TY - JOUR A1 - Ries, Lena K. A1 - Sander, Bodo A1 - Deol, Kirandeep K. A1 - Letzelter, Marie-Annick A1 - Strieter, Eric Robert A1 - Lorenz, Sonja T1 - Analysis of ubiquitin recognition by the HECT ligase E6AP provides insight into its linkage specificity JF - Journal of Biological Chemistry N2 - Deregulation of the HECT-type ubiquitin ligase E6AP (UBE3A) is implicated in human papilloma virus-induced cervical tumorigenesis and several neurodevelopmental disorders. Yet the structural underpinnings of activity and specificity in this crucial ligase are incompletely understood. Here, we unravel the determinants of ubiquitin recognition by the catalytic domain of E6AP and assign them to particular steps in the catalytic cycle. We identify a functionally critical interface that is specifically required during the initial formation of a thioester-linked intermediate between the C terminus of ubiquitin and the ligase-active site. This interface resembles the one utilized by NEDD4-type enzymes, indicating that it is widely conserved across HECT ligases, independent of their linkage specificities. Moreover, we uncover surface regions in ubiquitin and E6AP, both in the N- and C-terminal portions of the catalytic domain, that are important for the subsequent reaction step of isopeptide bond formation between two ubiquitin molecules. We decipher key elements of linkage specificity, including the C-terminal tail of E6AP and a hydrophilic surface region of ubiquitin in proximity to the acceptor site Lys-48. Intriguingly, mutation of Glu-51, a single residue within this region, permits formation of alternative chain types, thus pointing to a key role of ubiquitin in conferring linkage specificity to E6AP. We speculate that substrate-assisted catalysis, as described previously for certain RING-associated ubiquitin-conjugating enzymes, constitutes a common principle during linkage-specific ubiquitin chain assembly by diverse classes of ubiquitination enzymes, including HECT ligases. KW - ubiquitin KW - ubiquitin ligase KW - ubiquitylation (ubiquitination) KW - post-translational modification KW - enzyme mechanism Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226207 VL - 294 IS - 15 ER - TY - JOUR A1 - Liu, Yi A1 - Maierhofer, Tobias A1 - Rybak, Katarzyna A1 - Sklenar, Jan A1 - Breakspear, Andy A1 - Johnston, Matthew G. A1 - Fliegmann, Judith A1 - Huang, Shouguang A1 - Roelfsema, M. Rob G. A1 - Felix, Georg A1 - Faulkner, Christine A1 - Menke, Frank L.H. A1 - Geiger, Dietmar A1 - Hedrich, Rainer A1 - Robatzek, Silke T1 - Anion channel SLAH3 is a regulatory target of chitin receptor-associated kinase PBL27 in microbial stomatal closure JF - eLife N2 - In plants, antimicrobial immune responses involve the cellular release of anions and are responsible for the closure of stomatal pores. Detection of microbe-associated molecular patterns (MAMPs) by pattern recognition receptors (PRRs) induces currents mediated via slow-type (S-type) anion channels by a yet not understood mechanism. Here, we show that stomatal closure to fungal chitin is conferred by the major PRRs for chitin recognition, LYK5 and CERK1, the receptor-like cytoplasmic kinase PBL27, and the SLAH3 anion channel. PBL27 has the capacity to phosphorylate SLAH3, of which S127 and S189 are required to activate SLAH3. Full activation of the channel entails CERK1, depending on PBL27. Importantly, both S127 and S189 residues of SLAH3 are required for chitin-induced stomatal closure and anti-fungal immunity at the whole leaf level. Our results demonstrate a short signal transduction module from MAMP recognition to anion channel activation, and independent of ABA-induced SLAH3 activation. KW - plants Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202631 VL - 8 ER - TY - JOUR A1 - Kim, Bo-Mi A1 - Amores, Angel A1 - Kang, Seunghyun A1 - Ahn, Do-Hwan A1 - Kim, Jin-Hyoung A1 - Kim, Il-Chan A1 - Lee, Jun Hyuck A1 - Lee, Sung Gu A1 - Lee, Hyoungseok A1 - Lee, Jungeun A1 - Kim, Han-Woo A1 - Desvignes, Thomas A1 - Batzel, Peter A1 - Sydes, Jason A1 - Titus, Tom A1 - Wilson, Catherine A. A1 - Catchen, Julian M. A1 - Warren, Wesley C. A1 - Schartl, Manfred A1 - Detrich, H. William III A1 - Postlethwait, John H. A1 - Park, Hyun T1 - Antarctic blackfin icefish genome reveals adaptations to extreme environments JF - Nature Ecology & Evolution N2 - Icefishes (suborder Notothenioidei; family Channichthyidae) are the only vertebrates that lack functional haemoglobin genes and red blood cells. Here, we report a high-quality genome assembly and linkage map for the Antarctic blackfin icefish Chaenocephalus aceratus, highlighting evolved genomic features for its unique physiology. Phylogenomic analysis revealed that Antarctic fish of the teleost suborder Notothenioidei, including icefishes, diverged from the stickleback lineage about 77 million years ago and subsequently evolved cold-adapted phenotypes as the Southern Ocean cooled to sub-zero temperatures. Our results show that genes involved in protection from ice damage, including genes encoding antifreeze glycoprotein and zona pellucida proteins, are highly expanded in the icefish genome. Furthermore, genes that encode enzymes that help to control cellular redox state, including members of the sod3 and nqo1 gene families, are expanded, probably as evolutionary adaptations to the relatively high concentration of oxygen dissolved in cold Antarctic waters. In contrast, some crucial regulators of circadian homeostasis (cry and per genes) are absent from the icefish genome, suggesting compromised control of biological rhythms in the polar light environment. The availability of the icefish genome sequence will accelerate our understanding of adaptation to extreme Antarctic environments. KW - animal physiology KW - evolutionary genetics KW - genomics KW - ichthyology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-325811 VL - 3 ER - TY - JOUR A1 - Boetzl, Fabian A. A1 - Konle, Antonia A1 - Krauss, Jochen T1 - Aphid cards – useful model for assessing predation rates or bias prone nonsense? JF - Journal of Applied Entomology N2 - Predation on pest organisms is an essential ecosystem function supporting yields in modern agriculture. However, assessing predation rates is intricate, and they can rarely be linked directly to predator densities or functions. We tested whether sentinel prey aphid cards are useful tools to assess predation rates in the field. Therefore, we looked at aphid cards of different sizes on the ground level as well as within the vegetation. Additionally, by trapping ground‐dwelling predators, we examined whether obtained predation rates could be linked to predator densities and traits. Predation rates recorded with aphid cards were independent of aphid card size. However, predation rates on the ground level were three times higher than within the vegetation. We found both predatory carabid activity densities as well as community weighted mean body size to be good predictors for predation rates. Predation rates obtained from aphid cards are stable over card type and related to predator assemblages. Aphid cards, therefore, are a useful, efficient method for rapidly assessing the ecosystem function predation. Their use might especially be recommended for assessments on the ground level and when time and resource limitations rule out more elaborate sentinel prey methods using exclosures with living prey animals. KW - carabid beetles KW - ecosystem service KW - ground-dwelling predators KW - methods KW - natural pest control KW - sentinel prey Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204798 VL - 144 IS - 1-2 ER - TY - JOUR A1 - Raheem, Dotsha J. A1 - Tawfike, Ahmed F. A1 - Abdelmohsen, Usama R. A1 - Edrada-Ebel, RuAngelie A1 - Fitzsimmons-Thoss, Vera T1 - Application of metabolomics and molecular networking in investigating the chemical profile and antitrypanosomal activity of British bluebells (\(Hyacinthoides\) \(non-scripta\)) JF - Scientific Reports N2 - Bulb, leaf, scape and flower samples of British bluebells (Hyacinthoides non-scripta) were collected regularly for one growth period. Methanolic extracts of freeze-dried and ground samples showed antitrypanosomal activity, giving more than 50% inhibition, for 20 out of 41 samples. High-resolution mass spectrometry was used in the dereplication of the methanolic extracts of the different plant parts. The results revealed differences in the chemical profile with bulb samples being distinctly different from all aerial parts. High molecular weight metabolites were more abundant in the flowers, shoots and leaves compared to smaller molecular weight ones in the bulbs. The anti-trypanosomal activity of the extracts was linked to the accumulation of high molecular weight compounds, which were matched with saponin glycosides, while triterpenoids and steroids occurred in the inactive extracts. Dereplication studies were employed to identify the significant metabolites via chemotaxonomic filtration and considering their previously reported bioactivities. Molecular networking was implemented to look for similarities in fragmentation patterns between the isolated saponin glycoside at m/z 1445.64 [M + formic-H](-) equivalent to C64H104O33 and the putatively found active metabolite at m/z 1283.58 [M + formic-H](-) corresponding to scillanoside L-1. A combination of metabolomics and bioactivity-guided approaches resulted in the isolation of a norlanostane-type saponin glycoside with antitrypanosoma I activity of 98.9% inhibition at 20 mu M. KW - Drug discovery KW - Metabolomics Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224935 VL - 9 ER - TY - JOUR A1 - Wagner, Fabienne A1 - Kunz, Tobias C. A1 - Chowdhury, Suvagata