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- Institut für Pharmakologie und Toxikologie (400) (remove)
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Mutations in the PRKACA gene are the most frequent cause of cortisol-producing adrenocortical adenomas leading to Cushing’s syndrome. PRKACA encodes for the catalytic subunit α of protein kinase A (PKA). We already showed that PRKACA mutations lead to impairment of regulatory (R) subunit binding. Furthermore, PRKACA mutations are associated with reduced RIIβ protein levels; however, the mechanisms leading to reduced RIIβ levels are presently unknown. Here, we investigate the effects of the most frequent PRKACA mutation, L206R, on regulatory subunit stability. We find that Ser\(^{114}\) phosphorylation of RIIβ is required for its degradation, mediated by caspase 16. Last, we show that the resulting reduction in RIIβ protein levels leads to increased cortisol secretion in adrenocortical cells. These findings reveal the molecular mechanisms and pathophysiological relevance of the R subunit degradation caused by PRKACA mutations, adding another dimension to the deregulation of PKA signaling caused by PRKACA mutations in adrenal Cushing’s syndrome.
Somatic mutations in protein kinase A catalytic α subunit (PRKACA) were found to be causative for 30-40% of cortisol-producing adenomas (CPA) of the adrenal gland, rendering PKA signalling constitutively active. In its resting state, PKA is a stable and inactive heterotetramer, consisting of two catalytic and two regulatory subunits with the latter inhibiting PKA activity. The human genome encodes three different PKA catalytic subunits and four different regulatory subunits that are preferentially expressed in different organs. In normal adrenal glands all regulatory subunits are expressed, while CPA exhibit reduced protein levels of the regulatory subunit IIβ. In this study, we linked for the first time the loss of RIIβ protein levels to the PRKACA mutation status and found the down-regulation of RIIβ to arise post-transcriptionally. We further found the PKA subunit expression pattern of different tumours is also present in the zones of the normal adrenal cortex and demonstrate that the different PKA subunits have a differential expression pattern in each zone of the normal adrenal gland, indicating potential specific roles of these subunits in the regulation of different hormones secretion.
Ein Problem der Therapie maligner Tumore ist die Resistez gegenüber Chemotherapeutika. Diskutiert wird ein Zusammenhang zur Expression von Hitzeschockproteinen (HSP). Insbesondere das in Mamma-Karzinomen stark exprimierte HSP27 und HSP70 scheinen hier beteiligt. Hitzeschockproteine sind Teil eines durch Noxen induzierten Mechanismus, welcher Schutz vor weiterer Noxenexposition verleiht, also die entsprechenen Zellen im Unterschied zu nicht exponierten Kontrollzellen zu überleben befähigt. Es kommt nach einem Streßereignis zu einer Veränderung von Zelltod unter nachfolgenden Bedingungen, z.B. Verhütung von Apoptose (physiologischer Zelltod). Tumortherapie mittels Zytostatika stellt eine „kontrollierte Apoptose“ dar. Ziel dieser Therapie muß es also folglich sein, eine HSP-Induktion zu vermeiden, da eine solche den Therapieerfolg und Benefit für den Patienten schmälert. Die Exposition einer Tumorzelle mit einem chemotherapeutisch wirksamen Medikament bedeutet für diese Zelle toxischen/oxidativen Streß, den sie nur durch Induktion entsprechender Abwehrmechanismen überleben kann. Diese Mechanismen haben letztlich einen wesentlichen Einfluß auf die Wirksamkeit des Medikamentes und Profit des Patienten durch die ihm angebotene Therapie. Eine frühe adaptive Zellantwort von Säugerzellen auf toxische Einflüsse stellt die Expression von Hitzeschockproteinen dar. Den Fokus der vorliegenden Untersuchungen stellen einerseits diejenigen Substanzen dar, welche heutzutage in der Therapie des Mamma-Karzinoms eingesetzt werden, den drei Einzelsubstanzen des CMF-Protokolls Methotrexat, 5-Fluorouracil und Cyclophosphamid, andererseits die Hitzeschockproteine mit der höchsten bekannten Bedeutung für Tumorwachstum. In einem ersten Schritt wurde in vitro mit einem Zellsystem, welches durch Transfektion mit dem humanen hsp27-Gen bei bekannter HSP70-Induzierbarkeit als einfaches isoliertes Zellsystem ein gutes Werkzeug zur spezifischen Untersuchung dieser beiden Proteine darstellt, untersucht werden, inwieweit sich diese speziellen Proteine durch die unterschiedlichen Substanzgruppen des CMF-Protokolls induzieren lassen. Es wurde also nach einer adaptiven Zellantwort in Form einer Induktion von HSP27 und HSP70 nachfolgend einer Noxenexposition gesucht werden. In einem zweiten Schritt wurde untersucht, ob die für diese beiden HSPs postulierte zytoprotektive Eigenschaften auch für Zytostatika gelten. Es wurde überprüft , inwieweit Chemotherapeutika unter dem Einfluß von HSP70 und HSP27 stehen, also inwieweit die Expression von HSP27 und HSP70 einen Zellschutz gegen toxischen Streß (durch CMF) in den verwendeten L929-Mausfibroblasten darstellen kann.
