However, elevated ROS formation is thought to be involved in cancer induction. In the molecular events from insulin receptor binding to genomic damage, some signaling steps have been identified, pointing at the PI3K/AKT pathway. For further elucidation Phosphatase and Tensin homolog (Pten), a tumour suppressor phosphatase that plays a role in insulin signaling by negative regulation of PI3K/AKT and its downstream targets, was investigated here. Dihydroethidium (DHE) staining was used to detect ROS formation in immortalized human hepatocytes. Comet assay and micronucleus test were performed to investigate genomic damage in vitro. In liver samples, DHE staining and western blot detection of HSP70 and HO-1 were performed to evaluate oxidative stress response. DNA double strand breaks (DSBs) were detected by immunohistostaining. Inhibition of PTEN with the pharmacologic inhibitor VO-OHpic resulted in increased ROS production and genomic damage in a liver cell line. Knockdown of Pten in a mouse model yielded increased oxidative stress levels, detected by ROS levels and expression of the two stress-proteins HSP70 and HO-1 and elevated genomic damage in the liver, which was significant in mice fed with a high fat diet. We conclude that PTEN is involved in oxidative stress and genomic damage induction in vitro and that this may also explain the in vivo observations. This further supports the hypothesis that the PI3K/AKT pathway is responsible for damaging effects of high levels of insulin. KW - insulin KW - mouse models DNA damage KW - oxidative stress KW - mammalian genomics KW - fatty liver KW - micronuclei KW - insulin signaling Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146970 VL - 11 IS - 11 ER - TY - THES A1 - Messerer, Regina T1 - Synthesis of Dualsteric Ligands for Muscarinic Acetylcholine Receptors and Cholinesterase Inhibitors T1 - Synthese von dualsteren Liganden für muskarinerge Acetylcholinrezeptoren sowie Inhibitoren der Cholinesterasen N2 - The study is dealing with the synthesis and pharmacological investigation of newly designed dualsteric ligands of muscarinic acetylcholine receptors belonging to the superfamily of G protein-coupled receptors. Such bipharmacophoric ligands combine the advantages of the orthosteric binding site (high-affinity) and of the topographically distinct allosteric binding site (subtype-selectivity) resulting in compounds with reduced side effects. This opens the way to a new therapeutic approach in the treatment of e.g. chronic pain, drug withdrawal, Parkinson`s and Alzheimer`s disease. Furthermore, the newly synthesized dualsteric compounds were pharmacologically investigated in order to get a better understanding of the activation and signaling processes in muscarinic acetylcholine receptors, especially with regard to partial agonism. The development of the “dynamic ligand binding” concept offers new perspectives for ligand binding and signaling at G protein-coupled receptors. GPCRs are no longer considered as simple on/off switches. Dualsteric ligands can bind in a dualsteric pose, reflecting an active receptor state as well as in a purely allosteric binding pose, characterized by an inactive receptor state resulting in partial agonism. The degree of partial agonism depends on the ratio of active versus inactive receptor populations. On this basis, orthosteric/orthosteric hybrid ligands consisting of the antagonist atropine and scopolamine, respectively, as well as of the agonist iperoxo and isoxazole, respectively, linked via different alkyl chain length were synthesized in order to investigate partial agonism (Figure 1). Figure 1: Structures of the synthesized iperoxo/isoxazole-atropine/scopolamine-hybrids. Furthermore, different sets of quaternary and tertiary homodimers consisting either of two iperoxo or two acetylcholine units were synthesized in order to study their extent on partial agonism (Figure 2). The two agonists were connected by varying alkyl chain length. Binding studies on CHO-hM2 cells of the quaternary compounds revealed that dimerization of the agonist results in a loss of potency. The iperoxo-dimers reached higher maximum effects on the Gi- as well as on the Gs pathway in comparison to the acetylcholine-dimers. Besides the choice of the orthosteric building block (potency of the agonist), the alkyl chain length is also crucial for the degree of partial agonism. Figure 2: Structures of the synthesized quat./tert. iperoxo/acetylcholine-homodimers. Quinolone-based hybrids connected to the superagonist iperoxo and to the endogenous ligand acetylcholine, respectively, linked through an alkyl chain of different length were synthesized in order to develop further partial agonists (Figure 3). FRET studies confirmed M1 subtype-selectivity as well as linker dependent receptor response. The greatest positive FRET signal was observed with quinolone-C6-iper resulting from a positive cooperativity between the two separated moieties, alloster and orthoster. However, the corresponding hybrids with a longer linker led to an inverse FRET signal indicating a different binding mode, e.g. purely allosteric, in contrast to the shorter linked hybrids. Furthermore, the flexible alkyl spacer was replaced by a rigidified linker resulting in the hybrid quinolone-rigid-iperoxo (Figure 3). FRET studies on the M1 receptor showed reduced FRET kinetics, resulting from interactions between the bulky linker and the aromatic lid, located between the orthosteric and allosteric binding site. A bitopic binding mode of the rigidified hybrid is presumed. For further clarity, mutational studies are necessary. Figure 3: M1-selective hybrid compounds. Another aim of this work was the design and synthesis of new hybrid compounds, acting as agonists at the M1 and M2 receptor and as inhibitors for AChE and BChE in the context of M. Alzheimer. Several sets of hybrid compounds consisting of different pharmacophoric units (catalytic active site: phthalimide, naphthalimide, tacrine; peripheric anionic site: iperoxo, isoxazole) linked through a polymethylene chain of varying length were synthesized. Tac-C10-iper (Figure 4), consisting of tacrine and the superagonist iperoxo linked by a C10 polymethylene spacer, was found to have excellent anticholinesterase activity for both AChE (pIC50 = 9.81) and BChE (pIC50 = 8.75). Docking experiments provided a structural model to rationalize the inhibitory power towards AChE. Additionally, the tacrine related hybrids showed affinity to the M1 and M2 receptor. Such compounds, addressing more than one molecular target are favorable for multifactorial diseases such as Alzheimer. Figure 4: Structure of the most active compound regarding anticholinesterase activity. In summary, the choice of the pharmacophoric units, their connecting point as well as the nature, length, and flexibility of the linker play an important role for the activity of designed bivalent ligands. A shorter linker length cannot bridge both binding sites simultaneously in contrast to longer linker chains. On the other hand, too long linker chains can result in unwanted steric interactions. Further investigations with respect to structural variations of hybrid compounds, with or without quaternary ammonium groups, are necessary in the light of drug development. N2 - Die vorliegende Studie beschäftigt sich mit der Synthese und der pharmakologischen Untersuchung von neu entwickelten dualsteren Liganden des muskarinischen Acetylcholinrezeptors, welcher zur Superfamilie der G-Proteine gehört. In derartigen bipharmakophoren Liganden sind die Vorteile des orthosteren Bindemodus und des räumlich davon getrennten allosteren Bindemodus vereint. Der orthostere Bindemodus bewirkt eine hohe Affinität zum Rezeptor, während der allostere Bindemodus Subtypselektivität vermittelt. Dadurch weisen diese Verbindungen weniger Nebenwirkungen auf. Dies eröffnet einen neuen Therapieansatz in der medikamentösen Behandlung von z.B. chronischen Schmerzen, Drogenentzug, Morbus Parkinson und Morbus Alzheimer. Die neu synthetisierten, dualsteren Verbindungen wurden pharmakologisch untersucht, um ein besseres Verständnis über das Bindungsverhalten und die Signalweiterleitung an muskarinischen Acetylcholinrezeptoren zu erhalten, besonders in Hinblick auf Partialagonismus. Die Entwicklung des Konzeptes der „dynamischen Ligandenbindung“ bietet neue Perspektiven in Hinblick auf das Bindungsverhalten und die Signalweiterleitung an G-Protein gekoppelten Rezeptoren. Somit werden GPCRs nicht mehr nur in ihrem aktiven oder inaktiven Zustand betrachtet. Vielmehr können dualstere Liganden sowohl einen dualsteren Bindemodus, welcher den aktiven Rezeptorzustand widerspiegelt, als auch einen rein allosteren Bindemodus, welcher durch einen inaktiven Rezeptorzustand charakterisiert ist, einnehmen, was schließlich zu Partialagonismus führt. Die Stärke des resultierenden Partialagonismus hängt vom Verhältnis zwischen aktiver und inaktiver Rezeptorbesetzung ab. Auf Basis dessen wurden orthostere/orthostere Hybridverbindungen, bestehend aus einem Antagonisten, Atropin oder Scopolamin, und einem Agonisten, Iperoxo oder Isoxazol, die über eine Alkylkette unterschiedlicher Länge miteinander verknüpft sind, synthetisiert, um mit deren Hilfe den Partialagonismus zu steuern (Abbildung 1). Abbildung 1: Strukturen der synthetisierten Iperoxo/Isoxazol-Atropin/Scopolamin-Hybride. Es wurden verschiedene quartäre sowie tertiäre Homodimere, welche entweder aus zwei Iperoxo-Einheiten oder aus zwei Acetylcholin-Einheiten bestehen, synthetisiert, um deren Ausmaß in Bezug auf Partialagonismus untersuchen zu können (Abbildung 2). Die beiden Agonisten wurden über unterschiedlich lange Alkylketten miteinander verknüpft. Bindungsstudien an CHO-hM2 Zellen der quartären Verbindungen zeigten, dass die Dimerisierung eines Agonisten zu einer verringerten Wirkstärke führt. Die Dimere von Iperoxo erreichten sowohl auf dem Gi- als auch auf dem Gs-Signalweg höhere Maximaleffekte als die Dimere von Acetylcholin. Neben der Wahl des orthosteren Bausteins (Wirkstärke des Agonisten) spielt auch die Länge der Alkylkette eine entscheidende Rolle für die Stärke des Partialagonismus. Abbildung 2: Strukturen der synthetisierten quart./tert. Iperoxo/Acetylcholin-Homodimere. Um weitere Partialagonisten zu entwickeln, wurden Chinolon-basierte Verbindungen, die mit dem Superagonisten Iperoxo oder mit dem endogenen Liganden Acetylcholin über eine Alkylkette mit unterschiedlicher Länge verknüpft sind, synthetisiert (Abbildung 3). FRET-Messungen bestätigen, dass es sich bei den Hybriden um M1-subtypselektive Substanzen handelt und das FRET-Signal von der Länge der Zwischenkette abhängig ist. Das stärkste positive FRET-Signal wurde mit der Verbindung Chinolon-C6-Iper erzielt, welches durch positive Kooperativität zwischen den beiden Liganden, Alloster und Orthoster, zustande kommt. Im Gegensatz zu den kurzkettigen Hybriden beobachtete man bei den langkettigen Hybriden ein inverses FRET-Signal, welches auf einen anderen Bindemodus zum Rezeptor hindeutet, z.B. könnte es sich um eine rein allostere Bindung handeln. Außerdem wurde die flexible Alkylkette durch einen starren Linker ersetzt, welches im Hybrid Chinolon-rigide-Iperoxo verwirklicht ist (Abbildung 3). FRET-Messungen dieser starren Hybridverbindung am M1-Rezeptor zeigten eine verzögerte FRET-Kinetik, welche vermutlich auf Wechselwirkungen zwischen dem starren Linker und dem aromatischen Deckel, der sich zwischen der orthosteren und der allosteren Bindestelle befindet, zurückzuführen ist. Es wird vermutet, dass das starre Hybrid bitopisch in den Rezeptor bindet. Um diese Annahme bestätigen zu können, müssten Mutationsstudien durchgeführt werden. Abbildung 3: M1-selektive Hybridverbindungen. Ein weiteres Ziel dieser Arbeit war das Wirkstoffdesign und die Synthese von neuen Hybridverbindungen, die als Agonisten am M1- und am M2-Rezeptor sowie als Inhibitoren der AChE als auch der BChE im Hinblick auf die Alzheimer`sche Krankheit wirken sollen. Verschiedenartige Hybridverbindungen, bestehend aus unterschiedlichen pharmakophoren Gruppen (katalytische, aktive Seite: Phthalimid, Naphthalimid, Tacrin; periphere, anionische Seite: Iperoxo, Isoxazol), die über eine Polymethylenkette unterschiedlicher Länge miteinander verknüpft sind, wurden synthetisiert. Tac-C10-Iper (Abbildung 4), bestehend aus Tacrin und dem Superagonisten Iperoxo, welche über eine C10 Polymethylenkette miteinander verknüpft sind, zeigte exzellente Anticholinesterase-Aktivitäten sowohl für die AChE (pIC50 = 9.81) als auch für die BChE (pIC50 = 8.75). Docking-Experimente lieferten ein Strukturmodell, welches die inhibitorische Aktivität in Bezug auf die AChE begründet. Zusätzlich zeigten die aus Tacrin bestehenden Hybride Affinität zum M1- als auch zum M2-Rezeptor. Solche Verbindungen, die mehr als ein Zielmolekül adressieren, sind für multifaktorielle Krankheiten, wie z.B. die Alzheimer`sche Krankheit, von Vorteil. Abbildung 4: Struktur der aktivsten Substanz in Bezug auf die Anticholinesterase-Aktivität. Zusammenfassend kann festgestellt werden, dass sowohl die Wahl des Pharmakophors, deren Verbindungsstelle als auch die Zusammensetzung, Länge und Flexibilität des Linkers eine große Rolle für die Aktivität der entwickelten bivalenten Verbindungen spielen. Kurzkettige Linker können im Gegensatz zu längeren Zwischenketten nicht beide Bindestellen gleichzeitig überbrücken. Andererseits können zu lange Zwischenketten unerwünschte sterische Wechselwirkungen hervorrufen. Weitere Untersuchungen in Bezug auf strukturelle Veränderungen der Hybridverbindungen, mit oder ohne quartäre Ammoniumgruppen, sind in Bezug auf die Arzneimittelentwicklung notwendig.   KW - Cholinesteraseinhibitor KW - Muscarinrezeptor KW - Ligand KW - GTP-bindende Proteine KW - dualsteric ligands KW - muscarinic acetylcholine receptor KW - cholinesterase inhibitors KW - receptors KW - coupled KW - gprotein KW - inhibitors KW - cholinesterase Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149007 ER - TY - JOUR A1 - Vogl, Silvia A1 - Lutz, Roman W. A1 - Schönfelder, Gilbert A1 - Lutz, Werner K. T1 - CYP2C9 genotype vs. metabolic phenotype for individual drug dosing - a correlation analysis using flurbiprofen as probe drug JF - PLoS ONE N2 - Currently, genotyping of patients for polymorphic enzymes responsible for metabolic elimination is considered a possibility to adjust drug dose levels. For a patient to profit from this procedure, the interindividual differences in drug metabolism within one genotype should be smaller than those between different genotypes. We studied a large cohort of healthy young adults (283 subjects), correlating their CYP2C9 genotype to a simple phenotyping metric, using flurbiprofen as probe drug. Genotyping was conducted for CYP2C9*1, *2, *3. The urinary metabolic ratio MR (concentration of CYP2C9-dependent metabolite divided by concentration of flurbiprofen) determined two hours after flurbiprofen (8.75 mg) administration served as phenotyping metric. Linear statistical models correlating genotype and phenotype provided highly significant allele-specific MR estimates of 0.596 for the wild type allele CYP2C9*1, 0.405 for CYP2C9*2 (68 % of wild type), and 0.113 for CYP2C9*3 (19 % of wild type). If these estimates were used for flurbiprofen dose adjustment, taking 100 % for genotype *1/*1, an average reduction to 84 %, 60 %, 68 %, 43 %, and 19% would result for genotype *1/*2, *1/*3, *2/*2, *2/*3, and *3/*3, respectively. Due to the large individual variation within genotypes with coefficients of variation >= 20% and supposing the normal distribution, one in three individuals would be out of the average optimum dose by more than 20 %, one in 20 would be 40% off. Whether this problem also applies to other CYPs and other drugs has to be investigated case by case. Our data for the given example, however, puts the benefit of individual drug dosing to question, if it is exclusively based on genotype. KW - cytochrome P450 2C9 KW - warfarin polymorphisms KW - tolbutamide substrate KW - impact pharmacogenetics KW - 4'-hydroxylation KW - allelic variant KW - liver microsomes Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148783 VL - 10 IS - 3 ER - TY - THES A1 - Perpiñá Viciano, Cristina T1 - Study of the activation mechanisms of the CXC chemokine receptor 4 (CXCR4) and the atypical chemokine receptor 3 (ACKR3) T1 - Untersuchung zum Aktivierungsmechanismus des CXC Chemokin‐Rezeptor 4 (CXCR4) und des atypischen Chemokin‐Rezeptor 3 (ACKR3) N2 - The CXC chemokine receptor 4 (CXCR4) and the atypical chemokine receptor 3 (ACKR3) are seven transmembrane receptors that are involved in numerous pathologies, including several types of cancers. Both receptors bind the same chemokine, CXCL12, leading to significantly different outcomes. While CXCR4 activation generally leads to canonical GPCR signaling, involving Gi proteins and β‐arrestins, ACKR3, which is predominantly found in intracellular vesicles, has been shown to signal via β‐arrestin‐dependent signaling pathways. Understanding the dynamics and kinetics of their activation in response to their ligands is of importance to understand how signaling proceeds via these two receptors. In this thesis, different Förster resonance energy transfer (FRET)‐based approaches have been combined to individually investigate the early events of their signaling cascades. In order to investigate receptor activation, intramolecular FRET sensors for CXCR4 and ACKR3 were developed by using the pair of fluorophores cyan fluorescence protein and fluorescence arsenical hairpin binder. The sensors, which exhibited similar functional properties to their wild‐type counterparts, allowed to monitor their ligand-induced conformational changes and represent the first RET‐based receptor sensors in the field of chemokine receptors. Additional FRET‐based settings were also established to investigate the coupling of receptors with G proteins, rearrangements within dimers, as well as G protein activation. On one hand, CXCR4 showed a complex activation mechanism in response to CXCL12 that involved rearrangements in the transmembrane domain of the receptor followed by rearrangements between the receptor and the G protein as well as rearrangements between CXCR4 protomers, suggesting a role of homodimers in the activation course of this receptor. This was followed by a prolonged activation of Gi proteins, but not Gq activation, via the axis CXCL12/CXCR4. In contrast, the structural rearrangements at each step of the signaling cascade in response to macrophage migration inhibitory factor (MIF) were dynamically and kinetically different and no Gi protein activation via this axis was detected. These findings suggest distinct mechanisms of action of CXCL12 and MIF on CXCR4 and provide evidence for a new type of sequential signaling events of a GPCR. Importantly, evidence in this work revealed that CXCR4 exhibits some degree of constitutive activity, a potentially important feature for drug development. On the other hand, by cotransfecting the ACKR3 sensor with K44A dynamin, it was possible to increase its presence in the plasma membrane and measure the ligand‐induced activation of this receptor. Different kinetics of ACKR3 activation were observed in response to CXCL12 and three other agonists by means of using the receptor sensor developed in this thesis, showing that it is a valuable tool to study the activation of this atypical receptor and pharmacologically characterize ligands. No CXCL12‐induced G protein activation via ACKR3 was observed even when the receptor was re-localized to the plasma membrane by means of using the mutant dynamin. Altogether, this thesis work provides the temporal resolution of signaling patterns of two chemokine receptors for the first time as well as valuable tools that can be applied to characterize their activation in response to pharmacologically relevant ligands. N2 - Der CXC Chemokin‐Rezeptor 4 (CXCR4) und der atypische Chemokin‐Rezeptor 3 (ACKR3) sind heptatransmembranäre Rezeptoren, die in zahlreichen Krankheitsbildern eine Rolle spielen, wie in einigen Krebsarten. Beide Rezeptoren werden zwar von dem gleichen Chemokin CXCL12 aktiviert, allerdings mit unterschiedlichen Signalweiterleitungsmustern. Die Aktivierung von CXCR4 führt zu kanonischer GPCR Signaltransduktion über Gi‐Proteine und β‐Arrestine. Die Signalweiterleitung des Rezeptors ACKR3 hingegen, welcher hauptsächlich in intrazellulären Vesikeln vorliegt, erfolgt über ß‐Arrestinabhängige