R. A1 - Thiede, Bernd A1 - Fraunholz, Martin A1 - Eger, Debora A1 - Kozjak-Pavlovic, Vera T1 - Armadillo repeat-containing protein 1 is a dual localization protein associated with mitochondrial intermembrane space bridging complex JF - PLoS ONE N2 - Cristae architecture is important for the function of mitochondria, the organelles that play the central role in many cellular processes. The mitochondrial contact site and cristae organizing system (MICOS) together with the sorting and assembly machinery (SAM) forms the mitochondrial intermembrane space bridging complex (MIB), a large protein complex present in mammalian mitochondria that partakes in the formation and maintenance of cristae. We report here a new subunit of the mammalian MICOS/MIB complex, an armadillo repeat-containing protein 1 (ArmC1). ArmC1 localizes both to cytosol and mitochondria, where it associates with the outer mitochondrial membrane through its carboxy-terminus. ArmC1 interacts with other constituents of the MICOS/MIB complex and its amounts are reduced upon MICOS/MIB complex depletion. Mitochondria lacking ArmC1 do not show defects in cristae structure, respiration or protein content, but appear fragmented and with reduced motility. ArmC1 represents therefore a peripheral MICOS/MIB component that appears to play a role in mitochondrial distribution in the cell. KW - Mitochondria KW - Outer membrane proteins KW - HeLa cells KW - Immunoprecipitation KW - Cytosol KW - Small interfering RNAs KW - Confocal microscopy KW - Cell stainin Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202670 VL - 14 IS - 10 ER - TY - JOUR A1 - Srivastava, Mugdha A1 - Bencurova, Elena A1 - Gupta, Shishir K. A1 - Weiss, Esther A1 - Löffler, Jürgen A1 - Dandekar, Thomas T1 - Aspergillus fumigatus challenged by human dendritic cells: metabolic and regulatory pathway responses testify a tight battle JF - Frontiers in Cellular and Infection Microbiology N2 - Dendritic cells (DCs) are antigen presenting cells which serve as a passage between the innate and the acquired immunity. Aspergillosis is a major lethal condition in immunocompromised patients caused by the adaptable saprophytic fungus Aspergillus fumigatus. The healthy human immune system is capable to ward off A. fumigatus infections however immune-deficient patients are highly vulnerable to invasive aspergillosis. A. fumigatus can persist during infection due to its ability to survive the immune response of human DCs. Therefore, the study of the metabolism specific to the context of infection may allow us to gain insight into the adaptation strategies of both the pathogen and the immune cells. We established a metabolic model of A. fumigatus central metabolism during infection of DCs and calculated the metabolic pathway (elementary modes; EMs). Transcriptome data were used to identify pathways activated when A. fumigatus is challenged with DCs. In particular, amino acid metabolic pathways, alternative carbon metabolic pathways and stress regulating enzymes were found to be active. Metabolic flux modeling identified further active enzymes such as alcohol dehydrogenase, inositol oxygenase and GTP cyclohydrolase participating in different stress responses in A. fumigatus. These were further validated by qRT-PCR from RNA extracted under these different conditions. For DCs, we outlined the activation of metabolic pathways in response to the confrontation with A. fumigatus. We found the fatty acid metabolism plays a crucial role, along with other metabolic changes. The gene expression data and their analysis illuminate additional regulatory pathways activated in the DCs apart from interleukin regulation. In particular, Toll-like receptor signaling, NOD-like receptor signaling and RIG-I-like receptor signaling were active pathways. Moreover, we identified subnetworks and several novel key regulators such as UBC, EGFR, and CUL3 of DCs to be activated in response to A. fumigatus. In conclusion, we analyze the metabolic and regulatory responses of A. fumigatus and DCs when confronted with each other. KW - infection KW - dendritic cells KW - Aspergillus fumigalus KW - metabolic modelling KW - signalling Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201368 VL - 9 ER - TY - THES A1 - Grimm, Johannes T1 - Autocrine and paracrine effects of BRAF inhibitor induced senescence in melanoma T1 - Autokrine und parakrine Effekte BRAF-Inhibitor-induzierter Seneszenz im Melanom N2 - The FDA approval of targeted therapy with BRAFV600E inhibitors like vemurafenib and dabrafenib in 2011 has been the first major breakthrough in the treatment of metastatic melanoma since almost three decades. Despite increased progression free survival and elevated overall survival rates, complete responses are scarce due to resistance development approximately six months after the initial drug treatment. It was previously shown in our group that melanoma cells under vemurafenib pressure in vitro and in vivo exhibit features of drug-induced senescence. It is known that some cell types, which undergo this cell cycle arrest, develop a so-called senescence associated secretome and it has been reported that melanoma cell lines also upregulate the expression of different factors after senescence induction. This work describes the effect of the vemurafenib-induced secretome on cells. Conditioned supernatants of vemurafenib-treated cells increased the viability of naive fibroblast and melanoma cell lines. RNA analysis of donor melanoma cells revealed elevated transcriptional levels of FGF1, MMP2 and CCL2 in the majority of tested cell lines under vemurafenib pressure, and I could confirm the secretion of functional proteins. Similar observations were also done after MEK inhibition as well as in a combined BRAF and MEK inhibitor treatment situation. Interestingly, the transcription of other FGF ligands (FGF7, FGF17) was also elevated after MEK/ERK1/2 inhibition. As FGF receptors are therapeutically relevant, I focused on the analysis of FGFR-dependent processes in response to BRAF inhibition. Recombinant FGF1 increased the survival rate of melanoma cells under vemurafenib pressure, while inhibition of the FGFR pathway diminished the viability of melanoma cells in combination with vemurafenib and blocked the stimulatory effect of vemurafenib conditioned medium. The BRAF inhibitor induced secretome is regulated by active PI3K/AKT signaling, and the joint inhibition of mTor and BRAFV600E led to decreased senescence induction and to a diminished induction of the secretome-associated genes. In parallel, combined inhibition of MEK and PI3K also drastically decreased mRNA levels of the relevant secretome components back to basal levels. In summary, I could demonstrate that BRAF inhibitor treated melanoma cell lines acquire a specific PI3K/AKT dependent secretome, which is characterized by FGF1, CCL2 and MMP2. This secretome is able to stimulate other cells such as naive melanoma cells and fibroblasts and contributes to a better survival under drug pressure. These data are therapeutically highly relevant, as they imply the usage of novel drug combinations, especially specific FGFR inhibitors, with BRAF inhibitors in the clinic. N2 - Die Zulassung der spezifischen BRAFV600E Inhibitoren Vemurafenib und Dabrafenib im Jahr 2011 war der erste wirksame Schritt nach Jahrzehnten der Stagnation in der Behandlung des metastasierenden Melanoms. Allerdings zeigte sich, dass trotz erhöhter Gesamtüberlebensrate und gestiegenem progressionsfreien Überleben komplette Remissionen selten waren. Wir konnten in vorangegangenen Versuchen zeigen, dass eine Behandlung BRAFV600E-mutierter Melanom Zelllinien mit Vemurafenib mit der Induktion von Seneszenz-assoziierten Merkmalen einhergeht. Da bekannt ist, dass seneszente Zellen, darunter auch Melanom Zellen, ein sogenanntes Sekretom ausbilden können, welches andere Zellen beeinflussen kann, war die Identifizierung und Charakterisierung von Vemurafenib-induzierten sezernierten Faktoren das Ziel meiner Arbeit. Initiale Versuche zeigten, dass konditionierter Überstand von Vemurafenib behandelten Zellen das Wachstum naiver Zelllinien erhöhen kann. Ich konnte in weiteren Versuchen zeigen, dass sich die Transkription und Expression des Cytokins CCL2, der Matrixmetalloprotease MMP2 und des Wachstumsfaktors FGF1 nach Vemurafenib Behandlung erhöht. Darüber hinaus konnte ich interessanterweise auch eine gesteigerte Transkription anderer FGF Liganden (FGF7, FGF17) feststellen, was meinen Fokus auf die Analyse von FGFR abhängigen Prozessen als Antwort auf die BRAF Inhibition gelenkt hat. Es zeigte sich, dass sich Melanomzellen mittels Zugabe von FGF1 besser gegen die Vemurafenib-induzierte MEK/ERK1/2 Hemmung behaupten können. Darüber hinaus konnte durch den Einsatz eines spezifischen FGFR Inhibitors die Viabilität von Melanomzellen unter Vemurafenib Behandlung vermindert werden. Auch der stimulierende Effekt des Vemurafenib konditionierten Überstandes konnte dadurch teilweise aufgehoben werden. Die Induktion des BRAF Inhibitor assoziierten Sekretoms ist auf einen aktiven PI3K/AKT Signalweg angewiesen. So führt eine gleichzeitige Hemmung des MEK/ERK1/2 und PI3K/AKT Signalwegs zu einer verminderten Seneszenzinduktion und einer niedrigeren Transkription der Seneszenz-assoziierten Gene. Zudem konnte ich feststellen, dass auch eine gemeinsame Hemmung von BRAF und MEK Seneszenz und das damit einhergehende Sekretom unter Beteiligung von CCL2, MMP2 und den FGFs induziert. Zusammenfassend zeigen meine Daten, dass BRAFV600E-mutierte Melanomzellen nach Vemurafenib Behandlung ein Sekretom ausbilden, welches potentiell wachstumsfördernde und matrix-modellierende Faktoren beinhaltet. Dies ist abhängig