Metabonomics bildet das Ende der Omics-Kaskade und stellt eine top-down-Strategie zur Erfassung und Interpretation des Metaboloms, d. h. der Gesamtheit aller niedermolekularen Metaboliten in einem intakten Organismus, dar. Ziel der Technik ist es, mittels geeigneter ungerichteter Screeningverfahren in nicht-invasiv zu gewinnenden biologischen Proben wie Urin oder Blut charakteristische Metabolitenprofile zu bestimmen. Im Kontext des Metabonomics wurde in Anlehnung an den Geno- bzw. Phänotyp hierfür der Begriff „Metabotyp“ geprägt. Durch biostatistische Methoden, die auf Mustererkennung (pattern recognition) basieren, können Signaturen gegenübergestellt und auf diesem Weg gruppenspezifische Metaboliten, d. h. Biomarker bzw. Metabolitenmuster, extrahiert werden. Metabonomics kann folglich als Fusion klassischer bioanalytischer und biostatistischer Verfahren aufgefasst werden. Seit der Einführung im Jahr 1999 hat sich das Konzept des Metabonomics in mehrere Richtungen weiterentwickelt. So gab es Bestrebungen, die Technik, die ursprünglich zur Prädiktion von toxischen Effekten bei der Arzneistoffentwicklung etabliert wurde, auf Fragestellungen zu übertragen, die den Menschen im Mittelpunkt haben. Neben präklinischen Anwendungen verfolgt man mit Metabonomics zunehmend das Ziel, einer personalisierten Medizin und Ernährung einen Schritt näher zu kommen. Da sich die ursprünglich eingesetzte NMR-Technik als zu unempfindlich und die resultierenden Metabolitenprofile als zu anfällig gegenüber biologischen und analytischen Einflussgrößen (Confoundern) erwiesen haben, wurde parallel auf sensitivere Verfahren wie die Massenspektrometrie gesetzt. Insbesondere die Kopplung mit der Hochdruckflüssigchromatographie erwies sich hierbei für das Metabolitenscreening als geeignet. Schnell wurde allerdings klar, dass aus den klassischen full scan/TOF-Methoden Datensätze resultierten, die häufig zu komplex waren, um mit nachgeschalteten chemometrischen Verfahren die „Spreu vom Weizen trennen“ zu können. Da sich Metabolitendatenbanken bisher noch im Aufbau befinden, ist die Identifizierung der Marker mit zusätzlichen Schwierigkeiten verbunden und bedarf aufwändiger analytischer Verfahren. Eine Strategie stellt daher die Beschränkung auf ein Metabolitensubset dar. Indem man sich auf Metabolitenklassen fokussiert, die einen Bezug zum untersuchten Mechanismus haben, können die Erfolgsaussichten bei der Identifizierung charakteristischer Biomarker deutlich erhöht werden. Aufgrund zahlreicher exogener und endogener Faktoren (Arzneistoffe, Industriechemikalien, Nahrungsbestandteile, Tabakrauchbestandteile, Produkte der Lipidperoxidation etc.) ist der menschliche Organismus stets einer Vielzahl an elektrophilen Verbindungen ausgesetzt. Oxidative Schädigungen an Strukturen wie der DNA, Proteinen und Lipiden werden mit einer Reihe von Krankheitsbildern in Zusammenhang gebracht, darunter Parkinson, Alzheimer, Krebs und Volkskrankheiten wie Arteriosklerose, Allergien und koronare Herzerkrankungen. Mit dem Glutathionsystem verfügt der Körper über einen wirksamen Detoxifizierungsmechanismus. Das Tripeptid Glutathion reagiert als Nukleophil mit den exogen oder endogen gebildeten elektrophilen Intermediaten. Endprodukte sind Merkaptursäuren (N-Acetyl-L-Cystein-Addukte) bzw. deren Sulfoxide, die in erster Linie mit dem Urin ausgeschieden werden. Folglich besteht zwischen diesen Merkaptursäurederivaten und der elektrophilen Belastung eines Organismus ein direkter Zusammenhang. Vor diesem Hintergrund war es das Ziel der Arbeit, einen nicht-invasiven Metabonomicsansatz zur Anwendung am Menschen zu entwickeln. Durch die Fokussierung des Metabolitenscreenings auf die Effekt-, Dosis- und Suszeptibilitätsmarkerklasse der Merkaptursäuren sollten hierbei die Erfolgsaussichten im Hinblick auf die Identifizierung potentieller Biomarker für diverse toxikologische sowie medizinische Endpunkte erhöht werden.
Background: Phosphodiesterases (PDE) critically regulate myocardial cAMP and cGMP levels. PDE2 is stimulated by cGMP to hydrolyze cAMP, mediating a negative crosstalk between both pathways. PDE2 upregulation in heart failure contributes to desensitization to β-adrenergic overstimulation. After isoprenaline (ISO) injections, PDE2 overexpressing mice (PDE2 OE) were protected against ventricular arrhythmia. Here, we investigate the mechanisms underlying the effects of PDE2 OE on susceptibility to arrhythmias. Methods: Cellular arrhythmia, ion currents, and Ca\(^{2+}\)-sparks were assessed in ventricular cardiomyocytes from PDE2 OE and WT littermates. Results: Under basal conditions, action potential (AP) morphology were similar in PDE2 OE and WT. ISO stimulation significantly increased the incidence of afterdepolarizations and spontaneous APs in WT, which was markedly reduced in PDE2 OE. The ISO-induced increase in I\(_{CaL}\) seen in WT was prevented in PDE2 OE. Moreover, the ISO-induced, Epac- and CaMKII-dependent increase in I\(_{NaL}\) and Ca\(^{2+}\)-spark frequency was blunted in PDE2 OE, while the effect of direct Epac activation was similar in both groups. Finally, PDE2 inhibition facilitated arrhythmic events in ex vivo perfused WT hearts after reperfusion injury. Conclusion: Higher PDE2 abundance protects against ISO-induced cardiac arrhythmia by preventing the Epac- and CaMKII-mediated increases of cellular triggers. Thus, activating myocardial PDE2 may represent a novel intracellular anti-arrhythmic therapeutic strategy in HF.