Signalwege. Es ist von großer Wichtigkeit die Dynamik und Kinetik dieser beiden Rezeptoren hinsichtlich der Aktivierung durch ihre Liganden und der Signalweiterleitung zu verstehen. In dieser Arbeit wurden verschiedene Förster‐Resonanzenergietransfer (FRET) Anwendungen kombiniert, um die frühen Phasen der Signal‐Kaskade von CXCR4 und ACKR3 zu untersuchen. Zur genaueren Aufklärung der Rezeptoraktivierung wurden intramolekulare FRET‐Sensoren entwickelt, hierzu wurden die Fluorophore Cyan‐fluoreszierendes Protein und engl. fluorescence arsenical hairpin binder verwendet. Die generierten Sensoren zeigten ähnliche funktionelle Eigenschaften wie die unveränderten Rezeptoren. Liganden‐induzierte Änderungen der Rezeptorkonformation können mittels dieser Sensoren beobachtet werden und stellen die ersten RET‐basierten Sensoren auf dem Forschungsgebiet der Chemokin‐Rezeptoren dar. Weitere FRET‐basierte Methoden wurden zur Untersuchung von Interaktionen zwischen Rezeptor und G‐Protein, Neuanordnung von Dimeren, sowie der G‐Protein Aktivierung eingesetzt und für beide Chemokin‐Rezeptoren etabliert. CXCR4 zeigte einen komplexen Aktivierungsmechanismus nach Stimulation durch CXCL12, bei welchem zunächst eine Neuordnung der Rezeptor‐Transmembrandomäne gefolgt von Neuordnungen zwischen Rezeptor und G‐Protein und zuletzt eine Neuordnung zwischen CXCR4 Protomeren erfolgte. Dies impliziert, dass im Aktivierungsprozess des Rezeptors Homodimere eine Rolle spielen. Zudem wurde eine verlängerte Gi ‐Protein Aktivierung gegenüber der Gq‐Protein Aktivierung bei CXCL12 stimuliertem CXCR4 beobachtet. Hingegen zeigte eine Stimulierung mit dem Macrophage Migration Inhibitory Factor (MIF) bei jedem Schritt der frühen Singal‐Kaskade veränderte Dynamiken und Kinetiken im Vergleich zu CXCL12. Darüber hinaus konnte keine Gi ‐Protein Aktivierung festgestellt werden. Dieser Befund zeigt individuelle Mechanismen für MIF und CXCL12 am CXCR4‐Rezeptor und liefert Belege für eine neuer Art von sequenziellen Signalweiterleitungen an GPCRs. Eine wichtige Beobachtung dieser Arbeit für eine potentielle Medikamentenentwicklung ist das CXCR4 ligandenunabhängige Aktivität zeigt. Um die Aktivierung des ACKR3 Sensors messen zu können wurde durch eine Co‐Transfektion mit K44A Dynamin eine höhere Membranständigkeit erreicht. CXCL12 und drei weiteren Agonisten zeigten am hier entwickelten ACKR3‐Sensor unterscheidbare Kinetiken. Mit diesem wertvollen Werkzeug können Liganden an diesem atypischen Rezeptor pharmakologisch charakterisiert werden. Es konnte keine CXCL12‐induzierte G‐Protein Aktivierung gemessen werden, trotz der stärkeren Präsenz an der Plasmamembran mit Hilfe der Dynamin‐Mutante. In Summe liefert diese Arbeit zum ersten Mal eine zeitliche Auflösung von Signalweiterleitungsmustern von zwei Chemokin‐Rezeptoren sowie wertvolle Werkzeuge zur Charakterisierung der frühen Phase der Signal‐Kaskade durch andere pharmakologisch relevanten Liganden. KW - G protein-coupled receptors KW - Chemokine receptors KW - GPCR signaling KW - Förster Resonance Energy Transfer KW - FRET sensors Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192371 ER - TY - JOUR A1 - Mambretti, Egle M. A1 - Kistner, Katrin A1 - Mayer, Stefanie A1 - Massotte, Dominique A1 - Kieffer, Brigitte L. A1 - Hoffmann, Carsten A1 - Reeh, Peter W. A1 - Brack, Alexander A1 - Asan, Esther A1 - Rittner, Heike L. T1 - Functional and structural characterization of axonal opioid receptors as targets for analgesia JF - Molecular Pain N2 - Background Opioids are the gold standard for the treatment of acute pain despite serious side effects in the central and enteric nervous system. µ-opioid receptors (MOPs) are expressed and functional at the terminals of sensory axons, when activated by exogenous or endogenous ligands. However, the presence and function of MOP along nociceptive axons remains controversial particularly in naïve animals. Here, we characterized axonal MOPs by immunofluorescence, ultrastructural, and functional analyses. Furthermore, we evaluated hypertonic saline as a possible enhancer of opioid receptor function. Results Comparative immunolabeling showed that, among several tested antibodies, which all provided specific MOP detection in the rat central nervous system (CNS), only one monoclonal MOP-antibody yielded specificity and reproducibility for MOP detection in the rat peripheral nervous system including the sciatic nerve. Double immunolabeling documented that MOP immunoreactivity was confined to calcitonin gene-related peptide (CGRP) positive fibers and fiber bundles. Almost identical labeling and double labeling patterns were found using mcherry-immunolabeling on sciatic nerves of mice producing a MOP-mcherry fusion protein (MOP-mcherry knock-in mice). Preembedding immunogold electron microscopy on MOP-mcherry knock-in sciatic nerves indicated presence of MOP in cytoplasm and at membranes of unmyelinated axons. Application of [D-Ala\(^2\), N-MePhe\(^4\), Gly-ol]-enkephalin (DAMGO) or fentanyl dose-dependently inhibited depolarization-induced CGRP release from rat sciatic nerve axons ex vivo, which was blocked by naloxone. When the lipophilic opioid fentanyl was applied perisciatically in naïve Wistar rats, mechanical nociceptive thresholds increased. Subthreshold doses of fentanyl or the hydrophilic opioid DAMGO were only effective if injected together with hypertonic saline. In vitro, using β-arrestin-2/MOP double-transfected human embryonic kidney cells, DAMGO as well as fentanyl lead to a recruitment of β-arrestin-2 to the membrane followed by a β-arrestin-2 reappearance in the cytosol and MOP internalization. Pretreatment with hypertonic saline prevented MOP internalization. Conclusion MOPs are present and functional in the axonal membrane from naïve animals. Hypertonic saline acutely decreases ligand-induced internalization of MOP and thereby might improve MOP function. Further studies should explore potential clinical applications of opioids together with enhancers for regional analgesia. KW - µ-Opioid receptor KW - hypertonic solution KW - fentanyl KW - calcitonin gene-related peptide KW - DAMGO KW - internalization KW - peripheral nerve KW - ultrastructure Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145917 IS - 12 ER - TY - JOUR A1 - Othman, Eman M. A1 - Naseem, Muhammed A1 - Awad, Eman A1 - Dandekar, Thomas A1 - Stopper, Helga T1 - The Plant Hormone Cytokinin Confers Protection against Oxidative Stress in Mammalian Cells JF - PLoS One N2 - Modulating key dynamics of plant growth and development, the effects of the plant hormone cytokinin on animal cells gained much attention recently. Most previous studies on cytokinin effects on mammalian cells have been conducted with elevated cytokinin concentration (in the μM range). However, to examine physiologically relevant dose effects of cytokinins on animal cells, we systematically analyzed the impact of kinetin in cultured cells at low and high concentrations (1nM-10μM) and examined cytotoxic and genotoxic conditions. We furthermore measured the intrinsic antioxidant activity of kinetin in a cell-free system using the Ferric Reducing Antioxidant Power assay and in cells using the dihydroethidium staining method. Monitoring viability, we looked at kinetin effects in mammalian cells such as HL60 cells, HaCaT human keratinocyte cells, NRK rat epithelial kidney cells and human peripheral lymphocytes. Kinetin manifests no antioxidant activity in the cell free system and high doses of kinetin (500 nM and higher) reduce cell viability and mediate DNA damage in vitro. In contrast, low doses (concentrations up to 100 nM) of kinetin confer protection in cells against oxidative stress. Moreover, our results show that pretreatment of the cells with kinetin significantly reduces 4-nitroquinoline 1-oxide mediated reactive oxygen species production. Also, pretreatment with kinetin retains cellular GSH levels when they are also treated with the GSH-depleting agent patulin. Our results explicitly show that low kinetin doses reduce apoptosis and protect cells from oxidative stress mediated cell death. Future studies on the interaction between cytokinins and human cellular pathway targets will be intriguing. KW - DNA damage KW - apoptosis KW - oxidative stress KW - fluorescence recovery after photobleaching KW - lymphocytes KW - antioxidants KW - cell staining KW - cytokinins Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147983 VL - 11 IS - 12 ER - TY - JOUR A1 - Förtsch, Christina A1 - Hupp, Sabrina A1 - Ma, Jiangtao A1 - Mitchell, Timothy J. A1 - Maier, Elke A1 - Benz, Roland A1 - Iliev, Asparouh I. T1 - Changes in Astrocyte Shape Induced by Sublytic Concentrations of the Cholesterol-Dependent Cytolysin Pneumolysin Still Require Pore-Forming Capacity N2 - Streptococcus pneumoniae is a common pathogen that causes various infections, such as sepsis and meningitis. A major pathogenic factor of S. pneumoniae is the cholesterol-dependent cytolysin, pneumolysin. It produces cell lysis at high concentrations and apoptosis at lower concentrations. We have shown that sublytic amounts of pneumolysin induce small GTPase-dependent actin cytoskeleton reorganization and microtubule stabilization in human neuroblastoma cells that are manifested by cell retraction and changes in cell shape. In this study, we utilized a live imaging approach to analyze the role of pneumolysin’s pore-forming capacity in the actin-dependent cell shape changes in primary astrocytes. After the initial challenge with the wild-type toxin, a permeabilized cell population was rapidly established within 20–40 minutes. After the initial rapid permeabilization, the size of the permeabilized population remained unchanged and reached a plateau. Thus, we analyzed the non-permeabilized (non-lytic) population, which demonstrated retraction and shape changes that were inhibited by actin depolymerization. Despite the non-lytic nature of pneumolysin treatment, the toxin’s lytic capacity remained critical for the initiation of cell shape changes. The non-lytic pneumolysin mutants W433F-pneumolysin and delta6-pneumolysin, which bind the cell membrane with affinities similar to that of the wild-type toxin, were not able to induce shape changes. The initiation of cell shape changes and cell retraction by the wild-type toxin were independent of calcium and sodium influx and membrane depolarization, which are known to occur following cellular challenge and suggested to result from the ion channel-like properties of the pneumolysin pores. Excluding the major pore-related phenomena as the initiation mechanism of cell shape changes, the existence of a more complex relationship between the pore-forming capacity of pneumolysin and the actin cytoskeleton reorganization is suggested. KW - Toxikologie KW - pneumolysin KW - pore formation KW - cytoskeleton Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69084 ER - TY - THES A1 - Müller, Stephanie T1 - Identification of early molecular changes associated with Fumonisin B1-induced carcinogenesis in vivo and in vitro T1 - Frühe molekulare Ereignisse im Mechanismus der Kanzerogenität des Mykotoxins Fumonisin B1 N2 - Fumonisin B1 (FB1) is a mycotoxin produced by various Fusarium species and constitutes a major contaminant of maize worldwide. A 2-year carcinogenicity study of the National Toxicology Program (NTP) in Fischer N344 rats showed that male rats were most susceptible to FB1-induced tumor formation in the kidney. Histopathologically, a rare and highly malignant tumor type originating from the proximal tubules of rat kidney with increased potential for invasion and metastasis was identified. However, mechanisms underlying the FB1-induced carcinogenesis in kidneys of male rats are still not clear. Previous studies have shown that FB1-mediated disruption of sphingolipid metabolism via inhibition of ceramide synthase is a primary key event in FB1 toxicity. The disruption of sphingolipid metabolism may cause time- and dose-related changes in the relative balance of various bioactive intermediates. Furthermore, the ability of FB1 to induce renal cell death and subsequent compensatory cell proliferation is well known, but it does not completely explain the invasive growth characteristics and exceptionally high metastatic potential of FB1-induced tumors. Considering the complexity of sphingolipid metabolism and the fact that various sphingolipids (e.g. ceramide, sphingoid bases and their respective 1-phosphates) act on opposing signaling pathways, it is hypothesized that the balance between individual sphingolipids and thus the overall cellular response to FB1 may shift with time and by continuing FB1 exposure, resulting in the disruption of specific cell signaling pathways, which may promote tumor formation in kidney. To identify early FB1-induced gene expression patterns in the kidney, which may be associated with sphingolipid-mediated signaling pathways in cancer, a short-term i.p. study on FB1 in male Sprague Dawley rats was performed and changes in gene expression were analyzed using a qRT-PCR array that comprises 84 relevant genes of 6 pathways pivotally involved in the formation of cancer. Furthermore, apoptosis and cell proliferation as well as changes in specific sphingolipids were investigated in FB1-treated kidneys. As shown by classical histopathology (H&E) and (immuno)-histochemical staining (TUNEL and BrdU), FB1 caused a time- and dose-dependent increase in tubular apoptosis in the cortex and OSOM of the kidney, which was compensated by the induction of proliferation in the affected areas. HPLC-MS/MS analysis of bioactive sphingolipids demonstrated that FB1 induced a marked elevation of the pro-apoptotic sphingoid bases sphinganine and sphingosine, which paralleled the time- and dose-dependent increase in renal tubular apoptosis. With prolonged exposure to FB1, increased metabolic conversion of the accumulated sphinganine to the sphinganine-1-phosphate, a second messenger with anti-apoptotic and proliferative properties, was observed in kidney. This finding was compliant with the increased regenerative cell proliferation in the cortex and OSOM. In addition to effects on sphingoid bases and their 1-phosphate metabolites, this study, for the first time, demonstrated reduced levels of specific ceramides in rat kidney after FB1 exposure. In particular, C16-ceramide, which is a widespread constituent of membrane-bound complex sphingolipids involved in cell adhesion, was time- and dose-dependently decreased after treatment with FB1. Besides its role as component of the cell membrane, C16-ceramide functions as a signaling molecule for the initiation of apoptosis in response to various stress stimuli. Under conditions of chronic FB1 exposure, a significant reduction in pro-apoptotic C16-ceramide together with markedly increased levels of anti-apoptotic and proliferation-promoting sphingoid base 1-phosphates may thus favor resistance to stress-induced apoptosis and facilitate the survival of abnormal cells with potential to initiate tumor formation. Our study also revealed that early exposure to FB1 resulted in increased expression of a plethora of genes involved in tumor initiation as well as tumor progression. While single FB1 exposure was demonstrated to predominately induce gene expression of proto-oncogenic transcription factors (e.g. Fos, Jun, Myc) and apoptotis-related genes (e.g. members of the tumor-necrosis factor family), repeated exposure resulted in marked upregulation of genes mediating cell survival and cell proliferation (e.g. Bcl-XL, Bcl-2, Nfκb1 and Egfr). Moreover, continued exposure to FB1 initiated increased expression of genes critically involved in tumor migration, adhesion, invasion and metastasis. A close correlation was established between gene expression changes in response to FB1 and known signaling pathways mediated by extracellular or intracellular action of sphingoid base 1-phosphates - bioactive lipids that were markedly increased after FB1 treatment. In particular, genes encoding components of the plasminogen activator system were abundantly upregulated. These mediate invasion and metastasis in response to So1P, and may hence particularly promote the formation of highly aggressive and invasive tumors in kidney as observed after chronic exposure to FB1. Thus, it is conceivable that upregulation of a majority of genes in response to FB1 may be a direct or indirect consequence of increased So1P signaling. Another aim of this study was to identify differences in the organ-specific susceptibility for tumor formation by comparing FB1-mediated effects on apoptosis, cell proliferation, sphingolipids, and selected cancer-related genes in kidney and liver. Collectively, the present results revealed that kidney and liver showed marked differences in several endpoints of FB1 toxicity, which seemed to be primarily associated with their different susceptibility to FB1-mediated alterations in sphingolipid metabolism. The strong correlation between histopathological lesions and alterations in sphingolipid metabolism as well as sphingoid base 1-phosphate accumulation and concomitant S1P receptor expression suggested that tumor formation and progression to highly malignant carcinomas seems to be rather favored in kidney compared to liver. However, genes mostly deregulated by FB1 treatment in kidney (PAI-1, Thbs1 and Itga2) were also found to be induced in liver. To verify FB1-induced gene expression in kidney, normal rat tubular epithelial (NRK-52E) cells were analyzed for FB1-induced expression changes of the same cancer-related genes as in vivo. The results of qRT-PCR analysis revealed that gene expression changes in NRK-52E cells after FB1 treatment strongly correlated with those found in rat kidney and paralleled the marked alterations in sphingolipid metabolism. Furthermore, a good correlation between FB1-induced expression changes of cancer-related genes obtained in vivo and in vitro and those known to be mediated by bioactive sphingoid base 1-phosphates in cancer was established. Moreover, experiments modeling the invasive behavior of NRK-52E cells showed that FB1 may enhance cell invasion, which also correlated with both the increase in invasion- and metastasis-associated genes and bioactive sphingoid base 1-phophates. Importantly, NRK-52E cells basally expressed the S1P receptors S1P2 and S1P3, which are known to be involved in tumor migration and invasion. Since these receptors were also identified as most abundant S1PRs in kidneys of male Sprague Dawley rats, they may present important mediators of gene expression and invasion in response to FB1 in vivo. In summary, FB1-mediated disruption of sphingolipid metabolism and subsequent time- and dose-related increase in intermediates, such as bioactive sphingoid base 1-phosphates, correlate with early changes in genes and signaling pathways that may mediate loss of growth control, replication, evasion of apoptosis, cell motility and invasion, and thus favor renal tumor formation in response to FB1. However, to clarify whether the obtained gene expression changes in cancer-related genes in kidney are specific to the biological action of sphingoid base 1-phosphates and their respective receptors, further mechanistic studies are necessary. N2 - Fumonisin B1 ist ein Mykotoxin, das von verschiedenen Spezies der Gattung Fusarium produziert wird, und weltweit wesentlich zur Kontamination von Mais beiträgt. Eine zweijährige Kanzerogenitätsstudie des National Toxicology Programs (NTP) zeigte, dass männliche Ratten nach Verabreichung von FB1 am anfälligsten für die Bildung von Nierentumoren waren. Aus histopathologischer Sicht handelte es sich dabei um sehr seltene und hoch maligne Formen von Tumoren des proximalen Tubulus der Niere, die eine verstärkte Neigung zur Invasion und Metastasierung aufwiesen. Jedoch sind bis heute die genauen Mechanismen nicht hinreichend geklärt, die zu einer FB1-induzierten Kanzerogenese in der Rattenniere führen können. Frühere Studien berichteten, dass die durch FB1 vermittelte Störung des Sphingolipidmetabolismus mittels Inhibierung der Ceramidesynthase ein initiales Ereignis in der Toxizität darstellt und zu zeit- und dosisabhängigen Veränderungen im relativen Gleichgewicht verschiedener bioaktiver Zwischenprodukte des Sphingolipidmetabolismus führen kann. Des Weiteren ist bekannt, dass FB1 dazu in der Lage ist, in der Niere Zelltod gefolgt von regenerativer Zellproliferation zu induzieren. Dies erklärt jedoch nicht vollständig, wie die durch