vom PI3K/AKT Signalweg und charakterisiert durch die Sekretion von FGF1, CCL2 und MMP2. Klinische Relevanz erlangen diese Erkenntnisse durch die Möglichkeit, diese Faktoren im Rahmen einer Kombinationstherapie, z.B. mit einem spezifischen FGFR Inhibitor, zu inaktivieren. KW - Melanoma KW - Inhibitor KW - Melanom Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-181161 ER - TY - JOUR A1 - Schwedhelm, Ivo A1 - Zdzieblo, Daniela A1 - Appelt-Menzel, Antje A1 - Berger, Constantin A1 - Schmitz, Tobias A1 - Schuldt, Bernhard A1 - Franke, Andre A1 - Müller, Franz-Josef A1 - Pless, Ole A1 - Schwarz, Thomas A1 - Wiedemann, Philipp A1 - Walles, Heike A1 - Hansmann, Jan T1 - Automated real-time monitoring of human pluripotent stem cell aggregation in stirred tank reactors JF - Scientific Reports N2 - The culture of human induced pluripotent stem cells (hiPSCs) at large scale becomes feasible with the aid of scalable suspension setups in continuously stirred tank reactors (CSTRs). Innovative monitoring options and emerging automated process control strategies allow for the necessary highly defined culture conditions. Next to standard process characteristics such as oxygen consumption, pH, and metabolite turnover, a reproducible and steady formation of hiPSC aggregates is vital for process scalability. In this regard, we developed a hiPSC-specific suspension culture unit consisting of a fully monitored CSTR system integrated into a custom-designed and fully automated incubator. As a step towards cost-effective hiPSC suspension culture and to pave the way for flexibility at a large scale, we constructed and utilized tailored miniature CSTRs that are largely made from three-dimensional (3D) printed polylactic acid (PLA) filament, which is a low-cost material used in fused deposition modelling. Further, the monitoring tool for hiPSC suspension cultures utilizes in situ microscopic imaging to visualize hiPSC aggregation in real-time to a statistically significant degree while omitting the need for time-intensive sampling. Suitability of our culture unit, especially concerning the developed hiPSC-specific CSTR system, was proven by demonstrating pluripotency of CSTR-cultured hiPSCs at RNA (including PluriTest) and protein level. KW - Biomedical engineering KW - Stem-cell biotechnology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202649 VL - 9 ER - TY - THES A1 - Memmel, Simon T1 - Automatisierte Algorithmen zur Analyse der Migration und der strahleninduzierten DNA-Schäden humaner Glioblastomzellen nach kombinierter PI3K/mTOR/Hsp90-Inhibierung T1 - Automated algorithms for the analysis of cell migration and radiation induced DNA-damage in human glioblastoma cells after combined PI3K/mTOR/Hsp90 inhibition N2 - Das hohe invasive Potential und die starke Resistenz gegen Radio-/Chemotherapie von Glioblastoma multiforme (GBM) Zellen machen sie zu dem tödlichsten Tumor ihrer Art. Es ist deshalb von großem Interesse die Grundlagen, welche der Migrationsfähigkeit und DNA Reparatur zu Grunde liegen, besser zu verstehen. Im ersten Teil dieser Arbeit wurden zwei Algorithmen zur automatischen Analyse der Migration in der Einzelzellverfolgung und im Wundheilungsassay modifiziert. Die Auswertung der Daten konnte automatisch und somit schnell, effektiv und mit geringerem Arbeitsaufwand durchgeführt werden. Mit Hilfe dieser automatischen Algorithmen wurde die Migrationsfähigkeit von zwei GBM-Zelllinien (DK-MG und SNB19) untersucht. Zusätzlich wurde die konfokale Laserscanning- sowie die hochauflösende dSTORM-Fluoreszenzmikroskopie verwendet um die, der Zellbewegung zu Grunde liegende, Struktur des F Aktin und der fokalen Adhäsionskinase (FAK) aufzulösen und darzustellen. Unter Anwendung dieser genannten Methoden sind die Effekte des dualen PI3K/mTOR Inhibitors PI-103 alleine und in Kombination mit dem Hsp90 Inhibitor NVP AUY922 mit und ohne Bestrahlung auf die Bewegung untersucht worden. Es konnte festgestellt werden, dass sich beide Zelllinien deutlich in ihrem migratorischem Potential in vitro unterscheiden und zudem auch markante Unterschiede in ihrer Morphologie aufweisen. Die weniger invasiven DK MG-Zellen besitzen eine polarisierte Zellstruktur, wohingegen SNB19-Zellen sich durch multipolare ungerichtete Bewegung auszeichneten. Zudem wurde die Migration, durch PI3K/mTOR Inhibition mit PI-103 bei den DK-MG-Zellen (p53 wt, PTEN wt), sehr effektiv unterdrückt. Wohingegen sich die SNB19-Zellen (p53 mut, PTEN mut) resistent gegen diesen Inhibitor zeigten. Hsp90 Inhibition offenbarte in beiden Zelllinien einen starken inhibitorischen Effekt auf die Migration der Zellen sowie die Reorganisierung des F Aktinskelettes. In der zweiten Hälfte dieser Arbeit wurde ein Augenmerk auf die DNA-DSB-Reparatur der GBM Zellen nach ionisierender Strahlung gelegt. Zunächst wurde eine automatische Analysesoftware „FocAn-3D“ entwickelt, mit dessen Hilfe die DNA Doppelstrangbruchreparaturkinetik untersucht werden sollte. Diese Software ermöglicht es die gesamten Zellkerne mit ihren γH2AX-Foci in 3D-cLSM-Aufnahmen zu untersuchen. Es konnte somit eine Verbesserung der Genauigkeit in der Auszählung der γH2AX-Foci erreicht werden, welche 2D beschränkter Software verwehrt bleibt. Mit FocAn-3D konnte der gesamte Verlauf der Induktions- und Abbauphase der γH2AX-Foci in DK MG- und SNB19-Zellen mit einem mathematischen Modell ausgewertet und dargestellt werden. Des Weiteren wurde die Nanometerstruktur von γH2AX- und pDNA-PKcs-Foci mittels hochauflösender dSTORM-Mikroskopie untersucht. Konventionelle Mikroskopiemethoden, begrenzt durch das Beugungslimit und einer Auflösung von ~200 nm, konnten die Nanometerstruktur (<100 nm) der Reparaturfoci bisher nicht darstellen. Mit Hilfe der beugungsunbegrenzten dSTORM-Mikroskopie war es möglich in DK MG- und SNB19-Zellen die Nanometerstruktur genannten Reparaturproteine in den Foci mit einer Auflösung von bis zu ~20 nm darzustellen. γH2AX-Foci zeigten sich als eine Verteilung aus einzelnen Untereinheiten („Nanofoci“) mit einem Durchmesser von ~45 nm. Dies lässt die Vermutung zu, dass es sich hier um die elementare Substruktur der Foci und somit der γH2AX enthaltenen Nukleosome handelt. DNA-PK-Foci wiesen hingegen eine diffusere Verteilung auf. Die in dieser Arbeit ermittelten Unterschiede im Migrationsverhalten der Zellen rechtfertigen eine weitere präklinische Untersuchung der verwendeten Inhibitoren als potentielle Zelltherapeutika für die Behandlung von GBM. Zudem konnte sich dSTORM als machtvolles Hilfsmittel, sowohl zur Analyse der Migration zugrundeliegenden Zytoskelettstruktur und der Effekte der Hsp90 Inhibierung, als auch, der Nanostruktur der DNA-DSB-Reparaturfoci herausstellen. Es ist anzunehmen, dass beugungsunbegrenzte Mikroskopiemethoden sich als bedeutende Werkzeuge in der medizinischen und biologischen Erforschung der DNA-Reparaturmechanismen herausstellen werden. Das in dieser Arbeit entwickelte ImageJ Plugin „FocAn-3D“ bewies sich ebenfalls als ein vielversprechendes Werkzeug für die Analyse der Reparaturkinetik. Mit Hilfe von „FocAn-3D“ sollte es somit möglich sein u.a. den Einfluss gezielter Inhibition auf den zeitlichen Verlauf der Induktion und des Abbaus der DNA-Reparaturmaschinerie genauer zu studieren. N2 - The high invasive Potential and increased resistance to radio- and chemotherapy of glioblastoma multiforme (GBM) tumor cells make it the most lethal of all primary brain tumors. It is therefore of great interest to gain a better understanding of the mechanisms facilitating the migration and DNA repair. In the first part of this study, two algorithms for single cell tracking and wound healing assays were modified to increase effectiveness and speed of the automatic data analysis. The migratory capacity of the two GBM cell lines, DK MG and SNB19, were analyzed using these automatic algorithms. In addition, employing confocal microscopy and high resolution dSTORM imaging, the underlying F actin/FAK structure was resolved and studied. Together, these automatic algorithms enabled me to elucidate the effects of the dual PI3K/mTOR inhibitor PI 103 alone and in combination with the Hsp90 inhibitor NVP-AUY922 and/or irradiation on the migration, focal adhesions and F-actin cytoskeleton of DK-MG and SNB19 cells. Both cell lines differ markedly in their migratory capacity in vitro and display distinctive differences in their morphology. The less invasive DK-MG cells retained their polarized structure, while SNB19 cells demonstrate multipolar morphology with random migration. The PI3K/mTOR Inhibition using PI-103 suppressed migration of the PTEN wt and p53 wt DK-MG cells but not of the PTEN mut and p53 mut SNB19 cells. In contrast, Hsp90 inhibition using NVP-AUY922 exerted a strong inhibitory effect on the migration in both cell lines as well as massive morphological changes and reorganization of the F-actin cytoskeleton. The second part of this study was designed to gain further insights in the DNA double strand break (DSB) repair of both GBM cell lines. The DNA DSB repair kinetics were analyzed using the novel software “FocAn-3D”. The software enables the 3D analysis of foci in entire nuclei using cLSM-imaging. This in turn results in increased accuracy of the foci counts, compared to approaches restricted to 2D. Using the new software approach, I was able to determine the whole γH2AX-foci induction and decay process and apply a well described mathematical model for the γH2AX-foci repair kinetics. Additionally, diffraction unlimited microscopy (dSTORM) was applied to resolve the nanometer scale of the foci forming repair proteins γH2AX and DNA-PK. Although conventional microscopy is able to reveal the repair foci as diffuse spots, the underlying