Mechanisms of apoptosis modulation and their contribution to genomic instability in tumor cells
(2004)
The concept of programmed cell death has been increasingly considered from various aspects since early 1970’s. Primarily, knowledge of apoptosis referred to morphological changes in which chromatin is condensed and increasingly fragmented, revealed as small structure in the nucleus. The membrane shrinks and the cell becomes dense as can be seen by flow cytometry. Interestingly, similar modes of cell deletion were observed in nematodes indicating that apoptosis is a highly conserved machinery. Three Caeonorhabditis elegans gene products are found to have high homology with mammalian apoptotic genes: CED-9 inhibits apoptosis and is related to bcl-2; CED-3 and CED-4 promote apoptosis and are related to caspase 9 and APAF-1. Apoptosis is not accidental death, but a highly controlled and medically important molecular process. More general terms such as ‘physiological’ or ‘regulated’ cell death cover different morphologies and sequences. Programmed suicide of cells that were subjected to toxic exogenous and endogenous stimuli plays a key role in understanding cancer development and its treatment. Apoptosis involves sequences of events that may overlap and play contradictory or antagonistic roles in cell death. Generally, the ability to trigger apoptotic processes in cancer cells would benefit an organism by keeping homeostasis intact. Programmed cell death is a regularly present mechanism, for instance, in lymphocyte recruitment in the thymus where immature lymphocytes may recognize host antigens. Therefore, such lymphocytes become apoptotic and are removed by macrophages. Removal prevents possible autoimmune diseases. Unlike apoptosis, necrosis is a passive process of cell death recognizable by membrane morphological changes and accompanied by leakage of intracellular material into intercellular space that may cause inflammation in the organism. Signals that may initiate apoptosis are generally classified into two groups: signals that launch extrinsic apoptotic pathways starting with aggregation of death receptors and intrinsic apoptotic pathways starting with disruption of intracellular homeostasis such as the release of mitochondrial factors or DNA degradation. Early in the process, apoptotic signals may lead to a broad range of signaling mechanisms such as DNA repair and assessment of DNA damage (check points). Thus, failure in any of these steps can cause a defective apoptotic response that plays a decisive role in both tumorigenesis and drug resistance in tumor treatment. More distinctly, the capability of cancer cells to go into apoptosis prevents further neoplastic changes. Generally, the purpose of this study is to investigate the balance between formation of genomic damage and induction of apoptosis under genotoxic stress. After genotoxic insult there are different possibilities for the fate of a cell (Figure 1). The genomic integrity is analyzed at cellular checkpoints, usually leading to a delay in cell cycle progression if DNA was damaged. Mutations in genes such as p53 and p21 change the cellular response to genotoxic stress and may alter the balance between apoptosis and genomic damage. However, p53 is usually mutated or not expressed in 70% of human tumors. Alterations in p53 states that reflect distinct apoptotic response upon induction of DNA damage were examined. In this study, three cell lines with distinct p53 states were used: TK6 harboring wild-type p53, WTK1 with mutated p53 and NH32 with knocked out p53. In the present work we applied different approaches to investigate the correlation between DNA damage and apoptotic responsiveness in cancer cell lines with different p53 states or in hormone responsive cell lines with over expressed bcl-2 gene. We were focused on effects caused by temporary down regulation of the p53 and Bcl-2 activity in human lymphoblastoid cell lines. In addition, we investigated the impact of estradiol-induced proliferation on apoptosis and DNA damage in stably transfected cells with bcl-2gene.
Die Regulation des Tonus glatter Muskelzellen wird entscheidend von den beiden antagonistisch wirkenden second messengern cAMP und Ca2+ beeinflusst. Ein Ziel dieser Arbeit war herauszufinden, ob diese beiden Botenstoffe auch direkten Einfluss aufeinander haben können und welche Enzyme in diesem Fall an den Prozessen beteiligt sind. cAMP-Signale in intakten Zellen konnten wir in Echtzeit mit Hilfe des FRET-basierten cAMP-Sensors Epac1-camps beobachten; Ca2+-Signale durch Markieren der Zellen mit Fura-2. Anstiege der intrazellulären Ca2+-Konzentration in VSMCs wurden durch Aktivierung von endogen exprimierten, Gq-gekoppelten P2Y6-Rezeptoren mit Uridindiphosphat (UDP) ausgelöst. Durch eine zusätzliche in-vitro Kalibrierung des Epac1-camps konnten darüber hinaus absolute cAMP-Konzentrationen in einzelnen lebenden Zellen berechnet werden. Während ein Anstieg der Ca2+-Konzentration auf nicht vorstimulierte VSMCs keinen signifikante Einfluss auf die intrazellulären cAMP-Konzentrationen hatte, bewirkte die Aktivierung der purinergen Rezeptoren einen deutlichen Rückgang der intrazellulären cAMP-Konzentration in mit Isoproterenol vorstimulierten VSMCs. Dieser Effekt konnte sowohl durch die Komplexierung von Ca2+ mit BAPTA-AM als auch durch die Überexpression der Ca2+-insensitiven AC4 antagonisiert werden. Adenylatcyclase-Aktivitäts-Assays in VSMC-Membranen zeigten ebenfalls einen Rückgang der Cyclaseaktivität nach Zugabe von 2 und 5 μM freiem Ca2+. Die Hemmung der einzigen Ca2+-regulierbaren PDE1 mit dem selektiven PDE1-Inhibitor 8-Methoxymethyl-IBMX (8-MM-IBMX) hatte im Gegensatz dazu keinen Einfluss auf die durch UDP verursachte Änderung der cAMP-Konzentration in vorstimulierten VSMCs. Schließlich bewirkte die Herunterregulation der Ca2+-inhibierbaren AC5 und 6 mit siRNA einen signifikante Hemmung des durch UDP verursachten Effekts. Fasst man alle diese Ergebnisse zusammen, so lässt sich folgende Schlussfolgerung ziehen: Der durch purinerge Stimulation verursachte Rückgang der cAMP-Konzentration in mit Isoproterenol vorstimulierten VSMCs wird durch eine Hemmung der Ca2+-hemmbaren AC5 und 6 vermittelt. Dadurch sind zwei für die Regulation des Tonus wichtige Signalwege in VSMCs miteinander verbunden, die sich somit gegenseitig entscheidend beeinflussen können. Ein weiterer Bestandteil dieser Arbeit war die Entwicklung eines transgenen Mausmodells, das glattmuskelspezifisch den cAMP-Sensor Epac1-camps exprimiert. Mit Hilfe eines solchen Tiermodells könnten in Zukunft cAMP-Änderungen in intakten Geweben und vielleicht sogar in lebenden Tieren beobachtet werden. Durch Anwendung des Cre-loxP-Rekombinationssystems gelang es eine glatt¬muskelspezifische, für den Epac1-camps transgene Mauslinie zu generieren. Mit isolierten VSMCs dieser Tiere konnten bereits erste FRET-Messungen durchgeführt und agonistinduzierte cAMP-Änderungen beobachtet werden.