FB1 verursachten Tumore ein invasives Wachstum und außergewöhnlich hohes Metastasierungspotential erlangen. Die Komplexität des Sphingolipidmetabolismus und die Tatsache, dass verschiedene Sphingolipide (z.B. Ceramide, Sphingoidbasen und ihre entsprechenden 1-Phosphate) einen Einfluss auf gegensätzliche Signalwege in der Zelle ausüben können, deuten darauf hin, dass das Gleichgewicht zwischen den einzelnen Sphingolipiden und somit die gesamten zellulären Effekte von FB1 über die Zeit und mit zunehmender Exposition gegenüber FB1 zu Störungen spezifischer Signalwegen führen können, die eine Tumorentstehung in der Niere begünstigen. Um frühere Effekte von FB1 auf das Expressionsmuster von Genen in der Niere zu ermitteln, die möglicherweise mit den durch Sphingolipide vermittelten Signalwegen und Krebs verbunden sind, wurde eine Kurzzeitstudie mit FB1 in männlichen Sprague Dawley-Ratten durchgeführt und die Veränderungen der Genexpression von 84 Genen der 6 wichtigsten, krebsrelevanten Signalwege mittels qRT-PCR untersucht. In diesem Zusammenhang wurden in Nieren der FB1-behandelten Tiere auch Untersuchungen zu Apoptose, Zellproliferation sowie zu Veränderungen der spezifischen Sphingolipide durchgeführt. Anhand klassischer histopatholgischer sowie (immun)-histologischer Färbungen konnte gezeigt werden, dass FB1 zu einem zeit- und dosisabhängigen Anstieg von Apoptose in Cortex und OSOM der Niere führte, dem gleichzeitig eine gesteigerte Proliferation in den entsprechenden Bereichen folgte. Die HPLC-MS/MS-Analyse bioaktiver Sphingolipide in der Niere zeigte, dass die Behandlung mit FB1 zeitgleich zu einem Anstieg der pro-apoptotischen Sphingoidbasen Sphinganin und Sphingosin und verstärkter tubulärer Apoptose führte. Mit anhaltender Exposition gegenüber FB1 konnte in der Niere eine Zunahme der metabolischen Umwandlung von Sphinganin in Sphinganine-1-Phosphat, einem sekundären Botenstoff mit anti-apoptotischen und wachstumsfördernden Eigenschaften, beobachtet werden. Diese Beobachtung stimmte auch mit der verstärkten regenerativen Zellproliferation in Cortex und OSOM der Niere überein. Weiterhin konnte mittels Sphingolipidanalyse erstmals gezeigt werden, dass die Exposition gegenüber FB1 zu einer Verminderung spezifischer Zellceramide führte. Insbesondere der Gehalt an C16-Ceramid wurden durch die Behandlung mit FB1 zeit- und dosishängig in der Niere reduziert. Neben seiner Funktion als Bestandteil der Zellmembran spielt C16-Ceramide eine wichtige Rolle als Grundbaustein von komplexen, Zelladhäsion fördernden Sphingolipiden und ist in Gegenwart verschiedener Stressfaktoren auch ein wichtiges Signalmolekül in der Initiierung von Apoptose. Im Fall einer chronischen Exposition gegenüber FB1 könnten demnach stark verminderte Gehalte an pro-apoptotischen C16-Ceramid, verbunden mit drastisch erhöhten Gehalten an anti-apoptotischen und wachstumsfördernden Sphingoidbasen-1-Phosphaten, zu einer Resistenz gegenüber stressbedingter Apoptose führen, die das Überleben initiierter Zellen und damit die Tumorentstehung begünstigen. Weiterhin zeigte unsere Studie, dass bereits eine frühe Exposition gegenüber FB1 die Expression einer Reihe von Genen in der Niere erhöht, die in der Tumorentstehung- sowie Progression eine Rolle spielen. Während die einmalige Verabreichung von FB1 hauptsächlich zu einem Anstieg der Expression von Transkriptionsfaktoren (z.B. Protoonkogene wie Fos, Jun und Myc) und apoptotischen Gene (z.B. Mitglieder der Familie der Tumornekrosefaktorrezeptoren) führte, wurde nach mehrmaliger Exposition eine deutliche Heraufregulierung von Genen beobachtet, die das Wachstum und Überleben von Zellen (z.B. Bcl-XL, Bcl-2, Nfκb1 und Egfr) vermitteln. Des Weiteren führte die längere Exposition zu einem Anstieg der Expression von Genen, die entscheidend an Migration, Adhäsion, Invasion und Metastasierung von Tumoren beteiligt sind. Dabei konnte ein enger Zusammenhang zwischen den FB1-induzierten Genexpressionsveränderungen und bereits bekannten extrazellulären und intrazellulären Signalwegen von bioaktiven Sphingoidbasen-1-Phosphaten hergestellt werden. Dazu zählte vor allem die Erhöhung von Genen, die wichtige Komponenten des ‚Plasminogen-Aktivator‘-Systems kodieren, und in Gegenwart von Sphingosine-1-Phosphat zu einer Erhöhung der Invasivität und Metastasierung, und somit möglicherweise auch zu einer begünstigten Bildung hochaggressiver und invasiver Tumoren in der Niere nach chronischer Exposition gegenüber FB1 beitragen können. Ein weiteres Ziel der Studie war es, mögliche Unterschiede in der organspezifischen Disposition für die Entstehung von Tumoren zu ermitteln, indem die FB1-vermittelten Effekte auf Apoptose, Zellproliferation, Sphingolipide, und ausgewählte krebsrelevante Gene zwischen Niere und Leber verglichen wurden. Zusammenfassend weisen die Ergebnisse darauf hin, dass zwischen Niere und Leber deutliche Unterschiede in den verschiedenen Endpunkten der FB1-vermittelten Toxizität existieren, welche hauptsächlich mit der unterschiedlichen Anfälligkeit gegenüber den FB1-induzierten Veränderungen des Sphingolipidmetabolismus in Zusammenhang gebracht werden. Anhand der starken Korrelation zwischen den beobachteten histopathologischen Läsionen und gleichzeitig starken Veränderungen im Sphingolipidmetabolismus, sowie der Akkumulation von Sphingoidbasen-1-Phosphaten und entsprechender Expression der Sphingosine-1-Phosphatrezeptoren in der Niere, lässt sich vermuten, dass die Tumorentstehung- und Progression zu hoch malignen Karzinomen eher in der Niere als in der Leber begünstigt ist. Die durch die FB1-Behandlung am stärksten deregulierten Gene (PAI-1, Thbs1 und Itga2) in der Niere, wurden jedoch auch in der Leber durch FB1 induziert. Um die Genexpressionsveränderungen in der Niere zu verifizieren, wurden Ratten-tubulusepithelzellen (NRK-52E-Zellen) mit FB1 behandelt und Veränderungen in der Expression der gleichen krebsrelevanter Gene, die zuvor in vivo untersucht wurden, analysiert. Die Ergebnisse der qRT-PCR-Analyse zeigten, dass die Genexpressionsveränderungen in NRK-52E-Zellen nach Behandlung mit FB1 sowie die damit verbundenen Veränderungen im Sphingolipidmetabolismus stark mit denen in der Rattenniere korrelierten. Es konnte zudem sowohl in vivo als auch in vitro eine gute Übereinstimmung der FB1-induzierten Veränderungen in der Expression krebsrelevanter Gene gefunden werden, die auch in Signalwegen von Sphingoidbasen-1-Phosphaten und der damit verbundenen Krebsentstehung eine Rolle spielen. Darüber hinaus zeigten Experimente zur Untersuchung der Invasivität von NRK-52E-Zellen, dass diese nach Behandlung mit FB1 ein höheres Invasionspotential aufweisen. Dies korrelierte sowohl mit der Beobachtung von Expressionserhöhungen von invasions- und metastasierungsfördernden Genen als auch dem Anstieg bioaktiver Sphingoidbasen-1-Phosphate. Interessanterweise konnte in der vorliegenden Studie festgestellt werden, dass NRK-52E-Zellen die Sphingosine-1-Phosphatrezeptoren S1P2 und S1P3 expremieren und über diese Rezeptoren möglicherweise Signalwege zur Migration und Invasion anregen können. Da S1P2 und S1P3 auch als Hauptsphingosine-1-Phosphatrezeptoren in der Rattenniere identifiziert wurden, lässt sich vermuten, dass diese nach FB1-Behandlung in vivo wesentlich zur Expression von Genen, die die Invasivität von Zellen erhöhen, beitragen können. Zusammenfassend deuten die Ergebnisse darauf hin, dass die FB1-vermittelte Störung im Sphingolipidmetabolismus und der damit verbundene zeit- und dosisabhängige Anstieg bioaktiver Intermediate wie den Sphingoidbasen-1-Phosphaten, zu frühen Veränderungen in Genen und Signalwegen führen kann. Diese können Zellwachstum, Inhibierung von Apoptose, Migration und Invasion und somit die Bildung von Nierentumoren nach Exposition gegenüber FB1 fördern. Um jedoch zu klären, ob die ermittelten Genexpressionsveränderungen der untersuchten krebsrelevanten Genen in der Niere spezifisch mit der Wirkung von Sphingoidbasen-1-Phosphaten und deren Rezeptoren zusammenhängen, sind weiterführende mechanistische Studien notwendig. KW - Nephrotoxizität KW - Carcinogenität KW - Fumonisine KW - Fumonisin B1 KW - Mykotoxin KW - mycotoxin KW - fumonisin B1 KW - nephrotoxicity KW - carcinogenicity Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-71336 ER - TY - JOUR A1 - Stopper, Helga A1 - Jones, H. A1 - Zimmermann, U. T1 - Large scale transfection of mouse L-cells by electropermeabilization N2 - Mouse L-cells were transfected by electropenneabilization using the selectable plasmid pSV2-neo which confers resistance to G-418 (Geneticin). 1be DNA concentration used was 1 l'gfml, the field strength was 10 kV fcm, the duration of the pulse was S ~s. Transfeetion yield was optimal at a temperature of 4°C when using a time in between consecutive pulses of 1 minute compared to shorter (of the order of seoonds) or Ionger (3 minutes) time intervals. A more detailed study of the relationship between the number of pulses applied (up to 10) and transfection yield showed it to be almost linear in this range at 4 o C. The yield of transfectants in response to 10 pulses was up to 1000 per 106 cells (using 3.3 pg DNA per cell). The inßuence of the growth phase of the cells on the transfection yield and I or the subpopulation of the mouse L--ceU line used was shown. Furthennore the clone yield depended on the DNA per ceU ratio within a very small range. KW - Toxikologie KW - Electrical breakdown KW - Electropermeabilization KW - Volume distribution KW - Gene transfer KW - Transfection KW - (Mouse L-cell) Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63497 ER - TY - JOUR A1 - Holler, E. A1 - Fischer, H. A1 - Weber, C. A1 - Stopper, Helga A1 - Steger, H. A1 - Simek, H. T1 - A DNA polymerase with unusual properties from the slime mold Physarum polycephalum N2 - Two forms of a DNA polymerase have been purified from microplasmodia of Physarum polycephalum by poly(ethyleneimine) precipitation and chromatography on DEAE-Sephacel, phosphocellulose, heparin Sepharose, hydroxyapatite, DNA-agarose, blue-Sepharose. They were separated from DNA polymerase cx on phosphocellulose and from each other on heparin-Sepharose. Form HS1 enzymewas 30-40% pure and form HS2 enzyme 60% with regard toprotein contents of the preparations. Form HS2 enzymewas generated from form HS1 enzyme on prolonged standing of enzyme preparations. The DNA polymerases were obtained as complexes of a 60-kDa protein associated with either a 135-kDa (HS1) or a 110-kDa (HS2) DNA-polymerizing polypeptidein a 1:1 molar stoichiometry. The biochemical function of the 60-kDa protein remained unknown. The complexes tended to dissociate during gradient centrifugation and during partition chromatography as weil as during polyacrylamide gradient gel electrophoresis under nondenaturing conditions at high dilutions of samples. Both forms existed in plasmodia extracts, their proportions depending on several factors including those which promoted proteolysis. The DNA polymerases resembled eucaryotic DNA polymerase ß by several criteria and were functionally indistinguishable from each other. It is suggested that lower eucaryotes contain repair DNA polymerases, which are similar to those of eubacteria on a molecular mass basis. KW - Toxikologie Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63501 ER - TY - JOUR A1 - Zimmermann, U. A1 - Stopper, Helga T1 - Elektrofusion und Elektropermeabilisierung von Zellen : Eine neuartige Methode der Biotechnologie zur gezieltenVeränderung der genetischen Eigenschaften von Zellen N2 - No abstract available KW - Toxikologie Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63514 ER - TY - THES A1 - Glaser, Nina T1 - Influence of natural food compounds on DNA stability T1 - Einfluss natürlicher Nahrungsbestandteile auf die DNA Stabilität N2 - Cancer is one of the leading causes of death all over the world. Malnutrition and toxic contaminations of food with substances such as mycotoxins have been thought to account for a high percentage of cancers. However, human diet can deliver both mutagens and components that decrease the cancer risk. Genomic damage could be reduced by food components through different mechanisms such as scavenging of reactive oxygen species. In the first part of this study we tried to investigate the effects of patulin and resveratrol on DNA stability in V79 cells. Patulin is a mycotoxin, which is frequently found in spoiled apples and other fruits. The WHO has established a safety level of 50 µg/L, which is indeed not observed by all manufacturers. The acute toxicity of patulin in high concentrations is well known, however its potential carcinogenicity is still a matter of debate. Therefore we wanted to investigate further steps in the mechanism of patulin-induced genotoxicity. Patulin caused the formation of micronuclei and nucleoplasmic bridges in a dose-dependent manner. Further analysis revealed that patulin induced both kinetochore-negative and positive micronuclei. Time course of incubation indicate a new mechanism for patulin-induced nucleoplasmic bridge formation. We hypothized a mechanism via cross-linking of DNA, which was confirmed by a modified version of comet assay. Incubations of cells with patulin led to an increased number of multinucleated cells and multipolar mitoses. Cell cytometry revealed a G2 arrest by patulin, which might explain the amplification of centrosomes and patulin-induced aneuploidy. Patulin cause a dose-dependent DNA damage in comet assay which was influenced by the cellular GSH content. However, an induction of oxidative stress was just seen with higher concentrations of patulin. Levels of cellular glutathione were increased after 24 h incubation indicating an adaptive response to patulin-induced stress. There is growing interest in polyphenols such as resveratrol which have shown many positive effects on human health. The beneficial properties are partially attributed to their ability to scavenge reactive oxygen species. Co-incubation of V79 cells with patulin and 10 µM of the antioxidant resveratrol led to a slight reduction of micronucleus frequency compared to cells which were just treated with patulin. However, in higher concentrations resveratrol themselves caused the formation of micronuclei in V79 cells. Kinetochore analysis indicated only clastogenic properties for resveratrol but no disturbance of mitosis. The antioxidant properties of resveratrol were shown in ferric reducing antioxidant power (FRAP) assay. However, in cellular system resveratrol in higher concentrations revealed also prooxidative properties, as shown in 2,7-dichlordihydrofluorescein (DCF) assay. The increased level of glutathione after resveratrol treatment might reflect an adaptive response to resveratrol-induced oxidative stress. For the second part of this thesis we investigated the effects of an anthocyanin-rich grape extract on hypertensive Ren-2 rats. Ren-2 rats are an accepted genetically modified rat model for the investigation of hypertension and increased oxidative stress. We divided 23 female Ren-2 rats into three groups. One group was fed with an anthocyanin-rich Dacapo grape extract, one group was treated with the angiotensin converting enzyme (ACE) inhibitor ramipril and the third group was kept without medication during the experiment. After one week untreated group showed a clear increase in systolic and diastolic blood pressure compared to the ramipril treated rats. This was in part attenuated in the animals fed with anthocyanin-rich Dacapo grape extract. Effects on blood pressure were also reflected in an increased thirst of untreated and extract fed animals. Comet assay with cells of kidney and liver revealed a slight protective impact of Dacapo extract on DNA damage compared to the other groups. Similar results were obtained after evaluation of ɣ-H2AX-staining of kidney and heart sections. However, in the small intestine oppositional effects were seen, indicating an increased number of double strand breaks probably due to the high local concentration of polyphenols after oral ingestion. Antioxidative properties of the extract were shown in FRAP assay. However, this effect was not reflected in an increased antioxidative capacity in serum or a protective impact in the dihydroethidium (DHE) assay. The extract showed protective effects on DNA damage in comet assay and ɣ-H2AX-staining, but was not able to reduce hypertension back to the control level of ramipril treated animals. High local concentrations could also result in an increased damage of the affected tissue. Therefore, the administration of such concentrated compounds should be handled with care. N2 - Krebs ist eine der häufigsten weltweiten Todesursachen. Fehlernährung und Kontaminationen der Nahrungsmittel mit Toxinen wie Schimmelpilzgift tragen zu einem hohen Prozentsatz zu Krebserkrankungen bei. Allerdings enthält die Nahrung neben Mutagenen auch Bestandteile, die dazu beitragen das Krebsrisiko zu senken. Schäden am Genom können durch Nahrungsbestandteile über verschiedene Mechanismen, wie zum Beispiel das Abfangen von freien Radikalen reduziert werden. Im ersten Teil dieser Studie haben wir versucht die Effekte von Patulin und Resveratrol auf die DNA Stabilität von V79 Zellen zu untersuchen. Patulin ist ein Schimmelpilztoxin, welches häufig in verfaulten Äpfeln und anderen Früchten gefunden wird. Die WHO hat einen Grenzwert von 50 µg/L festgelegt, der jedoch nicht von allen Herstellern eingehalten wird. Die akute Giftwirkung von Patulin in hohen Dosen ist gut bekannt, wohingegen seine potentielle Kanzerogenität immer noch umstritten ist. Daher wollten wir weitere Schritte der Patulin induzierten Genotoxizität aufdecken. Patulin führte zu einer dosisabhängigen Bildung von Mikrokernen und Nucleoplasmic Bridges. Weitere Untersuchungen zeigten, dass Patulin sowohl kinetochor-positive wie auch kinetochor-negative Mikrokerne verursacht. Bei der Analyse des Zeitverlaufs einer Patulininkubation deutete sich ein neuer Mechanismus für die Patulin induzierte Bildung von Nucleoplasmic Bridges an. Wir haben die Hypothese einer Quervernetzung von DNA-Strängen aufgestellt, die durch eine modifizierte Version des Comet Assays bestätigt wurde. Die Inkubation mit Patulin führte zudem zu einer erhöhten Anzahl von vielkernigen Zellen und multipolaren Mitosen. Mittels Durchflusszytometrie konnten wir einen durch Patulin verursachten G2 Arrest nachweisen, der die Amplifikation von Centrosomen und die Patulin induzierte Aneuploidie erklären könnte. Patulin verursachte einen dosisabhängigen Schaden im Comet Assay, der durch den zellulären Glutathiongehalt beeinflusst ist. Eine Auslösung von oxidativem Stress wurde dagegen erst bei höheren Konzentrationen an Patulin beobachtet. Der zelluläre Gluathiongehalt war nach 24 h Inkubationszeit erhöht, was auf eine adaptive Antwort auf den durch Patulin verursachten zellulären Stress hindeutet. Polyphenole wie Resveratrol gewinnen zunehmend an Bedeutung, da zahlreiche positive Effekte auf die menschliche Gesundheit bewiesen wurden. Diese vorteilhaften Eigenschaften werden zum Teil ihrer Eigenschaft als Radikalfänger zugeschrieben. Die Co-Inkubation von V79 Zellen mit Patulin und Resveratrol führte zu einer leichten Reduktion der Mikrokernfrequenz im Vergleich zu Zellen, die nur mit Patulin inkubiert wurden. Allerdings löste Resveratrol in höheren Konzentrationen selbst die Bildung von Mikrokernen aus. Die Kinetochor-Analyse zeigte für Resveratrol clastogene Eigenschaften aber keine störende Effekte auf den Ablauf der Mitose. Die antioxidativen Eigenschaften von Resveratrol wurden im FRAP (ferric reducing antioxidant power) -Assay nachgewiesen. Im Gegensatz dazu wurden im zellulären System mittels DCF (2,7-Dichlordihydro-fluorescein) -Assay in höheren Konzentrationen auch prooxidative Eigenschaften festgestellt. Der erhöhte zelluläre Glutathionspiegel nach Resveratrol-Behandlung könnte dabei auf eine adaptive Anwort auf den durch Resveratrol ausgelösten oxidativen Stress hindeuten Im zweiten Teil dieser Doktorabeit haben wir die Effekte eines anthocyanreichen Traubenextrakts auf hypertensive Ren-2 Ratten untersucht. Ren-2 Ratten sind ein anerkanntes genetisch modifiziertes Rattenmodell zur Untersuchung von Bluthochdruck und erhöhtem oxidativem Stress. Wir haben 23 weibliche Ren-2 Ratten in 3 Gruppen geteilt. Eine Gruppe wurde mit einem anthocyan-reichen Dacapo Traubenextrakt gefüttert, eine Gruppe wurde mit dem ACE (angiotensin converting enzyme) Inhibitor Ramipril behandelt und eine dritte Gruppe wurde