protein distribution is well beyond the diffraction limit of ~200 nm. In this study, using the diffraction unlimited dSTORM microscopy with a lateral resolution of ~20 nm, it was possible to resolve the nanometer scale of both γH2AX and DNA-PK. γH2AX foci appeared not as diffuse spots, but rather as a distribution of distinct subunits (“nanofoci”). In contrast DNA-PK mostly showed a more diffuse distribution. The nanofoci diameter was about ~45 nm and it can be concluded that these clusters represent the elementary structural subunits of repair foci, the γH2AX-containing nucleosomes. Using the newly developed or modified algorithms for the analysis of cell migration, I was able to show a cell line specific response of the PI3K/mTOR inhibition on the cell migration. This warrants further preclinical trials for its potential as an anti-migratory agent in the treatment of GBM. In addition, dSTORM emerged as a powerful tool for the analysis of the cytoskeletal structure, underlying the cells migration capacity and the effects of Hsp90 inhibition. Also, dSTORM was able to unravel the elementary nanostructure of the DSB repair foci. This means diffraction unlimited single-molecule localization nanoscopy methods will likely emerge as powerful tools for the analysis of targeted inhibition on the DSB repair mechanisms. In addition, the newly developed software “FocAn-3D” showed promising results in the analysis of Foci kinetics. Consequently, it should enable the future study of targeted inhibition and its effects on foci induction and decay processes of the DNA repair. KW - Glioblastom KW - Zellmigration KW - DNS-Schädigung KW - Algorithmus KW - Automatisierung KW - PI3K/mTOR inhibierung KW - yH2AX-Foci KW - Dnaschaden KW - DNS-Doppelstrangbruch Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-185710 ER - TY - JOUR A1 - Paponov, Ivan A. A1 - Dindas , Julian A1 - Król , Elżbieta A1 - Friz, Tatyana A1 - Budnyk, Vadym A1 - Teale, William A1 - Paponov, Martina A1 - Hedrich , Rainer A1 - Palme, Klaus T1 - Auxin-Induced plasma membrane depolarization is regulated by Auxin transport and not by AUXIN BINDING PROTEIN1 JF - Frontiers in Plant Science N2 - Auxin is a molecule, which controls many aspects of plant development through both transcriptional and non-transcriptional signaling responses. AUXIN BINDING PROTEIN1 (ABP1) is a putative receptor for rapid non-transcriptional auxin-induced changes in plasma membrane depolarization and endocytosis rates. However, the mechanism of ABP1-mediated signaling is poorly understood. Here we show that membrane depolarization and endocytosis inhibition are ABP1-independent responses and that auxin-induced plasma membrane depolarization is instead dependent on the auxin influx carrier AUX1. AUX1 was itself not involved in the regulation of endocytosis. Auxin-dependent depolarization of the plasma membrane was also modulated by the auxin efflux carrier PIN2. These data establish a new connection between auxin transport and non-transcriptional auxin signaling. KW - auxin KW - ABP1 KW - plasma membrane depolarization KW - AUX1 KW - endocytosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195914 SN - 1664-462X VL - 9 ER - TY - THES A1 - Frank, Erik Thomas T1 - Behavioral adaptations in the foraging behaviour of \(Megaponera\) \(analis\) T1 - Verhaltensanpassungen im Furagierverhalten von \(Megaponera\) \(analis\) N2 - An efficient foraging strategy is one of the most important traits for the fitness of animals. The theory of optimal foraging tries to predict foraging behaviour through the overarching question: how animals should forage so as to minimize costs while maximizing profits? Social insects, having occupied nearly every natural niche through widely different strategies, offer themselves as an ideal group to study how well optimal foraging theory can explain their behaviour and success. Specialization often leads to unique adaptations in morphology and behaviour. I therefore decided to investigate the behaviour of Megaponera analis. This ponerine ant species is specialized on hunting only termites of the subfamily Macrotermitinae at their foraging sites. Their foraging behaviour is regulated by a handful of individual scouts (10-20) that search for termite foraging sites before returning to the nest to recruit a large number of nestmates (200-500 ants). These ants then follow the scout in a column formation to the termites and after the hunt return together to the nest, these raids occur two to five times per day. Predators of highly defensive prey likely develop cost reducing adaptations. The evolutionary arms race between termites and ants led to various defensive mechanisms in termites, e.g. a caste specialized in fighting predators. As M. analis incurs high injury/mortality risks when preying on termites, some risk mitigating adaptations have evolved. I show that a unique rescue behaviour in M. analis, consisting of injured nestmates being carried back to the nest, reduces combat mortality. These injured ants “call for help” with pheromones present in their mandibular gland reservoirs. A model accounting for this rescue behaviour identifies the drivers favouring its evolution and estimates that rescuing allows for maintaining a 29% larger colony size. Heavily injured ants that lost too many legs during the fight on the other hand are not helped. Interestingly, this was regulated not by the helper but by the uncooperativeness of the injured ant. I further observed treatment of the injury by nestmates inside the nest through intense allogrooming directly at the wound. Lack of treatment increased mortality from 10% to 80% within 24 hours, with the cause of death most likely being infections. Collective decision-making is one of the main mechanisms in social insects through which foraging is regulated. However, individual decision-making can also play an important role, depending on the type of foraging behaviour. In M. analis only a handful of individuals (the scouts) hold all the valuable information about foraging sites. I therefore looked at predictions made by optimal foraging theory to better understand the interplay between collective and individual decision-making in this obligate group-raiding predator. I found a clear positive relation between raid size and termite abundance at the foraging site. Furthermore, selectivity of the food source increased with distance. The confirmation of optimal foraging theory suggests that individual scouts must be the main driver behind raid size, choice and raiding behaviour. Therefore most central place foraging behaviours in M. analis were not achieved by collective decisions but rather by individual decisions of scout ants. Thus, 1% of the colony (10–20 scouts) decided the fate and foraging efficiency of the remaining 99%. Division of labour is one of the main reasons for the success of social insects. Worker polymorphism, age polyethism and work division in more primitive ants, like the ponerines, remain mostly unexplored though. Since M. analis specializes on a defensive prey, adaptations to reduce their foraging costs can be expected. I found that the work division, task allocation and column-formation during the hunt were much more sophisticated than was previously thought. The column-formation was remarkably stable, with the same ants resuming similar positions in subsequent raids and front ants even returning to their positions if displaced in the same raid. Most of the raid tasks were not executed by predetermined members of the raid but were filled out as need arose during the hunt, with a clear preference for larger ants to conduct most tasks. I show that specialization towards a highly defensive prey can lead to very unique adaptations in the foraging behaviour of a species. I explored experimentally the adaptive value of rescue behaviour focused on injured nestmates in social insects. This was not only limited to selective rescuing of lightly injured individuals by carrying them back (thus reducing predation risk) but moreover includes a differentiated treatment inside the nest. These observations will help to improve our understanding of the evolution of rescue behaviour in animals. I further show that most optimal foraging predictions are fulfilled and regulated by a handful of individuals in M. analis. Lastly, I propose that the continuous allometric size polymorphism in M. analis allows for greater flexibility in task allocation, necessary due to the unpredictability of task requirements in an irregular system such as hunting termites in groups. All of my observations help to further understand how a group-hunting predator should forage so as to minimize costs while maximizing profits. N2 - Ein effizientes Furagierverhalten ist eine der wesentlichsten Voraussetzungen für die Überlebensfähigkeit von Tieren. Die Theorie des „Optimal Foraging“ versucht, das Furagierverhalten durch die übergreifende Frage zu verstehen: Wie sollten Tiere nach Futter suchen/jagen, um die Kosten zu minimieren und gleichzeitig die Gewinne zu maximieren? Soziale Insekten, die fast jede natürliche Nische durch diverse Strategien besetzt haben, bieten sich als ideale Gruppe an, um zu untersuchen, wie gut „Optimal Foraging“ ihr Verhalten und ihren Erfolg erklären kann. Da Spezialisierung oft zu einzigartigen Anpassungen in Morphologie und Verhalten führt, war das Jagdverhalten von Megaponera analis diesbezüglich sehr vielversprechend. Diese Ponerinae Ameisenart ist spezialisiert auf die Jagd von Termiten der Unterfamilie Macrotermitinae an ihren Futterstellen. Ihr Jagdverhalten wird durch eine Handvoll von einzelner Späher (10-20) geregelt, die nach Termiten-Futterstellen suchen, bevor sie