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.
This study should contribute to the important field of pharmacogenetics by: firstly, establishing an easy and safe phenotyping method that combines the activity determination of all three previously mentioned CYPs (CYP2D6, CYP2C9, and CYP2C19) into one phenotyping cocktail and secondly, improving the knowledge about the predictive power of the genotype for the measured phenotype. It was indeed possible to develop a save, easy-to-use, fast and simultaneous phenotyping procedure for the important genetic polymorphic enzymes CYP2D6 and CYP2C9. To accomplish that, interaction studies with the chosen probe drugs dextromethorphan (DEX, CYP2D6), flurbiprofen (FLB, CYP2C9) and omeprazole (OME, CYP2C19) were conducted. It could be proven that DEX and FLB can be administered in combination, whereas OME alters the phenotyping results of CYP2C9. This is a new finding as in 2004 a phenotyping cocktail was published that used FLB and OME in combination. However, to our knowledge, no interaction tests were carried in that study. The new phenotyping procedure is not only verified by prior probe drug interaction studies, it also has other advantages over phenotyping cocktails found in literature. Firstly, save probe drugs are used in very small doses. This is possible due to the new sensitive LC-MS/MS methods that were evaluated. Secondly, the new phenotyping procedure is very fast and on-invasive. Urine has to be collected only for 2 h and the results also suggest that the time consuming glucuronide cleavage of the CYP2D6 dependent metabolite dextrorphan, usually carried out before CYP2D6 phenotyping, may be unnecessary. Most importantly, however, new insights into the phenotype prediction from genotype for CYP2C9 and CYP2D6 could be gained within this study. Nearly 300 phenotyped Caucasian subjects were also genotyped for the most important known variant alleles for CYP2D6, CYP2C9 and CYP2C19 using several established and newly developed genoptyping methods. Therefore, a direct correlation between phenotype and genotype could be conducted for CYP2D6 and CYP2C9. Employing linear modeling, it was possible to assign activity coefficients to each of the detected CYP2D6 and CYP2C9 alleles, thereby estimating their contribution to the resulting enzyme activity. This might facilitate the prediction of the CYP2D6 and CYP2C9 metabolic status of a subject knowing only its respective genotypes. Especially the new CYP2D6 genotype phenotype correlation model might allow for more precise phenotype prediction for the included variant alleles than was possible until now. Taken together, this study substantially contributes to the important research field of pharmacogenetics by (i) developing a save and easy-to-use phenotyping combination for CYP2D6 and CYP2C9, and (ii) by establishing activity coefficients for each of the detected CYP2D6 and CYP2C9 alleles, thereby allowing for a more precise prediction of the phenotype from genotype.
Aryl hydrocarbon hydroxylase (AHH) has been measured in male rat Jiver nucJei and microsomes after treatment of adult animals with various inducers for up to 14 days. After daily i.p. injections of 3-methylcholanthrene (MC, 20 mg/kg) the nuclear activity increased to a maximum of 600 per cent of the control activity after 4 days whereas the microsomal activity was 400 per cent of control at the same date. After 12 days, both activities equilibrated at 400 per cent. A similar time course was found after a single i.p. injection of 2,3,7,8-tetrachloro-dibenzo-p-dioxin (TCDD, 0.01 mg/kg) with an induction to .500 and 300 per cent for nuclei and microsomes, respectiveJy. after 2 days, and to 400 per cent for both after 12 days. PhenobarbitaJ (PB) was given continuously in the drinking water (I g/1) and induced the microsomal activity to 200 per cent after 8 days and 170 per cent after 14 days. The nuclear activity was only slightly induced to a constant Ievei of 130 per cent between day 8 and 14. Dieldrin did not significantly increase the microsomal activity after daiJy i.p. injections (20 mg/kg), but the nuclear activity raised to 200 per cent after 3 days and levelled down tocontrol valuesafter 12 days. Other inducers tested were benz[a)anthracene (BA), hexachlorobenzene (HCB} and 1,1.1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT). The induction pattern with BA was similar tothat of MC, a modeJ compound for the group of cytochrome P448 inducers. The induction by HCB and DDT resembled that by PB. a typical cytochrome P450 inducer.
The lnfluence of mlcrosomal and nuclear aryl hydrocarbon hydroxylase (AHH) actlvlty on the covalent blndlng of [G·3H]benzo(a )pyrene to rat llver DNA was evaluated in viWJ. lnductlon of mlcrosomal AHH was obtalned alter phenobarbltal treatment (160% of control), whlch also lncreased DNA blndlng to 190%, but left the nuclear actlvlty unchanged. Nuclear AHH was lnduced wlth dleldrln (150%), and the blndlng was decreased to 75%, whereaa the mlcrosomal AHH was at control Ievei. The lncreaslng effect of mlcrosomal AHH lnductlon as weil as the decreaslng effect of nuclear AHH lnductlon on the blndlng was shown clearly when the data of the Individual rata were uaed to solve the equatlon Binding = e•(mlcroeomal AHH) + b•(nuclear AHH) + c Multiple linear regresslon analysls wlth the data from 10 anlmala reaulted ln positive valuea for a and c, a negative value for b, and a good multiple correlatlon coefflclent of r = 0.974. Pretreatment wlth 3-methylcholanthrene ln· duced mlcrosomal AHH to 380% of control and nuclear AHH to 590% and lncreased the blndlng' to 175,.-o. The blndlng was hlgher than predlcted by the formula found, probably because the lncreaslng lnfluence of lnduced mlcrosomal AHH overahadowed the decreaslng effect of the nuclear AHH. The study ahows clearly that the blndlng of a forelgn compound to DNA in viWJ Ia dependent not only on mlcrosomal enzyme actlvltles but also on nuclear actlvltles even lf the latter are conslderably lower than thoae of mlcrosomes.