während dem Experiment nicht medikamentös behandelt. Nach einer Woche zeigte die nicht therapierte Gruppe einen deutlichen Anstieg des systolischen und diastolischen Blutdrucks. Dieser Anstieg war bei der mit anthocyanreichem Dacapo Traubenextrakt gefütterten Gruppe abgeschwächt. Die Effekte auf den Blutdruck spiegelten sich auch in einer erhöhten Trinkmenge der unbehandelten und mit Extrakt behandelten Tiere wider. Ein Comet Assay mit Nieren- und Leberzellen zeigte einen schwachen schützenden Einfluß des Dacapoextrakts auf den DNA Schaden im Vergleich zu den anderen Behandlungsgruppen. Ähnliche Ergebnisse wurden auch bei der Auswertung der ɣ-H2AX Färbung in Nieren- und Herzschnitten erzielt. Im Dünndarm wurden dagegen gegensätzliche Effekte beobachtet, die auf eine erhöhte Doppelstrangfrequenz durch die hohe lokale Konzentration an Polyphenolen nach oraler Aufnahme hindeuten. Die antioxidative Eigenschaften des Extrakts wurden im FRAP_Assay nachgewiesen. Diese Effekte spiegelten sich jedoch nicht in einer erhöhten antioxidativen Kapazität des Serums oder einem schützenden Effekt im DHE-Assay wider. Der Extrakt zeigte schützende Eigenschaften im Comet Assay und in der ɣ-H2AX-Färbung, war aber nicht in der Lage den Bluthochdruck auf das Kontrollniveau der Ramipril-behandelten Tiere herabzusenken. Hohe lokale Konzentrationen können auch zu einem erhöhten Schaden des betroffenen Gewebes führen. Daher sollte die Anwendung solcher hochkonzentrierter Präparate mit Vorsicht bedacht werden. KW - Patulin KW - Anthocyane KW - Resveratrol KW - Oxidativer Stress KW - Mutagenität KW - Genotoxizität KW - Patulin KW - anthocyanins KW - resveratrol KW - genotoxicity KW - oxidative stress Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72872 ER - TY - THES A1 - Wippel, Carolin T1 - Alterations of brain dendrite and synapse structure by the Streptococcus pneumoniae neurotoxin pneumolysin - Insights and pharmacological modulation T1 - Morphologische Veränderungen von Dendriten und Synapsen durch das Neurotoxin Pneumolysin - Einblicke und pharmakologischer Ansatz N2 - Streptococcus pneumoniae (Pneumococcus) is one of the leading causes of childhood meningitis,pneumonia and sepsis. Despite the availability of childhood vaccination programs and antimicrobial agents, childhood pneumococcal meningitis is still a devastating illness with mortality rates among the highest of any cause of bacterial meningitis. Especially in low-income countries, where medical care is less accessible, mortality rates up to 50 % have been reported. In surviving patients, neurological sequelae, including hearing loss, focal neurological deficits and cognitive impairment, is reported in 30 to 50 %. Growing resistance of pneumococci towards conventional antibiotics emphasize the need for effective therapies and development of effective vaccines against Streptococcus pneumoniae. One major virulence factor of Streptococcus pneumoniae is the protein toxin Pneumolysin (PLY). PLY belongs to a family of structurally related toxins, the so-called cholesterol-dependent cytolysins (CDCs). Pneumolysin is produced by almost all clinical isolates of the bacterium. It is expressed during the late log phase of bacterial growth and gets released mainly through spontaneous autolysis of the bacterial cell. After binding to cholesterol in the host cell membranes, oligomerization of up to 50 toxin monomers and rearrangement of the protein structure, PLY forms large pores, leading to cell lysis in higher toxin concentrations. At sub-lytic concentrations, however, PLY mediates several other effects, such as activation of the classic complement pathway and the induction of apoptosis. First experiments with pneumococcal strains, deficient in pneumolysin, showed a reduced virulence of the organism, which emphasizes the contribution of this toxin to the course of bacterial meningitis and the urgent need for the understanding of the multiple mechanisms leading to invasive pneumococcal disease. The aim of this thesis was to shed light on the contribution of pneumolysin to the course of the disease as well as to the mental illness patients are suffering from after recovery from pneumococcal meningitis. Therefore, we firstly investigated the effects of sub-lytic pneumolysin concentrations onto primary mouse neurons, transfected with a GFP construct and imaged with the help of laser scanning confocal microscopy. We discovered two major morphological changes in the dendrites of primary mouse neurons: The formation of focal swellings along the dendrites (so-called varicosities) and the reduction of dendritic spines. To study these effects in a more complex system, closer to the in vivo situation, we established a reproducible method for acute brain slice culturing. With the help of this culturing method, we were able to discover the same morphological changes in dendrites upon challenge with sub-lytic concentrations of pneumolysin. We were able to reverse the seen alterations in dendritic structure with the help of two antagonists of the NMDA receptor, connecting the toxin´s mode of action to a non-physiological stimulation of this subtype of glutamate receptors. The loss of dendritic spines (representing the postsynapse) in our brain slice model could be verified with the help of brain slices from adult mice, suffering from pneumococcal meningitis. By immunohistochemical staining with an antibody against synapsin I, serving as a presynaptic marker, we were able to identify a reduction of synapsin I in the cortex of mice, infected with a pneumococcal strain which is capable of producing pneumolysin. The reduction of synapsin I was higher in these brain slices compared to mice infected with a pneumococcal strain which is not capable of producing pneumolysin, illustrating a clear role for the toxin in the reduction of dendritic spines. The fact that the seen effects weren´t abolished under calcium free conditions clarifies that not only the influx of calcium through the pneumolysin-pore is responsible for the alterations. These findings were further supported by calcium imaging experiments, where an inhibitor of the NMDA receptor was capable of delaying the time point, when the maximum of calcium influx upon PLY challenge was reached. Additionally, we were able to observe the dendritic beadings with the help of immunohistochemistry with an antibody against MAP2, a neuron-specific cytoskeletal protein. These observations also connect pneumolysin´s mode of action to excitotoxicity, as several studies mention the aggregation of MAP2 in dendritic beadings in response to excitotoxic stimuli. All in all, this is the first study connecting pneumolysin to excitotoxic events, which might be a novel chance to tie in other options of treatment for patients suffering from pneumococcal meningitis. N2 - Streptococcus pneumoniae ist einer der Hauptauslöser für bakterielle Meningitis, Lungenentzündung und Sepsis. Ungeachtet der Tatsache, dass es heutzutage viele Impfprogramme zur Prävention, sowie Antibiotika zur Behandlung gibt, ist die bakterielle Meningitis im Kindesalter, ausgelöst durch S. pneumoniae, immer noch eine ernstzunehmende Krankheit mit Sterberaten von bis zu 50 %. Bei 30 bis 50 % der Patienten, die die Krankheit überstehen, bleiben teilweise schwere neurologische Störungen zurück. Die steigende Resistenz des Erregers gegenüber herkömmlichen Antibiotika macht zudem die Dringlichkeit zur Entwicklung effektiver Therapieansätze deutlich. Ein Hauptpathogenitätsfaktor von Streptococcus pneumoniae ist das Proteintoxin Pneumolysin (PLY). PLY gehört zu einer Familie strukturell verwandter Toxine; die sogenannten cholesterinabhängigen Cytolysine (CDCs). Das Toxin wird hauptsächlich nach spontaner Autolyse des Bakteriums freigesetzt. Nach Bindung des Proteins an das Cholesterin in den Zellmembranen des Wirtsorganismus, Oligomerisierung von bis zu 50 Toxinmonomeren und Umordnung der Proteinstruktur, bildet das Toxin Poren in der Zellmembran, die in höheren Konzentrationen von PLY zur Zelllyse führen. In niedrigeren Konzentrationen löst das Toxin jedoch verschiedene andere Prozesse, darunter Apoptose und Aktivierung des Komplementsystems, aus. Erste Experimente, die mit einem mutierten Pneumokokkenstamm (unfähig, Pneumolysin zu exprimieren) durchgeführt wurden, konnten eine reduzierte Virulez des Erregers zeigen, was die Beteiligung des Toxins am Verlauf der Krankheit verdeutlicht. Ziel vorliegender Arbeit war, die Beteiligung von Pneumolysin sowohl am Verlauf der bakteriellen Meningitis, hervorgerufen durch Pneumolysin, zu erforschen, als auch dessen Beteiligung an der Entstehung von neurologischen Störungen, wie sie auch nach Rehabilitation von einer Meningitis noch bestehen können. Dafür wurden zuerst die Effekte von sublytischen Konzentrationen des Toxins auf primäre Mausneuronen (transfiziert mit GFP und mit Hilfe eines Konfokalmikroskopes aufgenommen) erfasst. Dabei zeigten sich hauptsächlich zwei morphologische Veränderungen in den Dendriten der mikroskopierten Neurone: Die Entstehung von fokalen Schwellungen der Dendriten (sogenannte „varicosities“) sowie eine Verminderung der Anzahl von dendritischen Dornfortsätzen (sogenannte „dendritic spines“). Um diese Effekte in einem komplexeren System näher untersuchen zu können, entwickelten wir eine reproduzierbare Methode um akute Gehirnschnitte über längere Zeit kultivieren zu können. Mithilfe dieser Methode konnten wir die Veränderungen, die wir schon in der Primärkultur beobachteten, ebenso nachweisen. Die Entwicklung der fokalen Schwellungen der Dendriten konnten mithilfe zweier Antagonisten des NMDA Rezeptors rückgängig gemacht werden, wodurch erstmals eine Verbindung der Effekte mit einer Aktivierung von Glutamatrezeptoren aufgezeigt wurde. Die Verminderung der Anzahl dendritischer Dornfortsätze im Gehirnschnittmodell wurde untermauert von den Ergebnissen, die wir durch Gehirnschnitte von Mäusen, die tatsächlich an pneumokokkaler Meningitis erkrankt waren, erlangen konnten. Durch immunohistologische Färbungen mit einem Antikörper gegen Synapsin I (ein präsynaptisches Protein) konnten wir eine Reduktion dieses Proteins im Cortex erkrankter Mäuse nachweisen. Die Tatsache, dass die morphologischen Veränderungen der Dendriten ebenfalls in calciumfreiem Puffer beobachtet werden konnten, macht deutlich, dass nicht nur der Calciuminflux durch die Pneumolysinpore verantwortlich ist für dessen Neurotoxizität. Diese These wird untermauert durch die Ergebnisse, die wir mithilfe der Calciummikroskopie erhielten: Die Applikation eines Antagonisten des NMDA Rezeptors konnte den Zeitpunkt des maximalen Calciuminfluxes in die Zelle nach Behandlung mit Pneumolysin hinauszögern. Zudem konnten wir die Schwellungen in den Dendriten auch durch einen Antikörper gegen MAP2 (ein neuronenspezifisches Protein des Zytoskeletts) darstellen, was ebenfalls eine Verbindung von Pneumolysin zu „excitotoxicity“ (Toxizität aufgrund einer Übererregung von Glutamatrezeptoren) darstellt, da verschiedene Studien die Aggregation von MAP2 in fokalen dendritischen Schwellungen als Reaktion auf die Einwirkung von „excitotoxischen“ Stimuli nachweisen konnten. Zusammenfassend lässt sich sagen, dass dies die erste Studie ist, die Pneumolysin in Zusammenhang mit einer Überaktivierung von Glutamatrezeptoren bringt, was eine komplett neue Sichtweise darstellt und eventuell neue Möglichkeiten der Therapie für Patienten, die an dieser Form der bakteriellen Hirnhautentzündung leiden, eröffnet. KW - Nervenzelle KW - Nervennetz KW - Bakterien KW - Bakterielle Hirnhautentzündung KW - Bakteriengift KW - Bacterial meningitis KW - Pneumolysin KW - Excitotoxicity Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-72016 ER - TY - JOUR A1 - Stopper, Helga A1 - Metzler, M. T1 - Carcinogenic oestrogens induce respiration deficiency mutation in yeast N2 - In addition to hormonal activity, genetic darnage has been proposed as an important factor in oestrogen-mediated carcinogenesis. However, as short-term tests for oestrogens usually fail to show DNA mutations, lesions other than dassie nuclear DNA mutation have to be considered. Oestrogeninduced mitochondrial darnage was studied in the yeast Saccharomyces cerevisiae. Stilbene-type, but not steroidal, oestrogens were found to induce respiration-dcficient petite mutation. The effect was inversely correlated with cytotoxicity and required aromatic hydroxyl groups at the stilbene molecule. It only occurred under growth conditions and apparently was not due to the A TPase inhibitory qualities of stilbene oestrogens. Other studies have shown that petite mutation clones, which can be induced by a variety of substances, contain altered mitochondrial DNA. The mechanism of petite mutation induction might be important in tumorigenesis by also acting on nuclear DNA or facilitating carcinogenesis by disturbance of mitochondrial function. KW - Toxikologie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63466 ER - TY - JOUR A1 - Schupp, Nicole A1 - Heidland, August A1 - Stopper, Helga T1 - Genomic Damage in Endstage Renal Disease - Contribution of Uremic Toxins N2 - Patients with end-stage renal disease (ESRD), whether on conservative, peritoneal or hemodialysis therapy, have elevated genomic damage in peripheral blood lymphocytes and an increased cancer incidence, especially of the kidney. The damage is possibly due to accumulation of uremic toxins like advanced glycation endproducts or homocysteine. However, other endogenous substances with genotoxic properties, which are increased in ESRD, could be involved, such as the blood pressure regulating hormones angiotensin II and aldosterone or the inflammatory cytokine TNF-. This review provides an overview of genomic damage observed in ESRD patients, focuses on possible underlying causes and shows modulations of the damage by modern dialysis strategies and vitamin upplementation. KW - Toxin KW - dialysis KW - genotoxicity KW - uremic toxins Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68653 ER - TY - JOUR A1 - Fischer, W. H. A1 - Lutz, Werner K. T1 - Short communication : Mouse skin papilloma formation by chronic dermal application of 7,12-dimethylbenz[a]anthracene is not reduced by diet restriction N2 - No abstract available KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60644 ER - TY - JOUR A1 - Grunicke, H. A1 - Pyerin, W. A1 - Eisenbrand, G. A1 - Havemann, K. A1 - Rabes, H. M. A1 - Molling, K. A1 - Schwab, M. A1 - Lutz, Werner K. A1 - Wahrendorf, J. A1 - Schirrmacher, V. T1 - 7th International Symposium of the Division of Experimental Cancer Research (AEK) of the German Cancer Society : [Meeting report] N2 - No abstract available KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60651 ER - TY - JOUR A1 - Kirchner, S. A1 - Stopper, Helga A1 - Papp, T. A1 - Eckert, I. A1 - Yoo, H. J. A1 - Vig, B. K. A1 - Schiffmann, D. T1 - Cytogenetic changes in primary, immortalized and malignant mammalian cells N2 - Some chromosomes in transformed rat cells and somatic cell hybrids fail to display the presence of kinetochore proteins as detected by antikinetochore antibodies. Suchchromosomes (K- Chromosomes) may constitute a novel mechanism for the genesis of aneuploidy. Wehave analyzed primary~ immortalized and malignant marnmalian cells for the presence of kinetochore proteins and micronuclei. Our resuJts suggest a correlation of the K- chromosome and micronucleus frequency with the variability in chromosome number. Upon in situ hybridization with the minor satellite and alpha satellite sequences some Kchromosomes showed a signal. This indicates that the observed lack of kinetocbores is not necessarily due to a lack of centromeric DNA. We conclude that dislocated K- chromosomes may become incorporated into micronuclei which are prone to loss. Such events would be associated with the generation of aneuploidy. KW - Toxikologie KW - Micronuclei KW - Kinetochore KW - Chromosome distribution Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63439 ER - TY - JOUR A1 - Stopper, Helga A1 - Pechan, R. A1 - Schiffmann, D. T1 - 5-azacytidine induces micronuclei in and morphological transformation of Syrian hamster embryo fibroblasts in the absence of unscheduled DNA synthesis N2 - lt is known that 5-azacytidine (5-AC) induces tumors in several organs of rats and mice. The mechanisms of these effects are still poorly understood although it is known that 5-AC can be incorporated into DNA. Furthermore, it can inhibit DNA methylation. The known data on its clastogenic andjor gene mutation-inducing potential are still controversial. Therefore, we have investigated the kinds of genotoxic effects caused by 5-AC in Syrian hamster embryo (SHE) fibroblasts. Three different endp6ints (micronucleus formation, unscheduled DNA synthesis (UDS) and cell transforrnation) were assayed under similar conditions of metabolism and dose at target in this cell system. 5-AC induces morphological transformation of SHE cells, but not UDS. Therefore, 5-AC does not seem to cause repairable DNA lesions. Furthermore, our studies revealed that 5-AC is a potent inducer of mkronuclei in the SHE system. Immunocytochemical analysis revealed that a certain percentage of these contain kinetochores indicating that 5-AC may induce both clastogenic events and numerical chromosome changes. KW - Toxikologie KW - 5-Azacytidine KW - Micronuclei KW - Kinetochores KW - Unscheduled DNA synthesis KW - Cell transformation Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63443 ER - TY - JOUR A1 - Tas, P. A1 - Stopper, Helga A1 - Koschel, K. A1 - Schiffmann, D. T1 - Influence of the carcinogenic oestrogen diethylstilboestrol on the intracellular calcium level in C6 rat glioma cells N2 - The ~fthetic oes~rog~n diethylsti~boestrol (DES) causes a dose-dependent elevation of the cytoplasuuc Ca concentratton m C6 rat ghoma cells. This Ca2+ rise is caused neither by Ca2+ influx nor ~-r release from the ~a2 + stores of the endoplasmic reticulum. Therefore it seems likely that DES mob!hzes Ca2+ from a nutochondrial source. The DES-induced Ca2+ signal is remarkably similar to the one mduced by the. tumou~ promotor ~hapsigargin. As this compound causes leakage of calcium from the endoplasmt~ rettculum tt ~ms posstble that DES induces a similar leakage from mitochondrial Ca2+ stores. It remaans to be estabhshed whether the DES-mediated rise in intracellular calcium is causally related to the tumour-promoting properties of this compound KW - Toxikologie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63459 ER - TY - JOUR A1 - Epe, B. A1 - Harttig, U. A1 - Stopper, Helga A1 - Metzler, M. T1 - Covalent binding of reactive estrogen metabolites to microtubular protein as a possible mechanism of aneuploidy induction and neoplastic cell transformation N2 - Neoplastic cell transfonnation induced by estrogens and some other carcinogen& such as benzene appears to involve the induction of mitotic aneuploidy rather than DNA damage and point mutations. As metabolic activation may also play an important roJe in the mechanism of carcinogenesis of these nongenotoxic compounds, we have studied the Interaction of reactive quinone metabolites of various estrogens and of benzene with the major microtubular protein, tubulin, in a cell-free system. Covalent binding of the radioactively labeled metabolites to the a- and 13-subunit of tubulin was found to depend on the structure of the metabolite. When the adducted tubulins were tested in vitro for their ability to polymerize to microtubules, Inhibition of microtubule assembly was obsened in every case, although to varying extents. It is proposed that the fonnation of covalent tubulin adducts may impair the formation of mitotic spindies and thus contribute to chromosomal nondisjunction and aneuploidy induction. KW - Toxikologie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63478 ER - TY - JOUR A1 - Stopper, Helga A1 - Zimmermann, U. A1 - Neil, G. A. T1 - Increased efficiency of transfection of murine hybridoma cells with DNA by electropermeabilization N2 - Dispase-treated murine hybridoma cells (SP2/0-Ag14) were transfected with the G418 resistance gene bearing plasmid pSV2-neo by electropermeabilization with a high degree of efficiency. The cells were subjected to intermittent multiple high-voltage short duration (5 p.s) DC pulses at intervals of 1 min in a weakly conducting medium followed by selection in G418-containing medium. The transfection medium, temperature, pulse duration, and voltage were empirically determined by preliminary