zum Nest zurückkehren, um eine große Anzahl von Nestgenossinnen (200-500 Ameisen) zu rekrutieren. Die Ameisen folgen dann dem Späher in einer Kolonne zu den Termiten und zurück, diese Überfälle finden zwei bis fünf Mal am Tag statt. Es ist wahrscheinlich, dass Prädatoren von defensiver Beute kostenreduzierende Anpassungen entwickeln. Das evolutionäre Wettrüsten zwischen Termiten und Ameisen führte zu verschiedenen Abwehrmechanismen bei Termiten, z.B. eine Soldaten-Kaste, die sich auf die Bekämpfung von Raubtieren spezialisiert hat. Da M. analis ein hohes Verletzungsrisiko durch Termitensoldaten hat, haben sich bei ihr einige kostenreduzierende Anpassungen entwickelt. Ich zeige, dass ein einzigartiges Rettungsverhalten bei M. analis, bestehend aus verletzten Nestgenossinnen, die zum Nest zurückgetragen werden, die Mortalität reduziert. Diese verletzten Ameisen „rufen“ um Hilfe mit Pheromonen, die in ihren mandibularen Drüsenreservoirs vorhanden sind. Ein Modell, das dieses Rettungsverhalten berücksichtigt, hilft dabei die wichtigsten Faktoren zu identifizieren, welche die Evolution dieses Rettungsverhaltens begünstigen. Ferner wird schwerverletzten Ameisen, die während des Kampfes zu viele Beine verloren haben, nicht geholfen. Interessanterweise wird dies nicht durch den Helfer reguliert, sondern durch die mangelnde Kooperation der verletzten Ameise. Des Weiteren beobachtete ich die Behandlung der Verletzten durch Nestgenossinnen im Nest durch intensives „Allogrooming“/lecken direkt an der Wunde. Eine Unterbindung der Behandlung erhöhte die Mortalität von 10% auf 80% innerhalb von 24 Stunden, höchstwahrscheinlich aufgrund von Infektionen. Die kollektive Entscheidungsfindung ist einer der Hauptmechanismen bei sozialen Insekten, durch die die Futtersuche reguliert wird. Allerdings spielt die individuelle Entscheidungsfindung, je nach Art des Furagierverhaltens, auch eine wichtige Rolle. In M. analis haben nur eine Handvoll von Individuen (die Späher) alle Informationen über die Futterstellen. Ich betrachtete daher die Vorhersagen, die durch „Optimal Foraging“ gemacht werden, um das Zusammenspiel von kollektiver und individueller Entscheidungsfindung bei diesem obligaten Gruppenjäger besser zu verstehen. Ich fand eine klare positive Beziehung zwischen Raubzugsgröße und Termitenabundanz an der Futterstelle. Außerdem erhöhte sich die Selektivität der Futterstelle mit der Entfernung zum Nest. Die Bestätigung der „Optimalen Foraging“ Theorie deutet darauf hin, dass einzelne Späher der Haupttreiber hinter Raubzugsgröße, Wahl und Raubzugsverhalten sein müssen. Dies bedeutet, dass in M. analis das Furagierverhalten nicht durch kollektive Entscheidungen, sondern durch individuelle Entscheidungen der Späher reguliert wird. So entschied 1% der Kolonie (10-20 Späher) das Schicksal und die Furagier-Effizienz der restlichen 99%. Die Arbeitsteilung ist einer der Hauptgründe des Erfolgs sozialer Insekten. Arbeiterpolymorphismus, Alterspolyethismus und Arbeitsteilung bei primitiveren Ameisen, wie den Ponerinen, blieben bisher jedoch meist unerforscht. Da M. analis sich auf eine defensive Beute spezialisiert hat, sind Anpassungen zur Reduzierung ihrer Furagierkosten zu erwarten. Ich zeige, dass die Arbeitsteilung und Kolonnenformation während der Jagd viel anspruchsvoller ist, als bisher angenommen. Die Kolonnenformation war bemerkenswert stabil: dieselben Ameisen nahmen ähnliche Positionen in späteren Raubzügen ein und die vorderen Ameisen kehrten sogar zu ihrer Position zurück, wenn diese absichtlich verändert wurde. Dies weist auf unbekannte Regulationsmechanismen für die Bildung der Kolonne hin. Darüber hinaus wurden die meisten der Raubzugsaufgaben nicht von vorgegebenen Mitgliedern des Raubzugs ausgeführt, sondern wurden je nach Bedarf während der Jagd verteilt. Meine Versuche zeigen, dass die Spezialisierung auf eine hoch defensive Beute zu sehr einzigartigen Anpassungen im Furagierverhalten einer Art führen kann. Ich erforschte experimentell den adaptiven Wert eines Rettungsverhaltens, das auf verletzte Nestgenossinnen bei sozialen Insekten fokussiert war. Dies beschränkte sich nicht nur auf die selektive Rettung von leicht verletzten Individuen, welche zurückgetragen wurden (wodurch das Prädationsrisiko reduziert wurde), sondern umfasst darüber hinaus eine differenzierte Behandlung im Nest. Ich zeige weiter, dass die meisten „Optimal Foraging“ Vorhersagen von einer Handvoll Individuen in M. analis erfüllt und reguliert werden. Schließlich postuliere ich die Hypothese, dass der kontinuierliche allometrische Größenpolymorphismus in M. analis eine größere Flexibilität bei der Aufgabenverteilung ermöglicht, die aufgrund der Unberechenbarkeit der Aufgabenanforderungen in einem unregelmäßigen System wie dem Jagen von Termiten in Gruppen Erforderlich ist. Alle meine Beobachtungen verbessern unser Verständnis des Verhaltens eines Gruppenjägers, das während der Jagd die Kosten zu minimieren und die Gewinne zu maximieren hat. KW - Stechameisen KW - Nahrungserwerb KW - Verhalten KW - Optimal foraging KW - Rescue behaviour KW - Myrmecology KW - Behaviour KW - Ecology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-156544 ER - TY - JOUR A1 - El-Hawary, Seham S. A1 - Sayed, Ahmed M. A1 - Mohammed, Rabab A1 - Hassan, Hossam M. A1 - Rateb, Mostafa E. A1 - Amin, Elham A1 - Mohammed, Tarek A. A1 - El-Mesery, Mohamed A1 - Bin Muhsinah, Abdullatif A1 - Alsayari, Abdulrhman A1 - Wajant, Harald A1 - Anany, Mohamed A. A1 - Abdelmohsen, Usama Ramadan T1 - Bioactive brominated oxindole alkaloids from the Red Sea sponge Callyspongia siphonella JF - Marine Drugs N2 - In the present study, LC-HRESIMS-assisted dereplication along with bioactivity-guided isolation led to targeting two brominated oxindole alkaloids (compounds 1 and 2) which probably play a key role in the previously reported antibacterial, antibiofilm, and cytotoxicity of Callyspongia siphonella crude extracts. Both metabolites showed potent antibacterial activity against Gram-positive bacteria, Staphylococcus aureus (minimum inhibitory concentration (MIC) = 8 and 4 µg/mL) and Bacillus subtilis (MIC = 16 and 4 µg/mL), respectively. Furthermore, they displayed moderate biofilm inhibitory activity in Pseudomonas aeruginosa (49.32% and 41.76% inhibition, respectively), and moderate in vitro antitrypanosomal activity (13.47 and 10.27 µM, respectively). In addition, they revealed a strong cytotoxic effect toward different human cancer cell lines, supposedly through induction of necrosis. This study sheds light on the possible role of these metabolites (compounds 1 and 2) in keeping fouling organisms away from the sponge outer surface, and the possible applications of these defensive molecules in the development of new anti-infective agents. KW - Callyspongia siphonella KW - LC-HRESIMS KW - metabolomic profiling KW - oxindole alkaloids KW - tisindoline KW - antibacterial KW - antibiofilm KW - antitrypanosomal KW - anticancer Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201485 VL - 17 IS - 8 ER - TY - INPR A1 - Dandekar, Thomas T1 - Biological heuristics applied to cosmology suggests a condensation nucleus as start of our universe and inflation cosmology replaced by a period of rapid Weiss domain-like crystal growth N2 - Cosmology often uses intricate formulas and mathematics to derive new theories and concepts. We do something different in this paper: We look at biological processes and derive from these heuristics so that the revised cosmology agrees with astronomical observations but does also agree with standard biological observations. We show that we then have to replace any type of singularity at the start of the universe by a condensation nucleus and that the very early period of the universe usually assumed to be inflation has to be replaced by a period of rapid crystal growth as in Weiss magnetization domains. Impressively, these minor modifications agree well with astronomical observations including removing the strong inflation perturbations which were never observed in the recent BICEP2 experiments. Furthermore, looking at biological principles suggests that such a new theory with a condensation nucleus at start and a first rapid phase of magnetization-like growth of the ordered, physical laws obeying lattice we live in is in fact the only convincing theory of the early phases of our universe that also is compatible with current observations. We show in detail in the following that such a process of crystal creation, breaking of new crystal seeds and ultimate evaporation of the present crystal readily leads over several generations to an evolution and selection of better, more stable and more self-organizing crystals. Moreover, this explains the “fine-tuning” question why our universe is fine-tuned to favor life: Our Universe is so self-organizing to have enough offspring and the detailed physics involved is at the same time highly favorable for all self-organizing processes including life. This biological theory contrasts with current standard inflation cosmologies. The latter do not perform well in explaining any phenomena of sophisticated structure creation or self-organization. As proteins can only thermodynamically fold by increasing the entropy in the solution around them we suggest for cosmology a condensation nucleus for a universe can form only in a “chaotic ocean” of string-soup or quantum foam if the entropy outside of the nucleus rapidly increases. We derive an interaction potential for 1 to n-dimensional strings or quantum-foams and show that they allow only 1D, 2D, 4D or octonion interactions. The latter is the richest structure and agrees to the E8 symmetry fundamental to particle physics and also