Groups of four adult male rats [ZUR:SIV -Z] were pretreated with corn oil (control; 2 ml/kg/day i. p. for 3 days), trans-stilbene-oxide (SO; 200 mg/kg/day i. p. for 2 days), 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD; 10 \(\mu\)g/kg i. p. once, 4 days before killing), phenobarbital (PB; 1 gjliter in the drinking water for 8 days), and dieldrin (20 mg/kg/day i. p. for 3 or 9 days). They received an injection of [G-\(^3\)H]benzo(a)pyrene (BaP, 31 \(\mu\)g/kg, 7.4. 10\(^9\) dpm/kg; i. v.) 16 h before killing. In the liver of each rat, five enzymatic activities and the covalent binding of BaP to DNA have been determined. The rnicrosomal aryl hydrocarbon monooxygenase activity (AHM) ranged frorn 75% of control (SO) to 356% (TCDD), the nuclear AHM from 63% (SO) to 333% (TCDD). Microsomal epoxide hydrolase activity (EH) was induced up to 238% (PB), nuclear EH ranged from 86% (TCDD) to 218% (PB). A different extent of induction was observed in the two compartments. Highest induction of glutathione S-epoxide transferase activity (GST) was found with PB (202%). The DNA binding of BaP was modulated within 79% (dieldrin, 9 days) and 238% of control (TCDD). An enzyme digest of control DNA was analysed by Sephadex LH-20 chromatography. Multiple linear regression analysis with all data expressedas o/o of control yielded the following equation: DNA Binding = 1.49 · Microsomal AHM- 1.07 · Nuclear AHM+ 0.33 · Microsomal EH- 0.52 · N uclear EH+ 0.11 · Cytoplasmic GST + 58.2. From this analysis it is concluded that (1) AHM located in the endoplasmic reticulum is most important in the formation of DNA-binding metabolites, (2) EH in the same compar.tment is not determinative in thls respect nor has it a protective effect, (3) both membrane-bound enzyme activities located in the nucleus may inactivate potential ultimate carcinogens, and ( 4) cytoplasmic GST probably cannot reduce DNA binding due to its subcellular localization.
Zusammenfassung Systeme zur induzierbaren Transgenexpression sind wichtige Werkzeuge, um die Funktion einzelner Gene in vitro und in vivo zu untersuchen. Sie bestehen aus drei Grundkomponenten, einem zu regulierenden Zielgen, einem "Schalter" und einem Liganden, der diesen Schalter bedient. In dieser Arbeit wurden Untersuchungen am Ecdysonsystem durchgeführt, das als Schalter den Insektensteroidhormonrezeptor für das Verpuppungshormon Ecdyson verwendet. Zunächst wurde ein neuer Rezeptor mit der Ligandenbindedomäne des Ecdysonrezeptors (EcR) des Seidenspinners Bombyx mori konstruiert, dessen Eigenschaften in der Zellkultur mit einem DrosophilaEcR-Konstrukt, das für mammalische Expression optimiert ist, verglichen wurden. Mit dem BombyxEcR konnte die Transgenexpression durch den nichtsteroidalen Liganden Tebufenozid gesteuert werden, was beim DrosophilaEcR nicht möglich war. Damit ist man in diesem Expressionssystem nicht wie beim DrosophilaEcR auf teure steroidale Liganden wie Ponasteron angewiesen. Außerdem mußte beim BombyxEcR der Heterodimerisierungspartner RXR nicht kotransfiziert werden. In Bezug auf erreichbaren Induktionsfaktor und Kinetik der Genexpression zeigten sich für die beiden Systeme vergleichbare Ergebnisse. Weiterhin wurden durch Pronukleusinjektion transgene Mäuse erzeugt, die den BombyxEcR unter einem herzspezifischen Promotor (aMHC) exprimieren. Als Zielgen wurde die b2a-Untereinheit des L-Typ-Calciumkanals eingebracht, die mit dem neuen Schaltsystem herzspezifisch gesteuert werden sollte. Die Bioverfügbarkeit des Agonisten Tebufenozid nach intraperitonealer Injektion wurde in einem in-vitro Assay in HEK293-Zellen überprüft. Es ergaben sich hinreichende Wirkstoffspiegel im Serum der Mäuse, um das Reportergen zu induzieren. Auch wenn bei der transgenen Maus nach der Induktion mit Tebufenozid kein immunologischer Nachweis erhöhter Expression der b2a-Untereinheit gelang,konnte doch in Herzkatheteruntersuchungen eine veränderte Herzfunktion nachgewiesen werden. Bei transgenen Mäusen führte die intraperitoneale Applikation von Tebufenozid für bis zu sieben Tage zu einem signifikanten Anstieg des systolischen Blutdrucks und der maximalen linksventrikulären Kontraktionsgeschwindigkeit, der bei nicht-transgenen Kontrolltieren nicht beobachtet wurde. Diese Befunde deuten erstmals in vivo darauf hin, daß die b2a–Untereinheit des L-Typ-Calciumkanals am Herzen eine positiv inotrope Wirkung vermitteln kann. Systeme zur induzierbaren Genexpression müssen weiterentwickelt werden, um die Ideale der präzisen Steuerung ohne Nebenwirkungen sowohl für die Grundlagenforschung als auch für eine in weiterer Zukunft liegende Verwendung in der Gentherapie zu erreichen.