electropermeabilization experiments. Increasing the number of pulses resulted in a higher percentage of transfected cells, but a decrease in the number of viable cells, with the optimal transfectant yield resulting when five pulses of 10 kV jcm were administered. This method allows the rapid and efficient injection of DNA into mammalian cells, and permits the rapid production of stable, drug resistant hybridoma celllines for use in subsequent fusion experiments. KW - Toxikologie KW - DNA transfection KW - Electropermeabilization KW - Eukaryotic cell KW - Hybridoma KW - Drug resistance Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63488 ER - TY - JOUR A1 - Lutz, Werner K. A1 - Poetzsch, J. A1 - Schlatter, J. A1 - Schlatter, C. T1 - The real role of risk assessment in cancer risk management N2 - Rtgulatory aclio11s Iaken to reduu tht risk of harmfultffects of exposure to chemieals ofltn arenot commensurDtt with the toxicologicDf risk SJsstS&ment. A numbtr of factors relating to psychology, sociology, economics Dntl politics rather than science and medicine afftct tht final decision. Wemer Lutz and colleagues illustratt the situation using tht feuktmia-indudng chtmiCJJI benzene as an examplt. KW - Toxikologie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60730 ER - TY - THES A1 - Hupp, Sabrina T1 - Modulation of Actin Dynamics by the Cholesterol-Dependent Cytolysin Pneumolysin - a novel mechanism beyond pore formation T1 - Einfluß des CDCs Pneumolysin auf die Aktin-Dynamik - neue Eigenschaften eines Poren-bildenden Toxins N2 - Streptococcus pneumoniae is one of the major causes of bacterial meningitis, which mainly affects young infants in the developing countries of Africa, Asia (esp. India) and South America, and which has case fatality rates up to 50% in those regions. Bacterial meningitis comprises an infection of the meninges and the sub-meningeal cortex tissue of the brain, whereat the presence of pneumolysin (PLY), a major virulence factor of the pneumococcus, is prerequisite for the development of a severe outcome of the infection and associated tissue damage (e. g. apoptosis, brain edema, and ischemia). Pneumolysin belongs to the family of pore forming, cholesterol-dependent cytolysins (CDCs), bacterial protein toxins, which basically use membrane-cholesterol as receptor and oligomerize to big aggregates, which induce cell lysis and cell death by disturbance of membrane integrity. Multiple recent studies, including this work, have revealed a new picture of pneumolysin, whose cell-related properties go far beyond membrane binding, pore formation and the induction of cell death and inflammatory responses. For a long time, it has been known that bacteria harm the tissues of their hosts in order to promote their own survival and proliferation. Many bacterial toxins aim to rather hijack cells than to kill them, by interacting with cellular components, such as the cytoskeleton or other endogenous proteins. This study was able to uncover a novel capacity of pneumolysin to interact with components of the actin machinery and to promote rapid, actin-dependent cell shape changes in primary astrocytes. The toxin was applied in disease-relevant concentrations, which were verified to be sub-lytic. These amounts of toxin induced a rapid actin cortex collapse in horizontal direction towards the cell core, whereat membrane integrity was preserved, indicating an actin severing function of pneumolysin, and being consistent with cell shrinkage, displacement, and blebbing observed in live cell imaging experiments. In contrast to neuroblastoma cells, in which pneumolysin led to cytoskeleton remodeling and simultaneously to activation of Rac1 and RhoA, in primary astrocytes the cell shape changes were seen to be primarily independent of small GTPases. The level of activated Rac1 and RhoA did not increase at the early time points after toxin application, when the initial shape changes have been observed, but at later time points when the actin-dependent displacement of cells was slower and less severe, probably presenting the cell’s attempt to re-establish proper cytoskeleton function. A GUV (giant unilamellar vesicle) approach provided insight into the effects of pneumolysin in a biomimetic system, an environment, which is strictly biochemical, but still comprises cellular components, limited to the factors of interest (actin, Arp2/3, ATP, and Mg2+ on one side, and PLY on the other side). This approach was able to show that the wildtype-toxin, but not the Δ6 mutant (mutated in the unfolding domain, and thus non-porous), had the capacity to exhibit its functions through a membrane bilayer, meaning it was able to aggregate actin, which was located on the other side of the membrane, either via direct interaction with actin or in an Arp2/3 activating manner. Taking a closer look at these two factors with the help of several different imaging and biochemical approaches, this work unveiled the capacity of pneumolysin to bind and interact both with actin and Arp2 of the Arp2/3 complex. Pneumolysin was capable to slightly stabilize actin in an actin-pyrene polymerization assay. The same experimental setup was applied to show that the toxin had the capacity to lead to actin polymerization through activation of the Arp2/3 complex. This effect was additionally confirmed with the help of fluorescent microscopy of rhodamine (TRITC)-tagged actin. Strongest Arp2/3 activation, and actin nucleation/polymerization is achieved by the VCA domain of the WASP family proteins. However, addition of PLY to the Arp2/3–VCA system led to an enhanced actin nucleation, suggesting a synergistic activation function of pneumolysin. Hence, two different effects of pneumolysin on the actin cytoskeleton were observed. On the one hand an actin severing property, and on the other hand an actin stabilization property, both of which do not necessarily exclude each other. Actin remodeling is a common feature of bacterial virulence strategies. This is the first time, however, that these properties were assigned to a toxin of the CDC family. Cytoskeletal dysfunction in astrocytes leads to dysfunction and unregulated movement of these cells, which, in context of bacterial meningitis, can favor bacterial penetration and spreading in the brain tissue, and thus comprises an additional role of pneumolysin as a virulence factor of Streptococcus pneumonia in the context of brain infection. N2 - S. pneumoniae gehört zur Gruppe der Pathogene, die bakterielle Meningitis verursachen, eine Infektion, die hauptsächlich bei Neugeborenen und Kleinkindern in den Entwicklungsländern von Afrika, Asien und Südamerika auftritt, und in diesen Regionen Sterblichkeitsraten von bis zu 50% aufweist. Meningitis ist eine Infektion der Hirnhäute und dem sich direkt darunter befindlichen Cortex-Gewebe. Pneumolysin (PLY), ein Haupt-Pathogenitätsfaktor des sog. Pneumococcus, ist hauptsächlich verantwortlich für einen schweren Verlauf der Infektion und für Gewebeschädigungen, wie Apoptose, Hirnödemen und Ischämie. Pneumolysin gehört zur Familie der Cholesterol-abhängigen Cytolysine (CDCs), bakteriellen Protein-Toxinen, die an Membran-Cholesterol binden, sich zu großen Aggregaten zusammenschließen und durch die Beeinträchtigung der Membranintegrität (Porenbildung) Zell-Lyse und Zelltod verursachen. Zahlreiche neuere Studien, darunter auch diese Arbeit, haben ein neues Bild von Pneumolysin aufgezeigt, dessen Eigenschaften weit über die Membranbindung, die Poren-Bildung und die Induktion von Zelltod und inflammatorischen Prozessen hinausgehen. Es ist weithin bekannt, dass Bakterien das Gewebe ihres Wirts schädigen, um ihre eigene Vermehrung und ihre Ausbreitung zu begünstigen. In diesem Zusammenhang fungieren bakterielle Toxine als Pathogenitätsfaktoren, die mit zellulären Komponenten, wie dem Zytoskelett und anderen Zytosol-Proteinen interagieren, was allerdings bevorzugt zu Zellveränderungen, und seltener zum Zelltod führt. Die vorliegende Arbeit konnte zeigen, dass Pneumolysin schnelle, und zum Teil gravierende, Aktin-abhängige Zellstruktur-Veränderungen in primären Astrozyten hervorruft. Hierbei wurde das Toxin in Konzentrationen appliziert, die im Liquor von Meningitis-Patienten detektiert werden können, und die zusätzlich als sub-lytisch für Astrozyten in Zellkultur verifiziert wurden. Diese Toxin-Mengen führten zu einem schnellen, horizontalen Aktinkortex-Kollaps, wobei die Membranintegrität erhalten blieb. Dies deutete auf eine „Severing“-Funktion (das Abtrennen oder Zerschneiden von Aktinfilamenten) von Pneumolysin hin, was mit den Beobachtungen übereinstimmt, die in Experimenten mit lebendigen Zellen gemacht wurden (Zellveränderungen, Zellbewegungen und „Blebbings“). Im Gegensatz zu Neuroblastoma Zellen, in denen Pneumolysin Zytoskelett-Veränderungen, und gleichzeitig die Aktivierung von Rac1 und RhoA verursachte, waren die Zell-Veränderungen bei Astrozyten primär unabhängig von der Aktivierung kleiner GTPasen. Obwohl gezeigt werden konnte, dass die Veränderungen vom Aktin-Zytosklett abhängig waren, war das Level an Rac1 und RhoA in den frühen Phasen nach der Toxin-Gabe nicht erhöht. Eine Aktivierung der GTPasen konnte dahingegen zu späteren Zeitpunkten detektiert werden, in denen die Zellbewegung abgeschwächt und verlangsamt war. Die späte Aktivierung kann als Reaktion der Zelle auf die vom Toxin ausgelösten Veränderungen gesehen werden, die zu einer Wiederherstellung der normalen Zytoskelett-Funktion führen soll. GUV-Experimente ermöglichten eine genauere Betrachtung der Pneumolysin-Effekte in einem biomimetischen, jedoch strikt biochemischen Ansatz, der alle zellulären Komponenten enthält, die untersucht werden sollen (Pneumolysin, Aktin, Arp2/3, ATP, und Mg2+). Im GUV-System befand sich das Toxin im Inneren der Vesikel, und Aktin in der extra-vesikulären Suspension, einem Verhältnis genau umgekehrt zum zellullären System. Zusätzlich wurden Arp2/3 und ATP/Mg2+, für die Aktin-Polymerisierung essentielle Faktoren, in der Aktin-Suspension zur Verfügung gestellt. Die GUV-Experimente konnten zeigen, dass Wildtyp-Pneumolysin, allerdings nicht seine Mutante Δ6-PLY (Mutation in der sog. unfolding domain, und deshalb nicht Poren-bildend), seine Effekte auf das Aktin-Zytoskelett durch die Membran-Barriere hindurch, in einer Membran-gebundenen Form ausüben kann. Aktin wurde an den Stellen höchster Toxinbindung aggregiert, was entweder über eine direkte Interaktion von PLY mit Aktin, oder über eine Aktivierung des Aktin-Effektors Arp2/3 durch Pneumolysin erklärt werden kann. Weitere biochemische Ansätze (wie enzyme-linked sorbent assays, ELSAs) und Mikroskopie-Techniken (Immunocyto-Chemie) konnten beweisen, dass Pneumolysin sowohl mit Aktin, als auch mit Arp2 (einer Komponente des heptameren Arp2/3 Proteinkomplexes) direkt interagieren kann. Aktin-Pyren Experimente und Fluoreszenzmikroskopie (von TRITC-markiertem Aktin) wiesen auf eine Kapazität von Pneumolysin hin, Aktin direkt zu stabilisieren, und über die Aktivierung von Arp2/3 eine Aktin-Polymerisierung hervorrufen zu können. KW - Hirnhautentzündung KW - Bakteriengift KW - Perforine KW - Actin KW - Meningitis KW - Meningitis KW - Bacterial Toxins KW - Pneumolysin KW - Actin KW - Pore formation Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-70889 ER - TY - THES A1 - Förtsch, Christina T1 - Pneumolysin: the state of pore-formation in context to cell trafficking and inflammatory responses of astrocytes T1 - Pneumolysin: Einfluss der Porenbildung auf zelluläre Transportprozesse und inflammatorische Antworten in Astrozyten N2 - Pneumolysin, a protein toxin, represents one of the major virulence factors of Streptococcus pneumoniae. This pathogen causes bacterial meningitis with especially high disease rates in young children, elderly people and immunosuppressed patients. The protein toxin belongs to the family of cholesterol-dependent cytolysins, which require membrane cholesterol in order to bind and to be activated. Upon activation, monomers assemble in a circle and undergo conformational change. This conformational change leads to the formation of a pore, which eventually leads to cell lysis. This knowledge was obtained by studies that used a higher concentration compared to the concentration of pneumolysin found in the cerebrospinal fluid of meningitis patients. Thus, a much lower concentration of pneumolysin was used in this work in order to investigate effects of this toxin on primary mouse astrocytes. Previously, a small GTPase activation, possibly leading to cytoskeletal changes, was found in a human neuroblastoma cell line. This led to the hypothesis that pneumolysin can lead to similar cytoskeletal changes in primary cells. The aim of this work was to investigate and characterise the effects of pneumolysin on primary mouse astrocytes in terms of a possible pore formation, cellular trafficking and immunological responses. Firstly, the importance of pore-formation on cytoskeletal changes was to be investigated. In order to tackle this question, wild-type pneumolysin and two mutant variants were used. One variant was generated by exchanging one amino acid in the cholesterol recognising region, the second variant was generated by deleting two amino acids in a protein domain that is essential for oligomerisation. These variants should be incapable of forming a pore and were compared to the wild-type in terms of lytic capacities, membrane binding, membrane depolarisation, pore-formation in artificial membranes (planar lipid bilayer) and effects on the cytoskeleton. These investigations resulted in the finding that the pore-formation is required for inducing cell lysis, membrane depolarisation and cytoskeletal changes in astrocytes. The variants were not able to form a pore in planar lipid bilayer and did not cause cell lysis and membrane depolarisation. However, they bound to the cell membrane to the same extent as the wild-type toxin. Thus, the pore-formation, but not the membrane binding was the cause for these changes. Secondly, the effect of pneumolysin on cellular trafficking was investigated. Here, the variants showed no effect, but the wild-type led to an increase in overall endocytotic events and was itself internalised into the cell. In order to characterise a possible mechanism for internalisation, a GFP-tagged version of pneumolysin was used. Several fluorescence-labelled markers for different endocytotic pathways were used in a co-staining approach with pneumolysin. Furthermore, inhibitors for two key-players in classical endocytotic pathways, dynamin and myosin II, were used in order to investigate classical endocytotic pathways and their possible involvement in toxin internalisation. The second finding of this work is that pneumolysin is taken up into the cell via dynamin- and caveolin-independent pinocytosis, which could transfer the toxin to caveosomes. From there, the fate of the toxin remains unknown. Additionally, pneumolysin leads to an overall increase in endocytotic events. This observation led to the third aim of this work. If the toxin increases the overall rate of endocytosis, the question arises whether toxin internalisation favours bacterial tissue penetration of the host or whether it serves as a defence mechanism of the cell in order to degrade the protein. Thus, several proinflammatory cytokines were investigated, as previous studies describe an effect of pneumolysin on cytokine production. Surprisingly, only interleukin 6-production was increased after toxin-treatment and no effect of endocytotic inhibitors on the interleukin 6-production was observed. The conclusion from this finding is that pneumolysin leads to an increase of interleukin 6, which would not depend on the endocytotic uptake of pneumolysin. The production of interleukin 6 would enhance the production of acute phase proteins, T-cell activation, growth and differentiation. On the one hand, this activation could serve pathogen clearance from infected tissue. On the other hand, the production of interleukin 6 could promote a further penetration of pathogen into host tissue. This question should be further investigated. N2 - Das Protein-Toxin Pneumolysin ist einer der entscheidenden Virulenzfaktoren von Streptococcus pneumoniae. Dieses Protein-Toxin gehört zur Familie der cholesterinabhängigen Zytolysine, die Membrancholesterol für ihre Aktivierung und Bindung benötigen. Nach der Membranbindung ordnen sich die Toxinmonomere kreisförmig an und ändern ihre Konformation, wodurch eine Pore entsteht, die dann zu einer Lyse der Zelle führt. Vor kurzem wurde nach Pneumolysinbehandlung in einer humanen Neuroblastomzelllinie eine Aktivierung kleiner GTPasen gefunden, die für zytoskelettale Veränderungen entscheidend sind (z.B. Zellbewegungen). Deshalb wurde die Hypothese aufgestellt, dass Pneumolysin diese zytoskelettalen Veränderungen auch in primären neuronalen Zellen auslösen könnte. Das Ziel dieser Arbeit war, die Effekte von Pneumolysin auf primäre Mausastrozyten im Hinblick auf Porenbildung, zelluläre Transportprozesse und immunologische Antworten zu untersuchen. Im ersten Teil wird die Bedeutung der Porenbildung auf zytoskelettale Veränderungen untersucht. Hierbei wurden lytische Fähigkeiten, Membranbindung, Membrandepolarisation, Porenbildung im künstlichen Bilayer und Effekte auf das Zytoskelett untersucht. Sowohl der Wildtyp als auch die Varianten zeigten die gleiche Stärke an Membranbindung. Diese Untersuchungen weisen darauf hin, dass die Porenbildung für die Zell-Lyse, Membrandepolarisation und zytoskelettale Veränderungen in Mausastrozyten wichtig ist und führt zu der Schlussfolgerung, dass nicht die Membranbindung, sondern die Porenbildung entscheidend für die beobachteten zytoskelettalen Veränderungen ist. Im zweiten Teil dieser Arbeit wurde der Effekt des Pneumolysin auf zelluläre Transportprozesse untersucht. Erneut zeigten die Pneumolysinvarianten keine Wirkung, während der Wildtyp die Gesamtrate der Endozytose erhöhte. Weiterhin wurde nur der Wildtyp internalisiert. Um einen möglichen Mechanismus für die Internalisierung des Toxins vorschlagen zu können, wurde Pneumolysin als GFP-markiertes Toxin genutzt. Weiterhin wurden einige Marker für unterschiedliche endozytotische Transportprozesse genutzt um eine Ko-lokalisation mit Pneumolysin-GFP zu ermöglichen. Des Weiteren wurden Inhibitoren für zwei Schlüsselproteine endozytotischer Vorgänge, Dynamin und Myosin II, genutzt. Die Ergebnisse dieser Untersuchungen zeigten, dass Pneumolysin wahrscheinlich durch dynamin- und caveolin-unabhängige Pinozytose in die Zelle aufgenommen wird. Dieser Mechanismus führt zu der Bildung von Caveosomen, deren weiterer Transport, und somit das Schicksal des internalisierten Toxins, bis heute noch nicht aufgeklärt ist. Die Beobachtung, dass Pneumolysin die Gesamtrate an Endozytose erhöht, führte zum dritten Teil dieser Arbeit. Wenn das Toxin die Gesamtrate an Endozytose erhöht, stellt sich die Frage, ob dieser Vorgang der Zerstörung des Toxins – also einer Abwehr der Zelle – dient, oder ob diese Internalisierung eine Strategie des Pathogens ist, um tiefer in das Wirtsgewebe einzudringen. Aktuelle Studien belegen, dass Pneumolysin einen Einfluss auf inflammatorische Antworten des Immunsystems hat. Aus diesem Grund wurden unterschiedliche proinflammatorische Zytokine untersucht. Überraschenderweise zeigte sich nur eine Erhöhung des Interleukin 6 nach der Toxinbehandlung. Weiterhin hatten die Endozytoseinhibitoren keinen Effekt auf die Produktion dieses proinflammatorischen Zytokins. Pneumolysin führt also zu einem Anstieg der Interleukin 6 Produktion, diese Produktion ist jedoch unabhängig von der Internalisierung dieses Toxins. Die Produktion dieses Interleukins würde zur Produktion der Akute-Phase Proteine, der Aktivierung der T-Zell Antwort, zu Wachstum und Zelldifferenzierung führen. Einerseits könnte diese Aktivierung die Infektion durch das Pathogen bekämpfen. Andererseits könnte S. pneumoniae die erhöhte Produktion durch PLY an Interleukin 6 nutzen um weiter in das Wirtsgewebe vordringen zu können. Diese Frage sollte noch durch weitere Experimente untersucht werden. KW - Streptococcus pneumoniae KW - Toxin KW - Hirnhautentzündung KW - Entzündung KW - Astrozyt KW - Pore KW - Pneumolysin KW - Meningitis KW - Inflammation KW - Zelltransport KW - Porenbildung KW - Pneumolysin KW - Meningitis KW - Inflammation KW - cellular-trafficking KW - Pore-formation Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-70892 ER - TY - JOUR A1 - Stopper, Helga A1 - Kühnel, A. A1 - Podschun, B. T1 - Combination of the chemotherapeutic agent 5-fluorouracil with an inhibitor of its catabolism results in increased micronucleus induction N2 - The rate limiting step in 5-fluorouracil catabolism is catalyzed by the enzyme dihydropyrimidine dehydrogenase. Since degradation of 5-fluorouracil decreases its efficacy in chemotherapy, the inhibition of its catabolism is a promising tool. We investigated the formation of micronuclei in vitro in mouse L5178Y cells. 