compatible with the ten dimensional string theory E8 which is part of the M-theory. Interestingly, any other interactions of other dimensionality can be ruled out using Hurwitz compositional theorem. Crystallization explains also extremely well why we have only one macroscopic reality and where the worldlines of alternative trajectories exist: They are in other planes of the crystal and for energy reasons they crystallize mostly at the same time, yielding a beautiful and stable crystal. This explains decoherence and allows to determine the size of Planck´s quantum h (very small as separation of crystal layers by energy is extremely strong). Ultimate dissolution of real crystals suggests an explanation for dark energy agreeing with estimates for the “big rip”. The halo distribution of dark matter favoring galaxy formation is readily explained by a crystal seed starting with unit cells made of normal and dark matter. That we have only matter and not antimatter can be explained as there may be right handed mattercrystals and left-handed antimatter crystals. Similarly, real crystals are never perfect and we argue that exactly such irregularities allow formation of galaxies, clusters and superclusters. Finally, heuristics from genetics suggest to look for a systems perspective to derive correct vacuum and Higgs Boson energies. KW - heuristics KW - inflation KW - cosmology KW - crystallization KW - crystal growth KW - E8 symmetry KW - Hurwitz theorem KW - evolution KW - Lee Smolin Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-183945 ER - TY - JOUR A1 - Heydarian, Motaharehsadat A1 - Yang, Tao A1 - Schweinlin, Matthias A1 - Steinke, Maria A1 - Walles, Heike A1 - Rudel, Thomas A1 - Kozjak-Pavlovic, Vera T1 - Biomimetic human tissue model for long-term study of Neisseria gonorrhoeae infection JF - Frontiers in Microbiology N2 - Gonorrhea is the second most common sexually transmitted infection in the world and is caused by Gram-negative diplococcus Neisseria gonorrhoeae. Since N. gonorrhoeae is a human-specific pathogen, animal infection models are only of limited use. Therefore, a suitable in vitro cell culture model for studying the complete infection including adhesion, transmigration and transport to deeper tissue layers is required. In the present study, we generated three independent 3D tissue models based on porcine small intestinal submucosa (SIS) scaffold by co-culturing human dermal fibroblasts with human colorectal carcinoma, endometrial epithelial, and male uroepithelial cells. Functional analyses such as transepithelial electrical resistance (TEER) and FITC-dextran assay indicated the high barrier integrity of the created monolayer. The histological, immunohistochemical, and ultra-structural analyses showed that the 3D SIS scaffold-based models closely mimic the main characteristics of the site of gonococcal infection in human host including the epithelial monolayer, the underlying connective tissue, mucus production, tight junction, and microvilli formation. We infected the established 3D tissue models with different N. gonorrhoeae strains and derivatives presenting various phenotypes regarding adhesion and invasion. The results indicated that the disruption of tight junctions and increase in interleukin production in response to the infection is strain and cell type-dependent. In addition, the models supported bacterial survival and proved to be better suitable for studying infection over the course of several days in comparison to commonly used Transwell® models. This was primarily due to increased resilience of the SIS scaffold models to infection in terms of changes in permeability, cell destruction and bacterial transmigration. In summary, the SIS scaffold-based 3D tissue models of human mucosal tissues represent promising tools for investigating N. gonorrhoeae infections under close-to-natural conditions. KW - 3D tissue model KW - small intestinal submucosa scaffold KW - co-culture KW - infection KW - Neisseria gonorrhoeae Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197912 SN - 1664-302X VL - 10 IS - 1740 ER - TY - JOUR A1 - Akhoon, Bashir A. A1 - Gupta, Shishir K. A1 - Tiwari, Sudeep A1 - Rathor, Laxmi A1 - Pant, Aakanksha A1 - Singh, Nivedita A1 - Gupta, Shailendra K. A1 - Dandekar, Thomas A1 - Pandey, Rakesh T1 - C. elegans protein interaction network analysis probes RNAi validated pro-longevity effect of nhr-6, a human homolog of tumor suppressor Nr4a1 JF - Scientific Reports N2 - Protein-protein interaction (PPI) studies are gaining momentum these days due to the plethora of various high-throughput experimental methods available for detecting PPIs. Proteins create complexes and networks by functioning in harmony with other proteins and here in silico network biology hold the promise to reveal new functionality of genes as it is very difficult and laborious to carry out experimental high-throughput genetic screens in living organisms. We demonstrate this approach by computationally screening C. elegans conserved homologs of already reported human tumor suppressor and aging associated genes. We select by this nhr-6, vab-3 and gst-23 as predicted longevity genes for RNAi screen. The RNAi results demonstrated the pro-longevity effect of these genes. Nuclear hormone receptor nhr-6 RNAi inhibition resulted in a C. elegans phenotype of 23.46% lifespan reduction. Moreover, we show that nhr-6 regulates oxidative stress resistance in worms and does not affect the feeding behavior of worms. These findings imply the potential of nhr-6 as a common therapeutic target for aging and cancer ailments, stressing the power of in silico PPI network analysis coupled with RNAi screens to describe gene function. KW - Computer modelling KW - Embryonic induction KW - RNAi Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202666 VL - 9 ER - TY - JOUR A1 - Grebinyk, Anna A1 - Prylutska, Svitlana A1 - Buchelnikov, Anatoliy A1 - Tverdokhleb, Nina A1 - Grebinyk, Sergii A1 - Evstigneev, Maxim A1 - Matyshevska, Olga A1 - Cherepanov, Vsevolod A1 - Prylutskyy, Yuriy A1 - Yashchuk, Valeriy A1 - Naumovets, Anton A1 - Ritter, Uwe A1 - Dandekar, Thomas A1 - Frohme, Marcus T1 - C60 fullerene as an effective nanoplatform of alkaloid Berberine delivery into leukemic cells JF - Pharmaceutics N2 - A herbal alkaloid Berberine (Ber), used for centuries in Ayurvedic, Chinese, Middle-Eastern, and native American folk medicines, is nowadays proved to function as a safe anticancer agent. Yet, its poor water solubility, stability, and bioavailability hinder clinical application. In this study, we have explored a nanosized carbon nanoparticle—C60 fullerene (C60)—for optimized Ber delivery into leukemic cells. Water dispersions of noncovalent C60-Ber nanocomplexes in the 1:2, 1:1, and 2:1 molar ratios were prepared. UV–Vis spectroscopy, dynamic light scattering (DLS), and atomic force microscopy (AFM) evidenced a complexation of the Ber cation with the negatively charged C60 molecule. The computer simulation showed that π-stacking dominates in Ber and C\(_{60}\) binding in an aqueous solution. Complexation with C\(_{60}\) was found to promote Ber intracellular uptake. By increasing C\(_{60}\) concentration, the C\(_{60}\)-Ber nanocomplexes exhibited higher antiproliferative potential towards CCRF-CEM cells, in accordance with the following order: free Ber < 1:2 < 1:1 < 2:1 (the most toxic). The activation of caspase 3/7 and accumulation in the sub-G1 phase of CCRF-CEM cells treated with C\(_{60}\)-Ber nanocomplexes evidenced apoptosis induction. Thus, this study indicates that the fast and easy noncovalent complexation of alkaloid Ber with C\(_{60}\) improved its in vitro efficiency against cancer cells. KW - C60 fullerene KW - Berberine KW - noncovalent nanocomplex KW - UV–Vis KW - DLS and AFM measurements KW - drug release KW - leukemic cells KW - uptake KW - cytotoxicity KW - apoptosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193216 SN - 1999-4923 VL - 11 IS - 11 ER - TY - THES A1 - Segerer, Gabriela T1 - Characterization of cell biological and physiological functions of the phosphoglycolate phosphatase AUM T1 - Charakterisierung zellbiologischer und physiologischer Funktionen der Phosphoglykolat-Phosphatase AUM N2 - Mammalian haloacid dehalogenase (HAD)-type phosphatases are a large and ubiquitous family of at least 40 human members. Many of them have important physiological functions, such as the regulation of intermediary metabolism and the modulation of enzyme activities, yet they are also linked to diseases such as cardiovascular or metabolic disorders and cancer. Still, most of the mammalian HAD phosphatases remain functionally uncharacterized. This thesis reveals novel cell biological and physiological functions of the phosphoglycolate phosphatase PGP, also referred to as AUM. To this end, PGP was functionally characterized by performing analyses using purified recombinant proteins to investigate potential protein substrates of PGP, cell biological studies using the spermatogonial cell line GC1, primary mouse lung endothelial cells and lymphocytes, and a range of biochemical techniques to characterize Pgp-deficient mouse embryos. To characterize the cell biological functions of PGP, its role downstream of RTK- and integrin signaling in the regulation of cell migration was investigated. It was shown that PGP inactivation elevates integrin- and RTK-induced circular dorsal ruffle (CDR) formation, cell spreading and cell migration. Furthermore, PGP was identified as a negative regulator of directed lymphocyte migration upon integrin- and GPCR activation. The underlying mechanisms were analyzed further. It was demonstrated that PGP regulates CDR formation and