b-adrenergic receptors (b-ARs) participate strongly in the development of cardiac hypertrophy and human heart failure. Stimulation of b-adrenergic receptors with catecholamines as well as cardiac overexpression of b1-ARs or of Gas-proteins in transgenic mice induces cardiac hypertrophy. However, direct activation of their downstream targets, such as adenylyl cyclase (AC) or protein kinase A do not promote a significant degree of cardiac hypertrophy. These findings suggest that additional events may occur and that these events require Gas-protein activation. A hypertrophic pathway involving Gaq-protein coupled receptors has recently been described. Upon activation of Gaq-coupled receptors Gbg-subunits are released from Gaq and bind directly to the activated Raf/Mek/Erk cascade. Direct interaction between bg-subunits and activated Erk1/2 leads to an additional autophosphorylation of Erk2 at threonine 188, which mediates cardiac hypertrophy. Murine hearts, as well as isolated cardiomyocytes present an increase in Erk2Thr188-phosphorylation upon b-AR activation. Similarly overexpression of phosphorylation deficient Erk2 mutants (Erk2T188S and Erk2T188A) reduces b-AR mediated cardiomyocyte hypertrophy. Increase in left ventricular wall thickness, fibrosis and up-regulation of natriuretic peptide synthesis, which are physiological features for cardiac hypertrophy, are strongly inhibited in transgenic mice with a cardiac expression of Erk2T188S after two weeks of sustained isoproterenol treatment. It could further be shown in this work that b-AR mediated cardiac hypertrophy requires two distinct pathways initiated by Gs-protein activation: the canonical phosphorylation of Erk1/2 via adenylyl cyclase and the direct interaction of released bg-subunits with activated Erk1/2. Coincidence of both events leads to Erk2Thr188-phosphorylation, which activates then different transcription factors responsible for cardiac hypertrophy. Sequestration of bg-subunits by overexpression of the C-terminus of GRK2 bark-ct and inhibition of adenylyl cyclase efficiently reduced the hypertrophic response to isoproterenol, whereas direct activation of AC by forskolin failed to induce Erk2Thr188-phosphorylation and cardiomyocyte hypertrophy. These findings may help to develop new therapeutic strategies for the prevention of cardiac hypertrophy and maladaptive remodeling of the heart.
Adenosine receptor ligands: coumarin−chalcone hybrids as modulating agents on the activity of hARs
(2020)
Adenosine receptors (ARs) play an important role in neurological and psychiatric disorders such as Alzheimer's disease, Parkinson's disease, epilepsy and schizophrenia. The different subtypes of ARs and the knowledge on their densities and status are important for understanding the mechanisms underlying the pathogenesis of diseases and for developing new therapeutics. Looking for new scaffolds for selective AR ligands, coumarin–chalcone hybrids were synthesized (compounds 1–8) and screened in radioligand binding (hA\(_1\), hA\(_{2A}\) and hA\(_3\)) and adenylyl cyclase (hA\(_{2B}\)) assays in order to evaluate their affinity for the four human AR subtypes (hARs). Coumarin–chalcone hybrid has been established as a new scaffold suitable for the development of potent and selective ligands for hA\(_1\) or hA\(_3\) subtypes. In general, hydroxy-substituted hybrids showed some affinity for the hA\(_1\), while the methoxy counterparts were selective for the hA\(_3\). The most potent hA\(_1\) ligand was compound 7 (K\(_i\) = 17.7 µM), whereas compound 4 was the most potent ligand for hA\(_3\) (K\(_i\) = 2.49 µM). In addition, docking studies with hA\(_1\) and hA\(_3\) homology models were established to analyze the structure–function relationships. Results showed that the different residues located on the protein binding pocket could play an important role in ligand selectivity.
Urinary, Circulating, and Tissue Biomonitoring Studies Indicate Widespread Exposure to Bisphenol A
(2012)
Bisphenol A (BPA) is one of the highest-volume chemicals produced worldwide, and human exposure to BPA is thought to be ubiquitous. Thus, there are concerns that the amount of BPA to which humans are exposed may cause adverse health effects. We examined many possibilities for why biomonitoring and toxicokinetic studies could come to seemingly conflicting conclusions. More than 80 published human biomonitoring studies that measured BPA concentrations in human tissues, urine, blood, and other fluids, along with two toxicokinetic studies of human BPA metabolism were examined. Unconjugated BPA was routinely detected in blood (in the nanograms per milliliter range), and conjugated BPA was routinely detected in the vast majority of urine samples (also in the nanograms per milliliter range). In stark contrast, toxicokinetic studies proposed that humans are not internally exposed to BPA. Available data from biomonitoring studies clearly indicate that the general population is exposed to BPA and is at risk from internal exposure to unconjugated BPA. The two toxicokinetic studies that suggested human BPA exposure is negligible have significant deficiencies, are directly contradicted by hypothesis-driven studies, and are therefore not reliable for risk assessment purposes.
The mechanism of the therapeutic and prophylactic effects of carbamazepine (CBZ) in affective psychoses is unknown but may in part be related to the potent competitive interaction of CBZ with adenosine-binding sites in the brain. The antioonvulsant and sedative properties of CBZ are reminiscent of the effects evoked by adenosine-agonists and contrast sharply with the opposite aclions of adenosine-antagonists like caffeine. However. indirect evidence suggests an antagonist- rather than an agonist-like activity of CBZ at adenosi11e-receptors. We have used various model systems, in which adenosine receptor subtypes mediate different second messenger-responses, to investigate this apparent paradox. CBZ was found to antagonize the A\(_1\) receptor-mediated inhibition of cydic AMP accumulation in cultured astroblasts and in GH3-cells. Furthermore, CBZ also inhibits the adenosine-induced increase in the level of cyclic AMP in cultured astroblasts, which is mediated by low-affinity A\(_{2b}\)-receptors. ln contrast, CBZ does not block the inhibition elicited by adenosine-agonists of the agonist-induced increased formation of inositolphosphates in human neutrophils, which is mediated by high-affinity A\(_{2a}\)-receptors. The specific antagonism by CBZ of A\(_1\)- but not of high-affinity A\(_{2a}\)-receptors was further supported by binding experiments using rat brain membranes. These results suggest tbat the paradox of CBZ's antagonistic effects at adenosine-receptors might be at least partially reconciled by a selective antagonistic action of CBZ at A\(_1\)recertors but not at high-affinity A\(_{2a}\)-receptors.