5-fluorouracil induced an increase in micronucleus frequency, which could significantly be enhanced by the concurrent application of 2,6-dihydroxypyridine, an inhibitor of dihydropyrimidine dehydrogenase. The 5-fluorouracil concentration necessary to reach maximal genotoxic effects could be reduced to half in the presence of inhibitor. 2,6-Dihydroxypyridine alone and the naturally occuring enzyme substrate uracil did not induce micronucleus formation. Combined application of the chemotherapeutic agent 5-fluorouracil and an inhibitor of its could reduce side-effects by lowering the effective dose of the active drug. With this study we provide further support for the usefulness of this concept. KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63383 ER - TY - JOUR A1 - Stopper, Helga A1 - Eckert, I. A1 - Schiffmann, D. A1 - Spencer, D. L. A1 - Caspary, W. J. T1 - Is micronucleus induction by aneugens an early event leading to mutagenesis? N2 - This study was designed to investigate a previously unidentified potential mechanism for mutation induction as well as to clarify a biological comequence of micronucleus formation. We compared the induction of micronuclei with mutation inductioo as measured by trißuorothymidine (TFI') resistance in mouse L5178Y cells using four aneugens: colcemid, diethylstilbestrol, griseofulvin and vioblastine. AU four compounds induced micronuclei which appeared in the first cell cycle after treatment. More than 85% of the micronuclei induced by each compound stained positive for the presence of kinetochores implying that the micronuclei contained wbole cbromosomes. However, these same compounds were unable to induce TFf resistance under tbree different treatment regimes. We concluded that tbese compounds, under conditions where tbey induce primarily kinetochore positive micronuclel, were not able to induce mutations. Thus, the induction of micronuclei containing wbole chromosomes barborlog a select.able gene is not an early event leadlog to mutations in these cells. KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63390 ER - TY - JOUR A1 - Stopper, Helga A1 - Körber, C. A1 - Spencer, D. L. A1 - Kirchner, S. A1 - Caspary, W.J. A1 - Schiffmann, D. T1 - An investigation of micronucleus and mutation induction by oxazepam in mammalian cells N2 - Tbe benzodiazepines are a class of d.rugs that are widely used in the treatment of various psychiatric disorders. One member of um ~' oxazepam, is also a common metabolite of sevmd other benzod.iazepines. Since the evidence for the genetic toxicity and carcinogenic properties of these compounds is incol:lsb1ent, we investigated the oxazepam-induced fonnation of micronuclei in Syrian Hamster embryo fibroblast (SHE) cells, human amniotic fluid fibroblast-like (AFFL) cells and LS178Y mouse cells. A dose-dependent increase in micronucleus fractions was found in all tbree ceU llnes. The time course of micronucleus induction in L5178Y cells showed a maximum at 5 h after treatment, suggesting that the micronuclei were fonned in the first mitosis after treatment. Kinetochore staining (CREST -antiserum) revealed the presence of kinetochores in -SO% of the micronuclei in aU tbree ceU types. ThJs resu1t was further confinned by in situ bybridization in LS178Y cells and indicates tbe presence of wbole Chromosomes or centric fragments as weU as acentric fragments in the oxazepam-induced micronuclei. The LS178Y cells did not show a mutagenic response to oxazepam at any of the doses or expression times used. KW - Toxikologie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63404 ER - TY - JOUR A1 - Stopper, Helga A1 - Körber, C. A1 - Schiffmann, D. A1 - Caspary, W. J. T1 - Cell-cycle dependent micronucleus formation and mitotic disturbances induced by 5-azacytidine in mammalian cells N2 - 5-Azacytidine was originally developed to treat human myelogenous leukemia. However, interest in this compound has expanded because of reports of its ability to affect cell differentiation and to alter eukaryotic gene expression. In an ongoing attempt to understand the biochemical effects of this compound, we examined the effects of 5-azacytidine on mitosis and on micronucleus formation in mammalian cells. In L5178Y mouse cells, 5-azacytidine induced micronuclei at concentrations at which we and others have already reported its mutagenicity at the tk locus. Using CREST staining and C-banding studies, we showed that the induced micronuclei contained mostly chromosomal fragments although some may have contained whole chromosomes. By incorporating BrdU into the DNA of SHE cells, we determined that micronuclei were induced only when the compound was added while the cells were in S phase. Microscopically visible effects due to 5-azacytidine treatment were not observed until anaphase of the mitosis following treatment or thereafter. 5-Azacytidine did not induce micronuclei via interference with formation of the metaphase chromosome arrangement in mitosis, a common mechanism leading to aneuploidy. SupravitalUV microscopy revealed that chromatid bridges were observed in anaphase and, in some cases, were sustained into interphase. In the first mitosis after 5-azacytidine treatment we observed that many cells were unable to perform anaphase separation. All of these observations indicate that 5-azacytidine is predominantly a clastogen through its incorporation into DNA. KW - Toxikologie KW - Micronuclei KW - L5178Y cells KW - 5-Azacytidine KW - Berenil KW - DES KW - Ethionine KW - Mitosis Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63411 ER - TY - JOUR A1 - Adam, W. A1 - Ahrweiler, M. A1 - Saha-Möller, C. R. A1 - Sauter, M. A1 - Schönberger, A. A1 - Epe, B. A1 - Müller, E. A1 - Schiffmann, D. A1 - Stopper, Helga A1 - Wild, D. T1 - Genotoxicity studies of benzofuran dioxetanes and epoxides with isolated DNA, bacteria and mammalian cells N2 - 1.2-Dioxetanes, very reactive and high energy molecules. are involved as labile intermediates in dioxygenase- activated aerobic metabolism and in physiological processes. Various toxico1ogica1 tests reveal that dioxetanes are indeed genotoxic. In supercoiled DNA of bacteriophage PM2 they induce endonucleasesensitive sites, most of them are FPG protein-sensitive base modifications (8-hydroxyguanine, fonnamidopyrimidines). Pyrimidinedimersand sites ofbase loss (AP sites) which were probed by UV endonuclease and exonuclease 111 are minor lesions in this system. While the alky1-substituted dioxetanes do not show any significant mutagenic activity in different Salmonella typhimurium strains, heteroarene dioxetanes such as benzofuran and furocoumarin dioxetanes are strongly mutagenic in S. typhimurium strain TA I 00. DNA adducts formed with an intermediary alkyJating agent appear to be responsible for the mutagenic activity of benzofuran dioxetane. We assume that the benzofuran epoxides, generated in situ from benzofuran dioxetanes by deoxygenation are the ultimate mutagens of the latter. since benzofuran epoxides are highly mutagenic in the S. typhimurium strain TAIOO and they form DNA adducts. as detected by the 212Ppostlabelling technique. Our results imply that the type of D NA darnage promoted by dioxetanes is dependent on the structural feature of dioxetanes. Furthermore, the direct photochemical DNA darnage by energy transfer. i.e., pyrimidine dimers, plays a minor role in the genotoxicity of dioxetanes. Instead, photooxidation dominates in isolated DNA. while radical darnage and alkylation prevail in the cellular system. KW - Toxikologie KW - 1 KW - 2-Dioxetane KW - Benzefuran dioxetane KW - Benzefuran epoxide KW - DNA damage KW - Mutagenicity KW - DNA adduct . Repair endonuclease KW - FPG protein Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-63420 ER - TY - THES A1 - Moro, Sabrina T1 - Identification of target proteins of furan reactive metabolites in rat liver T1 - Identifizierung von Zielproteinen reaktiver Furan-Metabolite in Rattenleber N2 - Furan was recently found to be present in a variety of food items that undergo heat treatment. It is known to act as a potent hepatotoxin and liver carcinogen in rodents. In a 2-year bioassay, chronic furan administration to rats was shown to cause hepatocellular adenomas and carcinomas and very high incidences of cholangiocarcinomas even at the lowest furan dose tested (2.0 mg/kg bw). However, the mechanisms of furan-induced tumor formation are poorly understood. Furan is metabolized by cytochrome P450 (CYP) enzymes, predominantly CYP2E1, to its major metabolite cis-2-butene-1,4-dial (BDA). BDA is thought to be the key mediator of furan toxicity and carcinogenicity and was shown to react with cellular nucleophiles such as nucleosides and amino acid residues in vitro. It is well known that covalent protein binding may lead to cytotoxicity, but the cellular mechanisms involved remain to be elucidated. Since covalent binding of reactive intermediates to a target protein may result in loss of protein function and subsequent damage to the cell, the aim of this study was to identify furan target proteins to establish their role in the pathogenesis of furan-associated liver toxicity and carcinogenicity. In order to identify target proteins of furan reactive metabolites, male F344/N rats were administered [3,4-14C]-furan. Liquid scintillation counting of protein extracts revealed a dose-dependent increase of radioactivity covalently bound to liver proteins. After separation of the liver protein extracts by two-dimensional gel electrophoresis and subsequent detection of radioactive spots by fluorography, target proteins of reactive furan intermediates were identified by mass spectrometry and database search via Mascot. A total of 61 putative target proteins were consistently found to be adducted in 3 furan-treated rats. The identified proteins represent - among others - enzymes, transport proteins, structural proteins and chaperones. Pathway mapping tools revealed that target proteins are predominantly located in the cytosol and mitochondria and participate in glucose metabolism, mitochondrial β-oxidation of fatty acids, and amino acid degradation. These findings together with the fact that ATP synthase β subunit was also identified as a putative target protein strongly suggest that binding of furan reactive metabolites to proteins may result in mitochondrial injury, impaired cellular energy production, and altered redox state, which may contribute to cell death. Moreover, several proteins involved in the regulation of redox homeostasis represent putative furan target proteins. Loss of function of these proteins by covalent binding of furan reactive metabolites may impair cellular defense mechanisms against oxidative stress, which may also result in cell death. Besides the potential malfunction of whole pathways due to loss of functions of several participating proteins, loss of function of individual proteins which are involved in various cellular processes such as transport processes across the mitochondrial membranes, cell signaling, DNA methylation, blood coagulation, and bile acid transport may also contribute to furan-induced cytotoxicity and carcinogenicity. Covalent binding of reactive metabolites to cellular proteins may result in accumulation of high amounts of unfolded or damaged proteins in the endoplasmic reticulum (ER). In response to this ER stress, the cell can activate the unfolded protein response (UPR) to repair or degrade damaged proteins. To address whether binding of furan reactive metabolites to cellular proteins triggers activation of the UPR, semiquantitative PCR and TaqMan® real-time PCR were performed. In the case of UPR activation, semiquantitative PCR should show enhanced splicing of X-box binding protein-1 (XBP1) mRNA (transcription factor and key regulator of the UPR) and TaqMan® real-time PCR should determine an increased expression of UPR target genes. However, our data showed no evidence for activation of the UPR in the livers of rats treated either with a single hepatotoxic dose or with a known carcinogenic dose for 4 weeks. This suggests either that furan administration does not induce ER stress through accumulation of damaged proteins or that activation of the UPR is disrupted. Consistent with the latter, glucose-regulated protein 78 (GRP78), identified as a target protein in our study, represents an important mediator involved in activation of the UPR whose inhibition was shown to impair induction of the UPR. Thus, adduct formation and inactivation of GRP78 by furan metabolites may disturb activation of the UPR. In addition to impaired activation of UPR, protein repair and degradation functions may be altered, because several proteins involved in these processes also represent target proteins of furan and thus may show impaired functionality. Taken together... N2 - Im Rahmen von Untersuchungen der U.S. Food and Drug Administration (FDA) wurde im Jahr 2004 bekannt, dass Furan in verschiedensten hitzebehandelten Lebensmitteln vorkommt. Durch Tierstudien des National Toxicology Programs (NTP) aus den 90er Jahren wusste man bereits, dass Furan hepatotoxische und leberkanzerogene Wirkungen in Nagern verursacht. In diesen Studien wurden nach chronischer Verabreichung von Furan an Ratten über einen Zeitraum von 2 Jahren bereits bei der niedrigsten getesteten Dosis von 2 mg/kg Körpergewicht hepatozelluläre Adenome und Karzinome sowie sehr hohe Inzidenzen von Cholangiokarzinomen beobachtet. Die Mechanismen, die der Tumorentstehung durch Furan zugrunde liegen, sind jedoch bis heute nicht ausreichend untersucht. Furan wird durch Enzyme der Cytochrom P450 (CYP) Familie, vor allem durch CYP2E1, zu seinem Hauptmetaboliten cis-2-Buten-1,4-dial (BDA) verstoffwechselt. Der reaktive Furan-Metabolit BDA kann in vitro mit zellulären Nukleophilen wie Nukleosiden und Aminosäureresten reagieren. Verschiedene Untersuchungen weisen darauf hin, dass die toxischen und kanzerogenen Effekte von Furan hauptsächlich durch BDA vermittelt werden. Es ist seit langem bekannt, dass kovalente Bindung an Proteine zu Zytotoxizität führen kann. Der zugrunde liegende Mechanismus ist bislang noch ungeklärt. Es wird jedoch vermutet, dass die kovalente Bindung von reaktiven Metaboliten an Proteine zu deren Funktionsverlust führt, was wiederum fatale Konsequenzen für die Zellen haben kann. Eine Identifizierung der Zielproteine von Furan, d.h. jener Proteine an denen eine Adduktbildung durch reaktive Metabolite von Furan erfolgt, könnte daher Aufschluss über deren mögliche Rolle in der Pathogenese der durch Furan induzierten Lebertoxizität und -kanzerogenität geben. Um die Zielproteine reaktiver Furan-Metabolite zu identifizieren, wurde [3,4-14C]-Furan an männliche F344/N Ratten verabreicht. Durch Flüssigkeitsszintillationszählung der Proteinextrakte wurde ein dosisabhängiger Anstieg der kovalent an Leberproteine gebundenen Radioaktivität ermittelt. Nach der Auftrennung der Leberproteinextrakte durch zweidimensionale Gelelektrophorese und der Detektion der radioaktiven Spots durch Fluorographie wurden die Zielproteine reaktiver Furan-Metabolite durch Massenspektrometrie und Datenbanksuche (Mascot-Datenbank) identifiziert. In 3 Ratten, die mit Furan behandelt worden waren, wurden übereinstimmend 61 mögliche Zielproteine von Furan identifiziert. Unter diesen Zielproteinen waren unter anderem Enzyme, Transportproteine, Strukturproteine und Chaperones vertreten. Die Zuordnung der identifizierten Proteine zu zellulären Signal- und Stoffwechselwegen mittels spezieller Software zeigte, dass die Zielproteine hauptsächlich aus dem Zytosol und den Mitochondrien stammen und an Glucosemetabolismus, mitochondrieller β-Oxidation von Fettsäuren und dem Abbau von Aminosäuren beteiligt sind. Außerdem wurde auch die β-Untereinheit der ATP-Synthase als mögliches Zielprotein identifiziert. Diese Ergebnisse weisen stark darauf hin, dass die Bindung reaktiver Furan-Metabolite an Proteine zur Schädigung der Mitochondrien, Beeinträchtigung der zellulären Energieproduktion und verändertem Redox-Status führen und damit zum Zelltod beitragen könnte. Weiterhin befanden sich unter den möglichen Zielproteinen auch Proteine, die für die Regulation der Redox-Homöostase in der Zelle verantwortlich sind. Ein Funktionsverlust dieser Proteine durch die kovalente Bindung reaktiver Furan-Metabolite könnte eine verminderte Fähigkeit der Zelle oxidativen Stress abzuwehren zur Folge haben, was wiederum zum Zelltod führen könnte. Zusätzlich dazu, dass die kovalente Modifikation mehrerer Proteine aus dem gleichen Stoffwechselweg dessen Gesamtfunktion beeinträchtigen kann, ist es außerdem möglich, dass Adduktbildung an einzelnen Proteinen mit Schlüsselfunktionen in der Aufrechterhaltung der Zellhomöostase toxische Effekte auslösen kann. Ein Funktionsverlust dieser Proteine, die z.B. in Transportprozesse durch Mitochondrienmembranen, zelluläre Signalwege, DNA-Methylierung, Blutgerinnung und Gallensäuren-Transport involviert sind, könnte ebenfalls an den zytotoxischen und kanzerogenen Wirkungen von Furan beteiligt sein. Die kovalente Bindung reaktiver Furan-Metabolite an zelluläre Proteine kann zu einer Akkumulation großer Mengen an ungefalteten oder beschädigten Proteinen im endoplasmatischen Retikulum (ER) führen. Als Antwort auf diesen sogenannten ER-Stress kann die Zelle den Unfolded Protein Response (UPR) aktivieren, einen zellulären Signalweg um vermehrt beschädigte Proteine zu reparieren oder abzubauen. Um festzustellen, ob die Bindung reaktiver Furan-Metabolite an zelluläre Proteine eine Aktivierung des UPR auslöst, wurden semiquantitative PCR und Real-Time-PCR Analysen durchgeführt. Nach einer Aktivierung des UPR sollte... KW - Furan KW - Proteinbindung KW - Leber KW - Proteinaddukte KW - Kanzerogenese KW - furan KW - protein adducts KW - liver KW - carcinogenicity Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-57617 ER - TY - THES A1 - Queisser, Nina T1 - Oxidative and nitrosative stress induced by the mineralocorticoid aldosterone - Mechanism of induction and role of signal transduction pathways and transcription factors T1 - Oxidativer und nitrosativer Stress induziert durch das Mineralocorticoid Aldosteron - Mechanismen der Induktion und Rolle von Signalwegen und Transkriptionsfaktoren N2 - Several epidemiological studies found that hypertensive patients have an increased risk to develop kidney cancer. Hyperaldosteronism frequently results in arterial hypertension and contributes to the development and progression of kidney injury, with reactive oxygen species (ROS) playing an important role. ROS are thought to be associated with many pathological conditions such as cancer and other disorders, like cardiovascular complications , which often go along with hypertension. The aim of the present work was to investigate whether the effects of elevated aldosterone concentrations might be involved in the increased cancer incidence of hypertensive individuals. First, the potential capacity of aldosterone to induce oxidative stress and DNA damage was investigated in vitro and in vivo. In LLC-PK1 porcine kidney cells and MDCK canine kidney cells the significant formation of ROS, and especially of superoxide (O2˙ˉ) was assessed. With two genotoxicity tests, the comet assay and the micronucleus frequency test, the DNA damaging potential of aldosterone was quantified. In both genotoxicity tests a dose-dependent increase in aldosterone-induced structural DNA damage was observed. Oxidative stress and DNA damage were prevented by antioxidants, suggesting ROS as a major cause of DNA damage. Furthermore, the oxidatively modified DNA lesion 8-oxo-7,8-dihydro-2´-deoxyguanosine (8-oxodG), was found to be significantly elevated. In kidneys of rats with desoxycorticosterone acetate (DOCA)/salt-induced hypertension, which is a model of severe mineralocorticoid-dependent hypertension, elevated levels of ROS and superoxide were found, compared to kidneys of sham rats. Also DNA strand breaks, measured with the comet assay and double strand breaks, visualized with