cell migration in a PLC- and PKC-dependent manner, and that Src family kinase activities are required for the observed cellular effects. Upon integrin- and RTK activation, phosphorylation levels of tyrosine residues 1068 and 1173 of the EGF receptor were elevated and PLCγ1 was hyper-activated in PGP-deficient cells. Additionally, PGP-inactivated lymphocytes displayed elevated PKC activity, and PKC-mediated cytoskeletal remodeling was accelerated upon loss of PGP activity. Untargeted lipidomic analyses revealed that the membrane lipid phosphatidylserine (PS) was highly upregulated in PGP-depleted cells. These data are consistent with the hypothesis that the accumulation of PS in the plasma membrane leads to a pre-assembly of signaling molecules such as PLCγ1 or PKCs that couple the activation of integrins, EGF receptors and GPCRs to accelerated cytoskeletal remodeling. Thus, this thesis shows that PGP can affect cell spreading and cell migration by acting as a PG-directed phosphatase. To understand the physiological functions of PGP, conditionally PGP-inactivated mice were analyzed. Whole-body PGP inactivation led to an intrauterine growth defect with developmental delay after E8.5, resulting in a gradual deterioration and death of PgpDN/DN embryos between E9.5 and E11.5. However, embryonic lethality upon whole-body PGP inactivation was not caused by a primary defect of the (cardio-) vascular system. Rather, PGP inactivated embryos died during the intrauterine transition from hypoxic to normoxic conditions. Therefore, the potential impact of oxygen on PGP-dependent cell proliferation was investigated. Analyses of mouse embryonic fibroblasts (MEFs) generated from E8.5 embryos and GC1 cells cultured under normoxic and hypoxic conditions revealed that normoxia (~20% O2) causes a proliferation defect in PGP-inactivated cells, which can be rescued under hypoxic (~1% O2) conditions. Mechanistically, it was found that the activity of triosephosphate isomerase (TPI), an enzyme previously described to be inhibited by phosphoglycolate (PG) in vitro, was attenuated in PGP-inactivated cells and embryos. TPI constitutes a critical branch point between carbohydrate- and lipid metabolism because it catalyzes the isomerization of the glycolytic intermediates dihydroxyacetone phosphate (DHAP, a precursor of the glycerol backbone required for triglyceride biosynthesis) and glyceraldehyde 3’-phosphate (GADP). Attenuation of TPI activity, likely explains the observed elevation of glycerol 3-phosphate levels and the increased TG biosynthesis (lipogenesis). Analyses of ATP levels and oxygen consumption rates (OCR) showed that mitochondrial respiration rates and ATP production were elevated in PGP-deficient cells in a lipolysis-dependent manner. However under hypoxic conditions (which corrected the impaired proliferation of PGP-inactivated cells), OCR and ATP production was indistinguishable between PGP-deficient and PGP-proficient cells. We therefore propose that the inhibition of TPI activity by PG accumulation due to loss of PGP activity shifts cellular bioenergetics from a pro-proliferative, glycolytic metabolism to a lipogenetic/lipolytic metabolism. Taken together, PGP acts as a metabolic phosphatase involved in the regulation of cell migration, cell proliferation and cellular bioenergetics. This thesis constitutes the basis for further studies of the interfaces between these processes, and also suggests functions of PGP for glucose and lipid metabolism in the adult organism. N2 - Haloazid Dehalogenase (HAD)-Typ Phosphatasen in Säugetieren gehören zu einer großen ubiquitären Proteinfamilie, zu der auch mindestens 40 Phosphatasen, die im menschlichen Organismus vertreten sind, zählen. Eine Vielzahl dieser Phosphatasen hat wichtige physiologische Funktionen beispielsweise als regulatorische Enzyme im Metabolismus. Gleichzeitig werden sie in Verbindung mit Erkrankungen des kardiovaskulären Systems, Stoffwechselstörungen und Krebs gebracht. Dennoch sind die Funktionen vieler Mitglieder dieser Phosphatasen Familie bis heute weitestgehend unbekannt. In der vorliegenden Arbeit wurden die zellbiologischen und physiologischen Funktionen der Phosphoglykolat-Phosphatase PGP, auch AUM genannt, charakterisiert. Zu diesem Zweck wurde mit gereinigtem Enzym nach potenziellen Protein-Substraten von PGP gesucht. Weiterhin wurden zellbiologische Studien mit der spermatogonialen GC1 Zelllinie sowie mit primären Endothelzellen und Lymphozyten durchgeführt. Mit biochemischen Methoden wurden zudem PGP-defiziente Mausembryonen charakterisiert. Es wurde zunächst die Rolle von PGP für RTK- und integrin- induzierte Zellmigration untersucht. Dabei zeigte sich, dass PGP Inaktivierung die Zelladhäsion und Zellmigration steigerte. Gleichzeitig wurde eine vermehrte Bildung von RTK- und integrinvermittelten ringförmigen Plasmamembranausstülpungen, sogenannten Circular Dorsal Ruffles (CDR) auf der dorsalen Zelloberfläche beobachtet. PGP wurde zudem als negativer Regulator integrinund GPCR-induzierter gerichteter Lymphozytenmigration identifiziert. Der zugrundeliegende molekulare Mechanismus wurde näher untersucht. Es konnte gezeigt werden, dass PGP die Bildung von CDRs und die gerichtetete Zellmigration in Abhängigkeit der Phospholipase C- (PLC-), Proteinkinase C- (PKC-) sowie Src Kinase-Aktivität steuert. Nach Integrin- und RTKAktivierung waren die Tyrosinreste 1068 und 1173 des EGF-Rezeptors in PGP-depletierten Zellen vermehrt phosphoryliert und PLCγ1 in diesen Zellen hyperaktiviert. Interessanterweise wurde zudem eine beschleunigte PKC-vermittelte Reorganisation des Zytoskeletts beobachtet. In stimulierten Lymphozyten führte PGP-Inaktivierung zu einer erhöhten PKCAktivität. Durch massenspektrometrische Analysen konnten erhöhte Spiegel des Membranlipids Phosphatidylserin (PS) in PGP-defizienten Zellen nachgewiesen werden. Diese Ergebnisse sind konsistent mit der Hypothese, dass die Anreicherung von PS in der Plasmamembran PGP-defizienter Zellen zu einer Vor-Rekrutierung von Signalproteinen führt, die die Aktivierung von Integrinen, EGF-Rezeptoren und GPCRs mit einer beschleunigten Zytoskelett-Reorganisation verbindet. Hierdurch konnte gezeigt werden, dass PGP durch die Dephosphorylierung von Phosphoglykolat die Zelladhäsion und Zellmigration reguliert. Um die physiologischen Funktionen von PGP zu verstehen, wurden konditional PGPinaktivierte Mäuse untersucht. Die Inaktivierung von PGP im gesamten Organismus führte zu einem Wachstumsdefekt ab Tag E8.5 und dem Tod der Embryonen im Uterus zwischen Tag E9.5 und E11.5. Die beobachtete embryonale Letalität war nicht durch einen Defekt des (kardio-)vaskulären Systems zu erklären. PGP-inaktivierte Embryonen starben zu einem Zeitpunkt, an dem der intrauterine Übergang von einem hypoxischen zu einem normoxischen Millieu stattfindet. Der Einfluss von Sauerstoff wurde deshalb weiter untersucht. Zellwachstumsanalysen unter normoxischen und hypoxischen Bedingungen mit GC1 Zellen und embryonalen Maus-Fibroblasten, die aus E8.5 Embryonen gewonnen wurden zeigten, dass normoxische Bedingungen (~20% O2) einen Wachstumsdefekt PGP-inaktivierter Zellen verursacht, wohingegen dies unter hypoxischen Bedingungen (~1% O2) nicht der Fall war. Mechanistisch konnte gezeigt werden, dass die Aktivität der Triosephosphatisomerase (TPI), ein durch PG in vitro gehemmtes Enzym, in PGP inaktivierten Zellen und Embryonen vermindert war. TPI stellt einen entscheidenden Verzweigungspunkt des Glukose- und Lipidstoffwechsels dar. TPI katalysiert die Isomerisierung der aus der Glykolyse stammenden Intermediate Dihydroxyacetonphosphat (DHAP, eine Vorstufe des für die Triglycerid-Biosynthese benötigten Glycerol-Grundgerüsts) und Glyceraldehyd-3’-phosphat (GADP). Eine Verringerung der TPI-Aktivität in PGPinaktivierten Zellen resultierte in erhöhten Glycerol-3-phosphat Spiegeln und einer gesteigerten Triglycerid-Biosynthese. Die Analyse des zellulären ATP Gehalts und des Sauerstoffverbrauchs bei der mitochondrialen Atmung zeigte, dass sowohl die ATP Produktion als auch die mitochondriale Atmung in Abhängikeit der Lipolyse in PGP-defizienten Zellen erhöht waren. Unter hypoxischen Bedingungen, die zu einer Normalisierung der Zellproliferation führten, wiesen PGP-profiziente und -defiziente Zellen keinen Unterschied bezüglich ATP Produktion und mitochondrialer Atmung auf. Wir vermuten deswegen, dass die Inhibierung der TPI-Aktivität durch PG-Anreicherung aufgrund ausbleibender Hydrolyse durch PGP zu einer Verschiebung des zellulären Energiehaushaltes von Seiten eines pro-proliferativ glykolytischen auf die Seite eines lipogenetisch/lipolytischen Metabolismus führt. Zusammenfassend konnte gezeigt werden, dass PGP als eine metabolische Phosphatase Zellmigration, Zellproliferation wie auch den zellulären Energiehaushalt reguliert. Die vorliegende Arbeit stellt somit die Grundlage für weitere Untersuchungen an der Schnittschnelle dieser zellulären Prozesse dar und lässt auf eine wichtige Rolle von PGP im Glukose- und Lipidstoffwechsel im adulten Organismus schließen. KW - Phosphoglykolatphosphatase KW - Phosphoglykolat-Phosphatase KW - Maus KW - Cytologie KW - Physiologie KW - Phosphatasen Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123847 ER - TY - THES A1 - Romanov, Natalie T1 - Characterizing Variation of Protein Complexes and Functional Modules on a Temporal Scale and across Individuals T1 - Charakterisierung der Variation von Proteinkomplexen und funktionellen Modulen im zeitlichen Kontext und zwischen Individuen N2 - A fundamental question in current biology concerns the translational mechanisms leading from genetic variability to phenotypes. Technologies have evolved to the extent that they