Adenosine receptors in guinea pig lung were characterized by measurement of cyclic AMP formation and radioligand binding. 5'-N-Ethylcarboxamidoadenosine (NECA) increased cyclic AMP Ievels in lung slices about 4-fold over basal values with an EC\(_{50}\) of 0.32 \(\mu\)mol/l. N\(^6\) - R-(- )-Phenylisopropyladenosine (R-PIA) was 5-fold less potent than NECA. 5'-N-Methylcarboxamidoadenosine (MECA) and 2-chloroadenosine had EC\(_{50}\)-values of 0.29 and 2.6 \(\mu\)mol/l, whereas adenosine and inosine had no effect. The adenosine receptors in guinea pig Iung can therefore be classified as A\(_2\) receptors. Several xanthine derivatives antagonized the NECA-induced increase in cyclic AMP levels. 1,3-Diethyl-8-phenylxanthine (DPX; K\(_i\) 0.14 \(\mu\)mol/l) was the most potent analogue, followed by 8-phenyltheophylline (K\(_i\) 0.55 \(\mu\)mol/l), 3-isobutyl-1-methylxanthine (IBMX; K\(_i\) 2.9 \(\mu\)mol/l) and theophylline (K\(_i\) 8.1 \(\mu\)mol/l). In contrast, enprofylline (1 mmol/1) enhanced basal and NECA-stimulated cyclic AMP formation. In addition, we attempted to characterize these receptors in binding studies with [\(^3\)H]NECA. The K\(_D\) for [\(^3\)H] NECA was 0.25 \(\mu\)mol/l and the maximal number of binding sites was 12 pmol/mg protein. In competition experiments MECA (K\(_i\) 0.14 \(\mu\)mol/l) was the most potent inhibitor of [\(^3\)H] NECA binding, followed by NECA (K\(_i\) 0.19 \(\mu\)mol/l) and 2-chloroadenosine (K\(_i\) 1.4 \(\mu\)mol/l). These results correlate well with the EC\(_{50}\)- values for cyclic AMP formation in lung slices. However, the K\(_i\)-values of R-PIA and theophylline were 240 and 270 \(\mu\)mol/l, and DPX and 8-phenyltheophylline did not compete for [\(^3\)H]NECA binding sites. Therefore, a complete characterization of A\(_2\) adenosine receptors by [\(^3\)H] NECA binding was not achieved. In conclusion, our results show the presence of adenylate cyclase-coupled A\(_2\) adenosiile receptors in lung tissue which are antagonized by several xanthines.
Azoles are important chemicals used as antifungal agents in agriculture and human medicine, but also as cytostatic drugs in tumour chemotherapy. Antifungal activities are based on inhibition of lanosterol-14α-demethylase (CYP51). CYP51 catalyses the oxidative removal of the methyl group # 32 of lanosterol to produce follicular fluid meiosis activating steroid (FF-MAS). For fungi the later resulting ergosterol is an essential compound of the cell membrane. Exposed fungi lack ergosterol, which leads to a collapse of the cell membrane. In mammals cholesterol, the downstream product of lanosterol-14α-demethylation necessary for the synthesis of bile acids, mineral corticoids, glucocorticoids and sex steroids, can be supplemented with food intake. However FF-MAS and the resulting T-MAS (testis meiosis activating steroids), the direct products of the CYP51 reaction, act as meiosis-activating steroids on ovaries and testes and are not supplemented with food intake. Inhibition of CYP51 in humans may therefore affect the endocrine system and is an unwanted side effect of azoles. Aromatase (CYP19) catalyses the demethylation of testosterone to estradiol and is inhibited by azoles. Reduction of estrogen levels by CYP19 inhibition is the working principle of cytostatic drugs used in breast cancer therapy but is considered an unwanted side effect for azoles used to treat fungal infections. A favourable fungicide or antifungal drug should be a strong inhibitor of fungal CYP51. In contrast human CYP51 and human CYP19 should not be inhibited by an azole fungicide or antifungal agent. The favourable cytostatic drug should show a high potency towards human CYP19. Neither human CYP51 nor fungal CYP51 should be inhibited by a cytostatic drug. The aim of this work was to assess: are fungicides and antifungal drugs strong inhibitors of fungal CYP51? In return do they not inhibit human CYP51 and human CYP19? Do cytostatic drugs strongly inhibit human CYP19? And in return do they not inhibit human CYP51 or fungal CYP51? Inhibitory potencies of 22 azole compounds used for the three purposes were tested in four inhibition assays: i) on commercially available human CYP19 utilising a fluorescent pseudo substrate dibenzylfluorescein (DBF) ii) on CYP19 utilising testosterone as substrate iii) on human CYP51 and iv) Candida albicans CYP51 utilising lanosterol as substrate. Product formation was measured by liquid chromatography – tandem mass spectrometry utilising photospray ionisation (APPI). A functional human CYP51 was available from BD Gentest Cooperation. A functional enzyme complex comprising of the Candida albicans lanosterol-14α-demethylase and the Candida tropicalis oxidoreductase was expressed in the baculovirus system. When comparing inhibitory potencies on CYP19, human CYP51 and Candida albicans CYP51 a number of agents show desirable patterns of inhibition e.g. the two cytostatic drugs, or two antifungal agents used in human medicine, fluconazole and itraconazole, and a wide variety of the fungicides, e.g. cyproconazole and hexaconazole. Undesirable patterns of inhibition were exhibited by a number of compounds, e.g. prochloraz, bifonazole, ketoconazole and miconazole. Seven compounds show a more complex picture of inhibitory potencies though. To get a picture of residue levels of azoles in food in a model case an LC-ESI-MS/MS method was developed for the determination of azole compounds in wine. All residues were below the maximum residue levels set by authorities. To classify the inhibitory potencies on the different enzyme systems IC50 values obtained were compared to exposure levels measured in farmers, maximum plasma concentrations in humans reported after exposure to antifungal drugs and to acceptable daily intake levels set by authorities. Based on the findings presented, the following conclusions can be drawn. The risk for agricultural workers set by exposure to azole fungicides with respect to human CYP51 and CYP19 can be regarded as negligible when safety measures are adhered to. As a matter of principle however, the usage of bifonazole, miconazole and ketoconazole has to be viewed with caution in respect to the high level of inhibition of human CYP51 and/or CYP19. Under the assumption that the acceptable daily intake amounts set by authorities for azole compounds are not exceeded the residues do not pose a threat to consumer safety judged by our findings. Inhibition of CYP19 with the consequence of a reduction of estradiol levels has to be regarded as a possible disrupting effect of the hormone balance. The relevance of FF-MAS and T-MAS in the endocrine system however still has to be evaluated completely bringing with it the question of how much importance has to be attached to the inhibition of human CYP51.