antibodies against the double strand break-marker gamma-H2AX were significantly elevated in kidneys of DOCA/salt-treated rats. In addition, significantly increased amounts of 8-oxodG were detected. Proliferation of kidney cells was found to be increased, which theoretically enables the DNA damage to manifest itself as mutations, since the cells divide. Second, the effects of aldosterone on the activation of transcription factors and signaling pathways were investigated. A significant activation of the potentially protective transcription factor Nrf2 was observed in LLC-PK1 cells. This activation was triggered by an increase of ROS or reactive nitrogen species (RNS). In response to oxidative stress, glutathione synthesis and detoxifying enzymes, such as the subunits of the glutathione-cysteine-ligase or heme oxygenase 1 were rapidly induced after 4 h. Nevertheless, after 24 h a decrease of glutathione levels was observed. Since ROS levels were still high after 24 h, but Nrf2 activation decreased, this adaptive survival response seems to be transient and quickly saturated and overwhelmed by ROS/RNS. Furthermore, Nrf2 activation was not sufficient to protect cells against oxidative DNA damage, because the amounts of double strand breaks and 8-oxodG lesions steadily rose up to 48 h of aldosterone treatment. The second transcription factor that was time- and dose-dependently activated by aldosterone in LLC-PK1 and MDCK cells was NF-kappaB. Furthermore, a significant cytosolic and nuclear activation of ERK was detected. Aldosterone induced the phosphorylation of the transcription factors CREB, STAT1 and STAT3 through ERK. Third, the underlying mechanisms of oxidant production, DNA damage and activation of transcription factors and signaling pathways were studied. Aldosterone exclusively acted via the MR, which was proven by the MR antagonists eplerenone, spironolactone and BR-4628, whereas the glucocorticoid receptor (GR) antagonist mifepristone did not show any effect. Furthermore, aldosterone needed cytosolic calcium to exert its negative effects. Calcium from intracellular stores and the influx of calcium across the plasma membrane was involved in aldosterone signaling. The calcium signal activated on the one hand, the prooxidant enzyme complex NAD(P)H oxidase through PKC, which subsequently caused the generation of O2˙ˉ. On the other hand, nitric oxide synthase (NOS) was activated, which in turn produced NO. NO and O2˙ˉ can react to the highly reactive species ONOO- that can damage the DNA more severely than the less reactive O2˙ˉ. In the short term, the activation of transcription factors and signaling pathways could be a protective response against aldosterone-induced oxidative stress and DNA damage. However, a long-term NF-B and ERK/CREB/STAT activation by persistently high aldosterone levels could unfold the prosurvival activity of NF-kappaB and ERK/CREB/STAT in aldosterone-exposed cells. DNA damage caused by increased ROS might become persistent and could be inherited to daughter cells, probably initiating carcinogenesis. If these events also occur in patients with hyperaldosteronism, these results suggest that aldosterone could be involved in the increased cancer incidence of hypertensive individuals. N2 - Mehrere epidemiologische Studien haben ein erhöhtes Nierenkrebsrisko bei Patienten mit Bluthochdruck aufgedeckt. Hyperaldosteronismus führt oft zu arteriellem Bluthochdruck und trägt zur Entwicklung und zum Fortschreiten von Nierenschäden bei, wobei reaktive Sauerstoffspezies (ROS) eine wichtige Rolle spielen. Immer häufiger werden ROS mit Krankheitsbildern wie Krebs und kardiovaskulären Erkrankungen, die mit Bluthochdruck einhergehen, in Verbindung gebracht. Das Ziel dieser Arbeit war es, zu untersuchen, ob erhöhte Aldosteronkonzentrationen an dem gesteigerten Krebsrisiko von hypertensiven Patienten beteiligt sein könnten. Zunächst wurde die potentielle Kapazität von Aldosteron, oxidativen Stress und DNA-Schaden in vitro und in vivo induzieren zu können, untersucht. In der Schweine-Nierenzelllinie LLC-PK1 und der Hunde-Nierenzelllinie MDCK wurde die Entstehung von ROS und speziell die Bildung von Superoxid (O2˙ˉ) nachgewiesen. Das gentoxische Potential von Aldosteron wurde mit zwei Genotoxizitätstests, dem Comet Assay und dem Mikrokernfrequenztest bestimmt. In beiden Genotoxizitätstests konnte ein dosis-abhängiger Anstieg des strukturellen DNA-Schadens beobachtet werden. Antioxidantien konnten den oxidativen Stress und die DNA-Schäden verringern, was annehmen lässt, dass ROS die Hauptursache für die Entstehung der DNA-Schäden sind. Darüberhinaus wurden signifikant erhöhte Mengen der oxidativ modifizierten DNA Läsion 8-Oxo-7,8-dihydro-2´-deoxyguanosin (8-oxodG) gefunden. In Nieren von Ratten mit Desoxycorticosteron-Acetat (DOCA) und Salz-induziertem Bluthochdruck, ein Modell für massiven Mineralocorticoid-induzierten Bluthochdruck, wurde ebenfalls eine erhöhte Bildung von ROS und O2˙ˉ in Nieren von DOCA/Salz-Ratten im Vergleich zu Sham-Ratten beobachtet. Auch im Comet Assay erfasste DNA-Strangbrüche und Doppelstrangbrüche, die mit Hilfe von Antikörpern gegen den Doppelstrangbruchmarker gamma-H2AX sichtbar gemacht wurden, waren in den Nieren der DOCA/Salz-behandelten Ratten signifikant erhöht. Weiterhin wurden erhöhte 8-oxodG-Spiegel in DOCA/Salz-Ratten beobachtet. Auch eine erhöhte Proliferationsrate in DOCA/Salz-behandelten Ratten konnte festgestellt werden, was theoretisch dazu führen könnte, dass sich die DNA-Schäden als Mutationen manifestieren, da sich die Zellen teilen. Im zweiten Teil der Arbeit wurde der Einfluss von Aldosteron auf die Aktivierung von Transkriptionsfaktoren und Signalwegen untersucht. Zunächst konnte die Aktivierung des potentiell schützenden Transkriptionsfaktors Nrf2 in LLC-PK1 Zellen mittels electrophoretic mobility shift assay (EMSA) beobachtet werden. Diese Aktivierung wurde durch den Anstieg an ROS und reaktiven Stickstoffspezies (RNS) ausgelöst. Als Antwort auf den oxidativen Stress, wurde die Glutathion-Synthese und detoxifizierende Enzyme, wie die Untereinheiten der Glutathion-Cystein-Ligase oder Hämoxygenase 1, nach 4 Stunden rasch hochreguliert. Nichtsdestotrotz konnte nach 24 Stunden eine Abnahme des Glutathionspiegels festgestellt werden. Da die Konzentration an ROS nach 24 Stunden immer noch signifikant erhöht war, die Aktivierung von Nrf2 allerdings stark zurückgegangen ist, scheint diese adaptive Überlebensstrategie nur kurzfristig, und somit schnell durch ROS/RNS gesättigt zu sein. Weiterhin war die Aktivierung von Nrf2 nicht ausreichend, um die Zellen vor dem durch Aldosteron-induzierten DNA-Schaden zu schützen, da Doppelstrangbrüche, sowie 8-oxodG-Läsionen bei bis zu 48-stündiger Inkubation mit Aldosteron stetig anstiegen. Der zweite Transkriptionsfaktor, der zeit- und dosisabhängig durch Aldosteron aktiviert wurde, war NF-kappaB. Ausserdem wurde die cytosolische und nukleäre Aktivierung von ERK nachgewiesen. Aldosteron induzierte weiterhin die Phosphorylierung der Transkriptionsfaktoren CREB, STAT1 und STAT3 durch ERK. Im dritten Teil dieser Arbeit wurden die zugrundeliegenden Mechanismen der Entstehung von ROS/RNS, des DNA-Schadens und der Aktivierung von Transkriptionsfaktoren untersucht. Aldosteron wirkte ausschließlich über den MR, bewiesen durch Einsatz der MR-Antagonisten Eplerenon, Spironolakton und BR-4628. Der Glucocorticoid-Rezeptor-Antagonist Mifepriston zeigte dagegen keinen Effekt. Weiterhin benötigte Aldosteron cytosolisches Calcium, um seine negativen Effekte auszuüben. Es waren intrazelluäres Calcium, sowie ein Calciuminflux über die Plasmamembran am Aldosteronsignal beteiligt. Einerseits wurde der prooxidative Enzymkomplex NAD(P)H-Oxidase von Calcium durch die Proteinkinase C (PKC) aktiviert, was wiederum zur Bildung von O2˙ˉ führte. Andererseits kam es durch erhöhtes cytosolisches Calcium zur Aktivierung der NO-Synthase (NOS), welche daraufhin Stickoxid (NO) produzierte. NO und O2˙ˉ können zu dem hochreaktiven Peroxynitrit (ONOO-) reagieren, welches die DNA mehr schädigen kann als das etwas weniger reaktive O2˙ˉ. Kurzfristig könnte die Aktivierung der Transkriptionsfaktoren und Signalwege eine schützende Wirkung gegen den durch Aldosteron-induzierten oxidativen Stress und DNA-Schaden in den Zellen haben. Allerdings kann eine länger anhaltende Aktivierung von NF-kappaB und ERK/CREB/STAT durch permanent hohe Aldosteronspiegel zur Induktion einer Überlebensstrategie durch NF-kappaB und ERK/CREB/STAT in Aldosteron-exponierten Zellen führen. Der DNA-Schaden, der durch erhöhte ROS-Spiegel entsteht, könnte persistent und somit an Tochterzellen weitervererbt werden, was eventuell zur Entstehung von Krebs beitragen könnte. Falls diese Effekte auch in Patienten mit Hyperaldosteronismus gefunden werden können, dann könnte Aldosteron an der erhöhten Krebsinzidenz bei Bluthochdruck beteiligt sein. KW - Aldosteron KW - Oxidativer Stress KW - DNS-Schädigung KW - NADPH-Oxidase KW - Stickstoffoxidsynthase KW - Aldosteron KW - Oxidativer Stress KW - Nitrosativer Stress KW - DNA-Schaden KW - Transkriptionsfaktoren KW - aldosterone KW - oxidative stress KW - nitrosative stress KW - DNA damage KW - transcription factors Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-53566 ER - TY - THES A1 - Koussémou, Yéwa Bony Marthe T1 - A\(_{2B}\) adenosine receptor signaling in MDA-MB-231 breast cancer cells: Mechanism of A\(_{2B}\)-mediated reduction of ERK1/2 phosphorylation T1 - Signalwege des A\(_{2B}\) Adenosinrezeptors in MDA-MB-231 Brustkrebszellen: Mechanismus der A\(_{2B}\)-vermittelten Reduktion der ERK1/2 Phosphorylierung N2 - Recently, it was shown that MDA-MB-231 breast cancer cells express very high levels of the A2BAR as the sole adenosine receptor subtype, and stimulation of the A2BAR in MDA-MB-231 cells triggers an unusual inhibitory signal on ERK1/2 phosphorylation. The ERK1/2 pathway is reported to be associated with the control of growth, proliferation and differentiation of cells and as such might serve as a promising target for tumor treatment. The present study investigated signaling mechanisms involved in linking A2BAR to ERK1/2 phosphorylation in MDA-MB-231 cells. The A2BAR mediated reduction of ERK1/2 phosphorylation and of proliferation of MDA-MB-231 cell is in good agreement with previous results from (Dubey et al., 2005). These observations provide support to the hypothesis that activation of A2BAR could attenuate the growth of some types of cancer cell and argue against a stimulation of proliferation resulting from the activation of A2BAR as discussed by (Fernandez-Gallardo et al., 2016). AC activation by forskolin has recently been shown to enhance the activity of the chemotherapeutic agent doxorubicin in TNBC cells via a mechanism dependent on the PKA-mediated inhibition of ERK1/2 phosphorylation. Furthermore, forskolin also increased the sensitivity of MDA-MB-231 and MDA-MB-468 triple negative breast cancer cells to 5-fluorouracil and taxol (Illiano et al., 2018), and sustains the evidence of anticancer activity mediated by cAMP/PKA-mediated ERK1/2 inhibition. Similar to these studies, a reduced amount of pERK1/2 was also observed after stimulation of AC with FSK, application of cAMP-AM or inhibition of PDE-4. The inhibition of ERK1/2 phosphorylation was mimicked by UTP and abolished with the PLC inhibitor U73122 or by chelating intracellular Ca2+ with BAPTA-AM. These results point to an important role for both cAMP and Ca2+ signaling in the pathway leading to a decrease in ERK1/2 phosphorylation. This study encourages the idea that A2BAR could be used as target in cancer therapy. But A2BAR did not only stimulate signaling cascades associated with cell survival and proliferation reduction, but also key phases relevant in angiogenesis like Ca2+ mobilization (Kohn et al., 1995). Whereas the potency toward AC and Ca2+ are similar for the diverse agonists, the potency to promote ERK1/2 reduction is much higher. Interestingly, the proliferation of MDA-MB-231 cells is inhibited by low nanomolar agonist concentration which is inactive in Ca2+ mobilization. This means that it is certainly possible to reduce the proliferation without promoting angiogenesis. LUF6210 is particularly interesting when considering that it preferentially stimulates a reduction in ERK1/2 phosphorylation over Ca2+ and therefore may not promote angiogenesis. LUF6210 is therapeutically appealing as adjuvant in treatment of cancer. Given that stimulation of AC can activate a reduction of ERK1/2 phosphorylation and proliferation in cancer cells, agonist bias toward Gs-AC-PKA-mediated ERK1/2 inhibition represent a potential therapy of various malignancies. The fact that the reduction of ERK1/2 phosphorylation followed by reduced proliferation observed in MDA-MB-231 cells were mediated by the activation of the A2BAR illustrates the importance of this receptor subtype in cancer. A2BARs must be considered as a key factor in cancer treatment and deserve attention for the development of new therapeutic strategies. N2 - Adenosin reguliert eine Reihe physiologischer Funktionen über die vier ARs, die zur Familie der GPCR gehören. Adenosin beeinflusst das Zellwachstum sowohl positiv als auch negativ. Dabei spielen die MAPK eine wichtige Rolle. Diverse Studien haben gezeigt, dass die Aktivierung alle ARs Subtypen zur Phosphorylierung der MAPK ERK1/2 führt. Es gibt immer mehr Hinweise auf die Beteiligung des A2BAR am Wachstum und der Progression von Tumoren. Die MDA-MB-231 Brustkrebszellen weisen eine hohe Expressionsrate des A2BAR als einzige ARs Subtypen auf. Zusätzlich zu AC-Aktivierung und intrazellulärer Ca2+-Freisetzung führt die Stimulation des A2BAR der MDA-MB-231-Brustkrebszellen zur Reduktion der ERK1/2 Phosphorylierung. NECA, der unselektive AR-Agonist, führt zu einer zeit- und konzentrationsabhängigen Inhibition der ERK1/2 Phosphorylierung. Auch eine signifikante Reduktion der Proliferation der MDA-MB-231 Brustkrebszellen wurde beobachtet. Unsere Ergebnisse deuten darauf hin, dass A2BARs das Wachstum von MDA-MB-231 Zellen hemmen, indem sie die Aktivierung des ERK1/2 reduzieren, was in gutem Einklang mit den Ergebnissen von (Dubey et al., 2005) steht. Diese Ergebnisse unterstützen die Ansicht, dass die Aktivierung von A2BAR das Wachstum von bestimmten Arten von Krebszellen hemmt, und wiederspricht dem fördernden Effekt des Wachstums von A2BAR beschrieben in (Fernandez-Gallardo et al., 2016). Die AC-Aktivierung durch Forskolin erhöht den Effekt des Chemotherapeutikums Doxorubicin in TNBC Zellen. Darüber hinaus erhöhte Forskolin auch die Empfindlichkeit von MDA-MB-231 und MDA-MB-468 TNBC auf 5-Fluorouracil und Taxol (Illiano et al., 2018) und bestätigt die anti-Krebs-Aktivität von reduzierter ERK1/2 Phosphorylierung, die von cAMP/PKA abhängig ist. Ähnlich zu diesen Studien reduziert sowohl eine Behandlung der MDA-MB-231 Zellen mit Forskolin oder mit cAMP-AM, als auch Hemmung der PDE-4 die ERK1/2 Phosphorylierung. Die durch A2BAR-vermittelte Reduktion der pERK1/2 ist in Anwesenheit des PKA Inhibitors H89 gehemmt. Die Reduktion der ERK1/2 Phosphorylierung wurde durch den PLC-Inhibitor U73122 und den Ca2+ Chelator BAPTA-AM gehemmt. Außerdem induziert die Ca2+ Freisetzung bei UTP die Reduktion der ERK1/2 Phosphorylierung. Diese Ergebnisse weisen auf eine wichtige Rolle von cAMP und Ca2+ in der A2BAR-vermittelten Hemmung der ERK1/2 Phosphorylierung hin. Eine solche Abnahme kann als Folge der Hemmung einer Kinase oder Stimulation einer Phosphatase auftreten. Wir untersuchten die MKPs, ein negativer Regulator der MAPK-Aktivität. Unsere Ergebnisse zeigen, dass die Stimulation des A2BAR in MDA-MB-231 Zellen zu erhöhter MKP-1 und MKP-2 Expression führt. Dieser Effekt bietet einen neuartigen Mechanismus für die A2BAR-vermittelte Reduktion der ERK1/2 Phosphorylierung. Der A2BAR und die induzierten Phosphatasen MKP-1 und MKP-2 könnten daher interessant für die Hemmung der Proliferation schnell wachsender Krebszellen sein. Auch wenn die Hemmung von Phosphatasen Aktivitäten die Reduktion der ERK1/2 Phosphorylierung rückgängig macht, deuten unsere Ergebnisse auf eine Beteilung der c-Raf-1 in der Reduktion der ERK1/2 Phosphorylierung hin. Es konnte gezeigt werden, dass die Aktivierung der -AR Rezeptoren ähnliche Signale wie A2BAR in MDA-MB-231 Zellen regulieren. Daher kann die Reduktion der ERK1/2 Phosphorylierung in MDA-MB-231 Zellen den Gs-gekoppelten Rezeptoren zugeordnet werden. A2BAR stimuliert auch eine Ca2+-Antwort, die mit der Angiogenese in Verbindung gebracht wird (Kohn et al., 1995). Interessanterweise ist das Wachstum von MDA-MB-231 Zellen mit nanomolare NECA Konzentration gehemmt, wobei diese in der Ca2+-Mobilisierung inaktiv ist, so dass das Wachstum gehemmt werden kann, ohne dabei die Angiogenese zu fördern. LUF6210 ruft kein Ca2+ Signal hervor und ist daher von Bedeutung, wenn man bedenkt, dass es die ERK1/2 Phosphorylierung redurziert aber die Angiogenese nicht beeinflusst. LUF6210 ist deshalb therapeutisch ansprechend in der Behandlung von Krebs. Angesichts der Tatsache, dass die Stimulation der AC die Reduktion der ERK1/2-Phosphorylierung und der Proliferation in Krebszellen aktiviert, sind selective Gs-AC-PKA Agonisten erforderlich in der Therapie verschiedener maligner Erkrankungen. KW - Adenosinrezeptor KW - A2B adenosine receptor KW - Brustkrebs KW - CAMP production KW - intracellular calcium release KW - reduction of ERK1/2 phosphorylation KW - reduction of cells proliferation KW - A2BAR KW - induzierte Phosphatasen MKP-1 und MKP-2 KW - Hemmung der Proliferation schnell wachsender Krebszellen Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-209655 ER - TY - JOUR A1 - Gonzales-Calero, G. A1 - Cubero, A. A1 - Klotz, Karl-Norbert T1 - G protein coupled A\(_1\) adenosine receptors in coated vesicles of mammalian brain. Characterization by radioligand binding and photoaffinity labeling N2 - A\(_1\) adenosine receptors in coated vesicles have been characterized by radioligand binding and photoaflinity labelling. Saturation experiments with the antagonist 8-cyclopentyl-1 ,3-[\(^3\)H]dipropyl-xanthine ([\(^3\)H]DPCPX) gave a Kdvalue of 0.7 nM and a Bmax value of 82± 13 fmol/mg protein. For the highly A\(_1\)-selective agonist 2-chloro-N\(^6\)-[\(^3\)H]cyclopentyladenosine ([\(^3\)H]CCPA) a Kd value of 1.7 nM and a Bmax value of 72 ± 29 fmol/mg protein was estimated. Competition of agonists for [\(^3\)H]DPCPX binding gave a pharmacological profile with R-N\(^6\)-phenylisopropyladenosine (R-PIA) > CCPA > S-PIA > 5'-N-ethylcarboxamidoadenosine (NECA), which is identical to brain membranes. The competition curves were best fitted according to a two-site model, suggesting the existence of two affinity states. GTP shifted the competition curve for CCP A to the right and only one affinity state similar to the low affinity state in the absence of GTP was detected. The photoreactive agonist 2-azido-N\(^6\)- \(^{125}\)I-p-hydroxyphenylisopropyladenosine ([\(^{125}\)I]AHPIA) specifically labelled a single protein with an apparent molecular weight of 35,000 in coated vesicles, which is identical to A\(_1\) receptors labelled in brain membranes. Therefore, coated vesicles contain A\(_1\) adenosine receptors with similar binding characteristics as membrane-bound receptors, including GTP-sensitive high-affinity agonist binding. Photoaffinity labelling data suggest that A\(_1\) receptors in these vesicles are not a processed receptor fonn. These results confirm that A\(_1\) receptors in coated vesicles are coupled to a G-protein, and it appears that the A\(_1\) receptor systems in coated vesicles andin plasma membranes are identical. KW - Toxikologie KW - Adenosine receptors KW - coated vesicles KW - G-protein KW - radioligand KW - photoaffinity labelling KW - brain membranes Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60435 ER - TY - JOUR A1 - Jesaitis, A. J. A1 - Erickson, R. W. A1 - Klotz, Karl-Norbert A1 - Bommakanti, R. K. A1 - Siemsen, D. W. T1 - Functional molecular complexes of human N-formyl peptide chemoattractant receptors and actin N2 - When human neutrophils become desensitized to formyl peptide chemoattractants, the receptors (FPR) for these peptides are converted to a high affinity, GTP-insensitive form that is associated with the Triton X-1 00- insoluble membrane skeleton from surface membrane domains. These domains are actin and fodrin-rich, but G protein-depfeted suggesting that FPR shuttling between G protein-enriched and depleted domains may control signal