can efficiently and economically determine an individual’s genomic composition, while at the same time big data on clinical profiles and diagnostics have substantially accumulated. Genome-wide association studies linking genomic loci to certain traits, however, remain limited in their capacity to explain the cellular mechanisms that underlie the given association. For most associations, gene expression has been blamed; yet given that transcript and protein abundance oftentimes do not correlate, that finding does not necessarily decrypt the underlying mechanism. Thus, the integration of further information is crucial to establish a model that could prove more accurate in predicting genotypic effects on the human organism. In this work we describe the so-called proteotype as a feature of the cell that could provide a substantial link between genotype and phenotype. Rather than looking at the proteome as a set of independent molecules, we demonstrate a consistent modular architecture of the proteome that is driven by molecular cooperativity. Functional modules, especially protein complexes, can be further interrogated for differences between individuals and tackled as imprints of genetic and environmental variability. We also show that subtle stoichiometric changes of protein modules could have broader effects on the cellular system, such as the transport of specific molecular cargos. The presented work also delineates to what extent temporal events and processes influence the stoichiometry of protein complexes and functional modules. The re-wiring of the glycolytic pathway for example is illustrated as a potential cause for an increased Warburg effect during the ageing of the human bone marrow. On top of analyzing protein abundances we also interrogate proteome dynamics in terms of stability and solubility transitions during the short temporal progression of the cell cycle. One of our main observations in the thesis encompass the delineation of protein complexes into respective sub-complexes according to distinct stability patterns during the cell cycle. This has never been demonstrated before, and is functionally relevant for our understanding of the dis- and assembly of large protein modules. The insights presented in this work imply that the proteome is more than the sum of its parts, and primarily driven by variability in entire protein ensembles and their cooperative nature. Analyzing protein complexes and functional modules as molecular reflections of genetic and environmental variations could indeed prove to be a stepping stone in closing the gap between genotype and phenotype and customizing clinical treatments in the future. N2 - Eine fundamentale Frage in der heutigen biologischen Forschung ist durch welche Mechanismen eine gebenene genetische Variation sich in einem Phänotyp äußert. Etliche Technologien können heutzutage effizient und ökonomisch die genomische Komposition eines Individuals mit beispielloser Genaugikeit aufschlüsseln. Gleichzeitig gibt es wesentliche Erfolge und Bemühungen, große Datenmengen von Patienten zu sammeln, sowohl klinische Profile, als auch Diagnosen. Es gibt bereits mehrere genomweite Assoziationsstudien, die auf spezifische genomische Loci hinweisen, die womöglich einem bestimmenten phänotypischen Merkmalen zugrunde liegen. Obwohl für die meisten genetischen Assoziationen, eine veränderte Genexpression oftmals als Ursache diskutiert wird, ist dies wahrscheinlich nur ein Teil des zugrundeliegenden Mechanismus. Wir können dies annehmen, da RNA-Transkripte nicht unbedingt mit ihrem Protein-Produkt korrelieren aufgrund von post-transkriptioneller und translationeller Regulation. Um dementsprechend ein Modell zu etablieren, das die genotypischen Effekte auf den human Organismus akkurat vorhersagen kann, ist eine Integration von mehreren zellulären Informationsschichten notwendig. In der folgenden Arbeit beschreiben wir den sogenannten Proteotyp als ein zelluläres Merkmal, das eine substanzielle Verknüpfung zwischen dem Genotyp und dem Phänotyp eines Individuums schaffen könnte. Statt das Proteom als ein Set unabhängiger Moleküle zu betrachten, zeigen wir eine konsistent moduläre Architektur des Proteoms auf, das durch die molekulare Kooperativität zustande kommt. Funktionelle Module, v.a. Proteinkomplexe, können weiters auf Unterschiede zwischen Individuen untersucht werden, sowie deren Variabilität aufgrund genetischer oder umweltbedingter Ursachen. Wir demonstrieren u.a. auch, dass leichte stöchiometrische Veränderungen in solchen Modulen zu weitläufigen Effekten im zellulären Haushalt führen können, z.B. im Transport von spezifischen Molekülen. Die vorgestellte Arbeit beschreibt allerdings auch inwieweit temporäre Ereignisse und Prozesse die Stöchiometrie von Proteinkomplexen und funktionellen Modulen beeinflussen. Wir zeigen z.B. auf, dass eine Veränderung in der glycolytischen Enzym-Stöchiometrie die Ursache für den Warburgeffekt in gealterten Zellen des humanen Knochenmarks darstellen könnte. Neben der Analyse von Protein-Abundanzen untersucht die vorliegende Arbeit Proteomdynamik auch in Hinblick auf Stabilitäts- und Löslichkeitsveränderungen von Proteine in kürzeren Zeitabläufen wie den Zellzyklus. Wir können dabei feststellen, dass Untereinheiten von größeren Proteinkomplexen verschiedene Stabilitätsmuster aufweisen. Dies ist durchaus eine neue Erkennis, die weittragende Folgen für unser Verständnis des Ab- und Aufbauprozesses von Proteinkomplexen haben könnte. Die Einblicke, die aus dieser Arbeit gewonnen werden können, implizieren in jedem Falle, dass das Proteom mehr als die Summe der Einzelteile darstellt, und hauptsächlich durch die Variabilität von gesamten Proteinensembls und deren Kooperativität bestimmt wird. Proteinkomplexe und funktionelle Module sollten daher als molekulare Reflektionen von genetisch- und umweltbedingter Variation betrachtet werden. Solch ein Perspektivenwechsel könnte damit die Möglichkeit bieten eine mechanistische Verknüpfung von Genotyp und Phänotyp zu gewährleisten, und ein Fundament für zukünftige individuell angepasste klinische Behandlungen darstellen. KW - Proteotype KW - Proteomics Analysis of Complexes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-168139 ER - TY - THES A1 - Krähnke, Martin T1 - Chondrogenic differentiation of bone marrow-derived stromal cells in pellet culture and silk scaffolds for cartilage engineering – Effects of different growth factors and hypoxic conditions T1 - Chondrogene Differenzierung von Stammzellen aus dem Knochenmark in Pelletkultur und Seidenimplantaten für die Knorpelregeneration - Effekte verschiedener Wachstumsfaktoren und hypoxischer Bedingungen N2 - Articular cartilage lesions that occur upon intensive sport, trauma or degenerative disease represent a severe therapeutic problem. At present, osteoarthritis is the most common joint disease worldwide, affecting around 10% of men and 18% of women over 60 years of age (302). The poor self-regeneration capacity of cartilage and the lack of efficient therapeutic treatment options to regenerate durable articular cartilage tissue, provide the rationale for the development of new treatment options based on cartilage tissue engineering approaches (281). The integrated use of cells, biomaterials and growth factors to guide tissue development has the potential to provide functional substitutes of lost or damaged tissues (2,3). For the regeneration of cartilage, the availability of mesenchymal stromal cells (MSCs) or their recruitment into the defect site is fundamental (281). Due to their high proliferation capacity, the possibility to differentiate into chondrocytes and their potential to attract other progenitor cells into the defect site, bone marrow-derived mesenchymal stromal cells (BMSCs) are still regarded as an attractive cell source for cartilage tissue engineering (80). However, in order to successfully engineer cartilage tissue, a better understanding of basic principles of developmental processes and microenvironmental cues that guide chondrogenesis is required. N2 - Verletzungen des Gelenkknorpels, die durch intensiven Sport, Trauma oder degenerative Krankheiten induziert wurden, stellen ein großes therapeutisches Problem dar. Heutzutage ist Arthrose die weltweit häufigste Gelenkerkrankung, die etwa 10% der männlichen und 18% der weiblichen Bevölkerung über 60 Jahre betrifft (302). Die geringe intrinsische Heilungskapazität von Knorpelgewebe und das Fehlen effizienter Behandlungsmethoden, um dauerhaften Gelenkknorpel zu erzeugen, bilden die Grundlage für die Entwicklung neuartiger Behandlungsmethoden auf Basis des Tissue Engineering (281). Hierbei verfügt speziell der integrierte Einsatz von Zellen, Biomaterialien und Wachstumsfaktoren über das Potential zerstörtes oder geschädigtes Gewebe zu ersetzen bzw. die Regeneration von neuem Gewebe zu fördern (2,3). Für die Regeneration von Knorpelgewebe ist vor allem die Verfügbarkeit von mesenchymalen Stammzellen (MSC) und deren Rekrutierung in die Defektzone von großer Bedeutung (281). Aufgrund ihrer hohen Proliferationsrate, der Fähigkeit in Chondrozyten zu differenzieren und des Potentials andere Vorläuferzellen in die Defektzone zu rekrutieren bilden MSCs auch heute noch einen attraktiven Ansatz im Knorpel-Tissue Engineering (80). Eine wichtige Voraussetzung für die erfolgreiche Entwicklung von Knorpelgewebe ist jedoch ein besseres Verständnis der grundlegenden Entwicklungsprozesse und der Einflussfaktoren der Mikroumgebung, die die Chondrogenese regulieren. KW - Hypoxie KW - Knorpelbildung KW - Tissue Engineering KW - Chondrogenesis KW - Hypoxia KW - Tissue Engineering Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192999 ER -