Vor etwas mehr als 20 Jahren wurden erstmals an das Myokard bindende beta1-Rezeptorantikörper im Zusammenhang mit der Chagas-Krankheit beschrieben. Die Arbeiten der beiden folgenden Jahrzehnte konnten zeigen, dass solche beta1-Rezeptorantikörper mit einer Prävalenz von ca. 30 bis 95% (in Abhängigkeit vom verwendeten Nachweisverfahren) v.a. auch bei Patienten mit dilatativer Kardiomyopathie (DCM) nachgewiesen werden können. Insbesondere Antikörper gegen die zweite extrazelluläre Domäne des beta1-adrenergen Rezeptors (beta1-ECII) scheinen dabei in der Lage zu sein, den Rezeptor funktionell zu beeinflussen und zu aktivieren. Beta1-ECII wurde in der Folge als potentes Autoantigen mit T- und B-Zell-Epitopen identifiziert. Erste klinische Untersuchungen an Patienten mit DCM haben gezeigt, dass das Vorhandensein zirkulierender b1-ECII-Antikörper mit einer schlechteren linksventrikulären Funktion, dem Auftreten ventrikulärer Arrhythmien sowie mit einer erhöhten kardiovaskulären Mortalität verbunden ist. Der Verdacht, dass beta1-Antikörper bei der DCM nicht nur ein Epiphänomen, sondern bei einem Teil der betroffenen Patienten auch mögliche Krankheitsursache darstellen könnten, verstärkten dann in jüngster Zeit die Bestrebungen, ein Tiermodell für die Antikörper-induzierte Genese einer Kardio-myopathie zu generieren. So fanden 1997 Matsui et al. im Kaninchenmodell nach Immunisierung mit einem beta1-ECII-homologen Peptid über 12 Monate eine biventrikuläre Dilatation und kompensatorische Hochregulation der beta-Adrenozeptoren im Myokard. Im Gegensatz dazu fanden Iwata et al. wenige Jahre später im gleichen Tiermodell nach 6-monatiger Immunisierung eine linksventrikuläre Hypertrophie bei beta1-ECII-Antikörper-positiven Tieren und eine Downregulation der beta-Rezeptoren. Diese Diskrepanzen ließen das Kaninchenmodell daher als fraglich geeignet erscheinen. Im Zusammenhang mit der vorliegenden Arbeit wurde die Lewis-Ratte zur Generierung eines Kardiomyopathiemodells gewählt, da die beta1-ECII-Sequenz bei Ratte und Mensch 100% homolog ist. Zur Immunisierung verwendeten wir ein Fusionsprotein aus GST und der humanen beta1-ECII-Sequenz. Der Schwerpunkt des Vorhabens lag auf der Charakterisierung der durch die Immunisierung induzierten morphologischen und funktionellen Veränderungen am Herzen der Versuchstiere. Echokardiographisch konnte bei immunisierten Tieren bereits nach 9 Monaten eine linksventrikuläre Erweiterung nachgewiesen werden, die sich nach 12 bzw. 15 Immunisierungsmonaten durch das Auftreten einer progredienten linksventrikulären Dysfunktion (Echokardiographie/Herzkatheteruntersuchung) auch funktionell manifestierte. Makroskopisch-morphometrisch ließ sich an Paraffinschnitten eine Erweiterung des linken Ventrikels bei relativer Abnahme der Wanddicke nachweisen und bestätigte somit histologisch die echokardiographischen Messungen. Die mikroskopische Analyse zeigte eine relative Vergrößerung der Kardiomyozytenkerne ohne signifikante Zellhypertrophie. Durch Radioligandenbindungsversuche konnte zudem in beta1-ECII-immunisierten Tieren eine Downregulation der kardialen beta1-Rezeptoren nachgewiesen werden. Durch die Immunisierung mit beta1-ECII-Antigen konnte der Phänotyp einer DCM somit erstmals in der Ratte induziert werden. Dieser Phänotyp ist vermutlich überwiegend auf die agonist-ähnliche funktionelle Aktivität der durch spezifische Immunisierung induzierten beta1-Rezeptorantikörper zurückzuführen. Das vorgestellte Tiermodell erfüllt dabei einerseits die immunologischen Kriterien des 1. Koch’schen Postulats für den „indirekten“ Nachweis einer Kardiomyopathieinduktion durch Antikörper, die gegen die zweite extrazelluläre Domäne des b1-adrenergen Rezeptors gerichtet sind. Andererseits lieferte es im Anschluss auch die direkte Evidenz für eine kausale Rolle solcher Antikörper bei der Induktion einer Autoimmunkardiomyopathie durch den Transfer induzierter Antikörper auf genetisch identische, herzgesunde Ratten (Nachahmen von Rezeptor-Autoantikörpern). Zukünftig könnte dieses Tiermodell auch dazu dienen, weitere immunologische Faktoren, die an der Entwicklung einer Autoimmunkardiomyopathie durch beta1-Rezeptor-antikörper beteiligt sind, zu untersuchen. Ferner können mit diesem Modell neue therapeutische Ansätze für die Behandlung der Rezeptorantikörper-positiven Kardiomyopathie entwickelt werden, mit dem Ziel einer späteren Anwendung im Tiermodell erprobter Strategien auch bei Antikörper-positiven Patienten.