transduction. Todetermine the molecular basis for FPR interaction with the membrane skeleton, neutrophil subcellular fractions were screened for molecules that could bind photoaffinity-radioiodinated FPR solubilized in Triton X-1 00. These receptors showed a propensity to bind to a 41- to43-kDa proteinband on nitrocelluloseoverlays of SOS-PAGE-separated cytosol and plasma membrane fractions of neutrophils. This binding, as weil as FPR binding to purified neutrophil actin, was inhibited 50% by 0.6 \(\mu\)M free neutrophil cytosolic actin. Addition of greater than 1 \(\mu\)M G-actin to crude or lectin-purified Triton X-1 00 extracts of FPR from neutrophil membranes increased the sedimentationrate of a significant fraction of FPR two to three fold as measured by velocity sedimentation in Triton X-1 00-containing linear sucrose density gradients. Addition of anti-actin antibodies to FPR extracts caused a concentration-dependent immunoprecipitation of at least 65% of the FPR. More than 40% of the immunoprecipitated FPR was specifically retained on protein A affinity matrices. Membrane actin was stabilized to alkaline washing when membranes were photoaffinity labeled. Conversely, when purified neutrophil cytosolic actinwas added to membranes or their digitonin extracts, after prior depletion of actin by an alkaline membrane wash, photoaffinity labeling of FPR was increased two- to fourfold with an EC\(_{50}\) of approximately 0.1 \(\mu\)M actin. We conclude that FPR from human neutrophils may interact with actin in membranes to form Triton X-1 00-stable physical complexes. These complexes can accept additional G-actin monomers to form higher order molecular complexes. Formation of FPR-actin complexes in the neutrophil may play a role in the regulation of chemoattractantinduced activation or actin polymerization. KW - Toxikologie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60445 ER - TY - JOUR A1 - Bommakanti, R. K. A1 - Klotz, Karl-Norbert A1 - Dratz, E. A. A1 - Jesaitis, A. J. T1 - A carboxyl-terminal tail peptide of neutrophil chemotactic receptor disrupts its physical complex with G protein N2 - No abstract available KW - Toxikologie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60456 ER - TY - JOUR A1 - Klotz, Karl-Norbert A1 - Krotec, K. L. A1 - Gripentrog, J. A1 - Jesaitis, A. J. T1 - Regulatory interaction of N-formyl peptide chemoattractant receptors with the membrane skeleton in human neutrophils N2 - The cytoskeleton and/or membrane skeleton has been implicated in the regulation of N-formyl peptide receptors. The coupling of these chemotactic receptors to the membrane skeleton was investigated in plasma membranes from unstimulated and desensitized human neutrophils using the photoreactive agonist N-formyl-met-leu-phelys-N\(^6\)-[\(^{125}\)I]2(p-azidosalicylamido)ethyl-1,3'-dithiopropionate (fMLFK-[\(^{125}\)I]ASD). When membranes of unstimulated cells were solubilized in Triton-X 100, a detergent that does not disrupt actin filaments, only 50% of the photoaffinity-labeled receptors were solubilized sedimenting in sucrose density gradients at a rate consistent with previous reports. The remainder were found in the pellet fraction along with the membrane skeletal actin. Solubilization of the membranes in the presence of p-chloromercuriphenylsulfonic acid, elevated concentrations of KCI, or deoxyribonuclease I released receptors in parallel with actin. When membranes from neutrophils, desensitized by incubation with fMLFK-e 251]ASD at 15°C, were solubilized, nearly all receptors were recovered in the pellet fraction. lncubation of cells with the Iigand at 4°C inhibited desensitization partially and prevented the conversion of a significant fraction of receptors to the form associated with the membrane skeletal pellet. ln these separations the photoaffinity-labeled receptors not sedimenting to the pellet cosedimented with actin. Approximately 25% of these receptors could be immunosedimented with antiactin antibodies suggesting that N-formyl peptide receptors may interact directly with actin. These results are consistent with a regulatory role for the interaction of chemotactic N-formyl peptide receptors with actin of the membrane skeleton. KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60466 ER - TY - JOUR A1 - Klotz, Karl-Norbert A1 - Jesaitis, A. J. T1 - Neutrophil chemoattractant receptors and the membrane skeleton N2 - Signal transduction via receptors for N-formylmethionyl peptide chemoattractants (FPR) on human neutrophils is a highly regulated process which involves participation of cytoskeletal elements. Evidence exists suggesting that the cytoskeleton and/or the membrane skeleton controls the distributJon of FPR in the plane of the plasma membrane, thus controlling the accessibility of FPR to different proteins in functionally distinct domains. In desensitized cells, FPR are restricted todomains which are depleted of G proteins but enriched in cytoskeletal proteins such as actin and fodrin. Thus, the G protein signal transduction partners of FPR become inaccessible to the agonist-occupied receptor, preventing cell activation. The mechanism of interaction of FPR with the membrane skeleton is poorly understood but evidence is accumulating that suggests a direct binding of FPR (and other receptors) to cytoskeletal proteins such as actin. KW - Toxikologie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60471 ER - TY - JOUR A1 - Cantoreggi, S. A1 - Dietrich, D. R. A1 - Lutz, Werner K. T1 - Induction of cell proliferation in the forestomach of F344 rats following subchronic administration of styrene 7,8-oxide and butylated hydroxyanisole N2 - The question addressed was whether Stimulation of cell proliferation could be responsible for tumor induction in the torestornach by styrene 7,8-oxide (SO). Male F344 rats were treated for 4 weeks with 0, 137,275, and 550 mglkg SO by p.o. gavage 3 times/week. Positive controls received 0, 0.5, I, and 2% butylated hydroxyanisole (BHA) in the diet for 4 weeks. Twenty-four h before termination of the experlment, the rats were implanted s.c. with an osmotic minipump deliverlog S-bromo-2'-deoxyuri· dine (BrdU). Cell proliferation in the forestomach was assessed by immunohistochemistry for BrdU incorporated into DNA. Cell number/mm section length and fraction of replicating cells (labeling Index) were determined in 3 domains of the forestomach, the saccus caecus, the midregion, and the prefundic region. With the exception of the prefundic reglon of the low-dose SO group, a significant increase of the labeling index was found in all regions both with SO and BHA. Rats treated with BHA showed, in addition, a dose-dependent increase in number and size of hyperplastic lesions. This was most pronounced in the prefundic region where carcinomas were reported to be localized. In this region, the number of dividing cells/mm section length was increased up to 17-fold. With SO, only marginal morphological changes were occasionally observed, despite the fact that the respective long-term treatment bad been reported to result in a higher carcinoma incidence than treatment with BHA. It ls concluded that the rate of replicating cells alone, numerically expressed by the labeling Index, is an lnsufficient tool for interpretlog the role of cell division in carcinogenesis. It is postulated that SO and BHA induce forestomach tumors via different mechanisms. While hyperplasia in the prefundic region most likely dominates the carcinogenicity of BHA, a mechanism combining marginal genotoxicity with strong promotion by increased cell proliferation appears to be involved in the tumorigenic action of SO. KW - Toxikologie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60669 ER - TY - JOUR A1 - Fischer, W. H. A1 - Beland, P. E. A1 - Lutz, Werner K. T1 - DNA adducts, cell proliferation and papilloma latency time in mouse skin after repeated dermal application of DMBA and TPA N2 - 'lbe mouse skin tumor model was used to investigate whether the Ievel of DNA 8dducts and/or the rate of cell division in the epidermis are indicators of the risk of cancer formation for an individual in an outbred animal popul8tion. A high risk was considered to be reftected by 8 short latency period for the 8ppearance of 8 papilloma. Fernale NMRI mice were treated twice weekly with 2.5 nmol 7 ,12-dimethylbenz[a]antbracene (DMBA) and 3 nmoi12-0-tetradecanoylphorbol-13- 8cetate (TPA) and the appearance of papillomas was registered. The first papilloma 8ppeared after 7.5 weeks. After 17 weeks, when 12 of 14 mice bad 8t least one papilloma, an osmotic minipump deliverlog 5-bromo-2'deoxyuridine (BrdU) was implanted into eacb mouse for 24 h. The mice were killed after 24 h ~d the epidermis was analyzed for D:MBA-nucleotide 8dducts by 32p.postlabeling, for the cell number per unit skin length, and for the labeling index for DNA synthesls. Unexpectedly, D:MBA-nucleotide 8dduct Ievels were highest in those anima1s wbich showed the Iongest latency periods. Adduct Ievels were negatively correlated with the 18beling index, indicating that dilution of adducts by cell division was a predominant factor in determining average adduct concentrations. Individual tumor-latency time was not corTelated with either cell ntunber or labeling index. This could be due to the fact that the measurements only provided 8veraged data and gave no infonnation on the specific situation in clones of premalignant cells. Under the conditions of tbis assay, therefore, neither DNA adduct Ievels nor information on the average kinetics of cell division bad a predidive value for the individual amcer risk withln a group of outbred animals receiving the same treatment KW - Toxikologie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60673 ER - TY - JOUR A1 - Huber, K. W. A1 - Lutz, Werner K. T1 - Methylation of DNA in stomach and small intestine of rats after oral administration of methylamine and nitrite N2 - Young adult male Sprague-Dawley rats were given 30 \(\mu\)mol/kg body weight [\(^{14}\)C]methylamine hydrochloride and 700 \(\mu\)mol/ kg body weight sodium nilrite by oral gavage. DNA isolated from the stomach and from the first 15 cm of the smaß intestine was methylated, containing 7-methylguanine (7mG) at a level of one 7mG molecule per 5x10\8^6\) and lx10\(^7\) nucleotides, respectively. No 7mG was found fn the liver at a limit of detection of one 7mG molecule per 2xl0\(^8\) nucleotides. ln a second experiment, the excised stomachs were incubated with deoxyribonuclease before the isolation of the DNA in order to degrade DNA in the Iumen and in the uppermost lining cells. This treatment resulted in a 30% decrease in the yield of DNA and a 90% reduction in the level of 7mG formation. The results show that nitrosation of a primary alkylamine yields a precursor of an alkylating agent which has a long enough lifetime to diffuse towards and react with intracellular DNA. A correlation of DNA methylation in the stomach with the corresponding tumor formation by the methylating carcinogen N-methyi-N'-nitro-N-nitroso-guanidine was used to estimate the roJe of DNA damage resulting from endogenous nitrosation of dietary methylamine in man. It was concluded that the risk resulting from this single amine must be negligible bot that a similar evaluation of other primary amines is required before the over-aU role of primary amine nitrosation in the etiology of human gastric cancer can be assessed. KW - Toxikologie Y1 - 1984 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60984 ER - TY - JOUR A1 - Caviezel, M. A1 - Lutz, Werner K. A1 - Minini, U. A1 - Schlatter, C. T1 - Interaction of estrone and estradiol with DNA and protein of liver and kidney in rat and hamster in vivo and in vitro N2 - (6,7-\(^3\)H] Estrone (E) and [6,7-\(^3\)H]estradiol-17ß (E\(_2\)) have been synthesized by reduction of 6-dehydroestrone and 6-dehydroestradiol with tritium gas. Tritiated E and E\(_2\) were administered by oral gavage to female rats and to male and female hamsters on a dose level of about 300 \(\mu\)g/kg (54 mCi/kg). After 8 h, the liver was excised from the rats; liver and kidneys were taken from the hamsters. DNA was purified either directly from an organ homogenate or via chromatin. The radioactivity in the DNA was expressed in the units of the Covalent Binding Index, CBI = (\(\mu\)mol chemical bound per mol Similar considerations can be made for the liver where any true covalent DNA binding must be below a Ievel of 0.01. It is concluded that an observable tumor induction by estrone or estradiol is unlikely to be due to DNA binding. DNA-P)/(mmol chemical administered per kg b.w.). Rat liver DNA isolated via chromatin exhibited the very low values of 0.08 and 0.09 for E and E\(_2\) respectively. The respective figures in hamster liver were 0.08 and 0.11 in females and 0.21 and 0.18 in the males. DNA isolated from the kidney revealed a detectable radioactivity only in the female, with values of 0.03 and 0.05 for E and E\(_2\) respectively. The values for male hamster kidney were < 0.01 for both hormones. The minute radioactivity detectable in the DNA samples does not represent covalent binding to DNA, however, as indicated by' two sets of control experiments. (A) Analysis by HPLC of the nucleosides prepared by enzyme digest of liver DNA isolated directly or via chromatin did not reveal any consistent peak which could have been attributed to a nucleoside-steroid adduct. (B) All DNA radioactivity could be due to protein contaminations, because the specific activity of chromatin protein was determined to be more than 3 ,000 tim es high er than of DNA. The high affinity of the hormone to protein was also demonstrated by in vitro incubations, where it could be shown that the specific activity of DNA and protein was essentially proportional to the concentration of radiolabelled hormone in the organ homogenate, regardless of whether the animal was treated or whether the hormone was added in vitro to the homogenate. Carcinogens acting by covalent DNA binding can be classified according to potency on the basis of the Covalent Binding Index. Values of 10\(^3\)-10\(^4\) have been found for potent, 10\(^2\) for moderate, and 1-10 for weak carcinogens. Since estrone is moderately carcinogenic for the kidney of the male hamster, a CBI of about 100 would be expected. The actually measured Iimit of detection of 0.01 places covalent DNA binding among the highly unlikely mechanisms of action. KW - Toxikologie KW - Estrogen KW - Hormone KW - Carcinogenesis KW - DNA binding KW - Protein binding KW - Estrone Y1 - 1984 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60995 ER - TY - JOUR A1 - Däniken, A. von A1 - Lutz, Werner K. A1 - Jäckh, R. A1 - Schlatter, C. T1 - Investigation of the potential for binding of Di(2-ethylhexyl) phthalate (DEHP) and Di(2-ethylhexyl) adipate (DEHA) to liver DNA in vivo N2 - Investigation of the Potential for Binding of Di(2-ethylhexyl) Phthalate (DEHP) and Di(2- ethylhexyl) Adipate (DEHA) to Liver DNA in Vivo. VON DÄNIKEN, A., LUTZ, W. K., JÄCKH, R., AND ScHLATTER, C. (1984). Toxico/. App/. Pharmaco/. 73, 373-387. It was the aim oftbis investigation to determine whether covalent binding of di(2-ethylhexyl) phthalate (DEHP) to rat liver DNA and of di(2-ethylhexyl) adipate (DEHA) to mouse liver DNA could be a mechanism of action contributing to the observed induction of liver tumors after lifetime feeding of the respective rodent species with high doses of DEHP and DEHA. For this purpose, DEHP and DEHA radiolabeled in different parts of the molecule were administered orally to female rats and mice, respectively, with or witbout pretreatment for 4 weeks with 1% unlabeled compound in the diet. Liver DNA was isolated after 16 hr and analyzed for radioactivity. The data were converted to a covalent binding index, CBI = (micromoles of substance bound per mole of DNA nucleotides)/(millimoles of substance applied per kilogram body weight), in order to allow a quantitative comparison also with other carcinogens and noncarcinogens. Administration of [\(^{14}\)H]carboxylate-labeled DEHP to rats resulted in no measurable DNA radioactivity. The Iimit of detection, CBI < 0.02 was about 100 times below the CBI of compounds where an observable tumor-inducing potential could be due to genotoxicity. With [\(^{14}\)C]- and [\(^{3}\)H]DEHP labeled in the alcohol moiety, radioactivity was clearly measurable in rat liver DNA. HPLC analysis of enzyme-degraded or acid-hydrolyzed DNA revealed that the natural nucleosides or purine bases were radiolabeled whereas no radioactivity was detectable in those fractions where tbe carcinogenmodified nucleoside or base adducts are expected. The respective Iimits of detection were at 0.07 and 0.04 CBI units for the \(^{14}\)C and \(^{3}\)H Iabels, respectively. The experiments with [\(^{14}\)C]- and [\(^{3}\)H]DEHA, labeled in the alcobol moiety and administered to mice, revealed aminute radioactivity of <50 dpm/mg liver DNA, too little to allow a nucleoside analysis to determine that fraction of the radioactivity which bad been incorporated via biosynthesis. Expressed in the CBI units, values of 0.05 to 0.15 for \(^{14}\)C and 0.01 to 0.12 for \(^{3}\)H resulted. Determination of the level· of \(^{14}\)C02 expiration revealed a linear correlation with the speciftc activity of DNA. Experiments with 2-ethyl[ 1-\(^{14}\)C]hexanol perfonned with both rats and mice allowed the conclusion tbat most if not all DEHA radioactivity in mouse liver DNA was due to biosynthetic incorporation. A maximum possible true DNA binding by DEHA must be below CBI 0.01. Pretreatment of the animals witb unlabeled compound bad no effect on the DNA radioactivities in either species. The present negative data, in conjunction witb other negative short-term tests for mutagenicity, strongly indicate that covalent interaction with DNA is highly unlikely to be the mode of tumorigenic action of DEHP and DEHA in rodents. KW - Toxikologie Y1 - 1984 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-61004 ER - TY - JOUR A1 - Huber, K. W. A1 - Lutz, Werner K. T1 - Methylation of DNA by incubation with methylamine and nitrite N2 - DNA was incubated in septum-closed reaction vials with [\(^{14}\)C]methylamine and nitrite. The DNA was purified, hydrolysed with hydrochloric acid, and the purines were analysed by h.p.l.c. 7-Methylguanine was detectable as a result of DN A methylation in experiments perfonned in 100 mM acetate at pH 4. Using different concentrations of amine and nitrite a first order reaction for total amine and a second order for total nilrite could be shown. A study on the pH dependence using 100 mM malonate buffer, pH 2.0-6.0, revealed a maximum rate at pH 3.5, with steep slopes above and below this pH value, in agreement with a mathematical analysis of the reaction equations. The data show that the alkylating agent fonned spontaneously by nitrosation and deamination of a primary amine has a long enough lifetime to react with DNA in vitro. Using the reactioil orders established here, an extrapolation to lower concentrations found in the stomach can now be perfonned. Future in vivo experiments on the methylation of gastro-intestinal DNA then would show to what extent DNA in a cell is protected from alkylation. KW - Toxikologie Y1 - 1984 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-61011 ER - TY - JOUR A1 - Lutz, Werner K. A1 - Büsser, M. T. A1 - Sagelsdorff, P. T1 - Potency of carcinogens derived from covalent DNA binding and stimulation of DNA synthesis in rat liver N2 - ~n order to investigate the role of the stimu~ation of ceU division for the initiation (and possi:bly promotion) of live·r tumors by chemical carcinogens, the incorporation of radiolabeUed thymidine into liver DNA was dete:rmined in male rats. Single doses of various level!s of af.latoxin 81, benzidine and carbon tetrachloride (aU known to be genotoxic via DNA binding} did not affect cell division, whereas several hepatoca:rcinogens known not to bind to DNA (alphaHCH, dofibrate, and 2,3;7,8-t!etrachlorodiibenzo~p~dioxin) gave rise to a dosedependent stimulation of Ii ver DNA synthesis within 24 h. An equation combining the infl.uences of mitotic stimu:lation, expressed as dose required to double the contro~ Ievei of DNA synthesis, and DNA binding potency, exp:ressed as t.he Covalent Binding Index, correliated weil with the cardnogenk potency for both dasses of hepatocardnogens. KW - Toxikologie Y1 - 1984 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-61026 ER -