TY - JOUR A1 - Adolfi, Mateus C. A1 - Carreira, Ana C. O. A1 - Jesus, Lázaro W. O. A1 - Bogerd, Jan A1 - Funes, Rejane M. A1 - Schartl, Manfred A1 - Sogayar, Mari C. A1 - Borella, Maria I. T1 - Molecular cloning and expression analysis of dmrt1 and sox9 during gonad development and male reproductive cycle in the lambari fish, Astyanax altiparanae JF - Reproductive Biology and Endocrinology N2 - Background The dmrt1 and sox9 genes have a well conserved function related to testis formation in vertebrates, and the group of fish presents a great diversity of species and reproductive mechanisms. The lambari fish (Astyanax altiparanae) is an important Neotropical species, where studies on molecular level of sex determination and gonad maturation are scarce. Methods Here, we employed molecular cloning techniques to analyze the cDNA sequences of the dmrt1 and sox9 genes, and describe the expression pattern of those genes during development and the male reproductive cycle by qRT-PCR, and related to histology of the gonad. Results Phylogenetic analyses of predicted amino acid sequences of dmrt1 and sox9 clustered A. altiparanae in the Ostariophysi group, which is consistent with the morphological phylogeny of this species. Studies of the gonad development revealed that ovary formation occurred at 58 days after hatching (dah), 2 weeks earlier than testis formation. Expression studies of sox9 and dmrt1 in different tissues of adult males and females and during development revealed specific expression in the testis, indicating that both genes also have a male-specific role in the adult. During the period of gonad sex differentiation, dmrt1 seems to have a more significant role than sox9. During the male reproductive cycle dmrt1 and sox9 are down-regulated after spermiation, indicating a role of these genes in spermatogenesis. Conclusions For the first time the dmrt1 and sox9 were cloned in a Characiformes species. We show that both genes have a conserved structure and expression, evidencing their role in sex determination, sex differentiation and the male reproductive cycle in A. altiparanae. These findings contribute to a better understanding of the molecular mechanisms of sex determination and differentiation in fish. KW - spermatogenesis KW - SOX9 KW - DMRT1 KW - sex differentiation KW - teleostei Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126486 VL - 13 IS - 2 ER - TY - JOUR A1 - Alizadehrad, Davod A1 - Krüger, Timothy A1 - Engstler, Markus A1 - Stark, Holger T1 - Simulating the complex cell design of Trypanosoma brucei and its motility JF - PLOS Computational Biology N2 - The flagellate Trypanosoma brucei, which causes the sleeping sickness when infecting a mammalian host, goes through an intricate life cycle. It has a rather complex propulsion mechanism and swims in diverse microenvironments. These continuously exert selective pressure, to which the trypanosome adjusts with its architecture and behavior. As a result, the trypanosome assumes a diversity of complex morphotypes during its life cycle. However, although cell biology has detailed form and function of most of them, experimental data on the dynamic behavior and development of most morphotypes is lacking. Here we show that simulation science can predict intermediate cell designs by conducting specific and controlled modifications of an accurate, nature-inspired cell model, which we developed using information from live cell analyses. The cell models account for several important characteristics of the real trypanosomal morphotypes, such as the geometry and elastic properties of the cell body, and their swimming mechanism using an eukaryotic flagellum. We introduce an elastic network model for the cell body, including bending rigidity and simulate swimming in a fluid environment, using the mesoscale simulation technique called multi-particle collision dynamics. The in silico trypanosome of the bloodstream form displays the characteristic in vivo rotational and translational motility pattern that is crucial for survival and virulence in the vertebrate host. Moreover, our model accurately simulates the trypanosome's tumbling and backward motion. We show that the distinctive course of the attached flagellum around the cell body is one important aspect to produce the observed swimming behavior in a viscous fluid, and also required to reach the maximal swimming velocity. Changing details of the flagellar attachment generates less efficient swimmers. We also simulate different morphotypes that occur during the parasite's development in the tsetse fly, and predict a flagellar course we have not been able to measure in experiments so far. KW - multiparticle collision dynamics KW - human african trypanosomiasis KW - biology KW - cytoskeleton KW - flow KW - flagellar motility KW - tsetse fly KW - propulsion KW - cytokinesis KW - parasites Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144610 VL - 11 IS - 1 ER - TY - JOUR A1 - Andronic, Joseph A1 - Shirakashi, Ryo A1 - Pickel, Simone U. A1 - Westerling, Katherine M. A1 - Klein, Teresa A1 - Holm, Thorge A1 - Sauer, Markus A1 - Sukhorukov, Vladimir L. T1 - Hypotonic Activation of the Myo-Inositol Transporter SLC5A3 in HEK293 Cells Probed by Cell Volumetry, Confocal and Super-Resolution Microscopy JF - PLoS One N2 - Swelling-activated pathways for myo-inositol, one of the most abundant organic osmolytes in mammalian cells, have not yet been identified. The present study explores the SLC5A3 protein as a possible transporter of myo-inositol in hyponically swollen HEK293 cells. To address this issue, we examined the relationship between the hypotonicity-induced changes in plasma membrane permeability to myo-inositol Pino [m/s] and expression/localization of SLC5A3. Pino values were determined by cell volumetry over a wide tonicity range (100–275 mOsm) in myo-inositol-substituted solutions. While being negligible under mild hypotonicity (200–275 mOsm), Pino grew rapidly at osmolalities below 200 mOsm to reach a maximum of ∼3 nm/s at 100–125 mOsm, as indicated by fast cell swelling due to myo-inositol influx. The increase in Pino resulted most likely from the hypotonicity-mediated incorporation of cytosolic SLC5A3 into the plasma membrane, as revealed by confocal fluorescence microscopy of cells expressing EGFP-tagged SLC5A3 and super-resolution imaging of immunostained SLC5A3 by direct stochastic optical reconstruction microscopy (dSTORM). dSTORM in hypotonic cells revealed a surface density of membrane-associated SLC5A3 proteins of 200–2000 localizations/μm2. Assuming SLC5A3 to be the major path for myo-inositol, a turnover rate of 80–800 myo-inositol molecules per second for a single transporter protein was estimated from combined volumetric and dSTORM data. Hypotonic stress also caused a significant upregulation of SLC5A3 gene expression as detected by semiquantitative RT-PCR and Western blot analysis. In summary, our data provide first evidence for swelling-mediated activation of SLC5A3 thus suggesting a functional role of this transporter in hypotonic volume regulation of mammalian cells. KW - electrolytes KW - isotonic KW - membrane proteins KW - cell membranes KW - hypotonic KW - hypotonic solutions KW - tonicity KW - permeability Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126408 VL - 10 IS - 3 ER - TY - JOUR A1 - Appel, Mirjam A1 - Scholz, Claus-Jürgen A1 - Müller, Tobias A1 - Dittrich, Marcus A1 - König, Christian A1 - Bockstaller, Marie A1 - Oguz, Tuba A1 - Khalili, Afshin A1 - Antwi-Adjei, Emmanuel A1 - Schauer, Tamas A1 - Margulies, Carla A1 - Tanimoto, Hiromu A1 - Yarali, Ayse T1 - Genome-Wide Association Analyses Point to Candidate Genes for Electric Shock Avoidance in Drosophila melanogaster JF - PLoS ONE N2 - Electric shock is a common stimulus for nociception-research and the most widely used reinforcement in aversive associative learning experiments. Yet, nothing is known about the mechanisms it recruits at the periphery. To help fill this gap, we undertook a genome-wide association analysis using 38 inbred Drosophila melanogaster strains, which avoided shock to varying extents. We identified 514 genes whose expression levels and/or sequences covaried with shock avoidance scores. We independently scrutinized 14 of these genes using mutants, validating the effect of 7 of them on shock avoidance. This emphasizes the value of our candidate gene list as a guide for follow-up research. In addition, by integrating our association results with external protein-protein interaction data we obtained a shock avoidance- associated network of 38 genes. Both this network and the original candidate list contained a substantial number of genes that affect mechanosensory bristles, which are hairlike organs distributed across the fly's body. These results may point to a potential role for mechanosensory bristles in shock sensation. Thus, we not only provide a first list of candidate genes for shock avoidance, but also point to an interesting new hypothesis on nociceptive mechanisms. KW - functional analysis KW - disruption project KW - natural variation KW - complex traits KW - networks KW - behavior KW - flies KW - temperature KW - genetics KW - painful Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-152006 VL - 10 IS - 5 ER - TY - JOUR A1 - Basset, Yves A1 - Cizek, Lukas A1 - Cuénoud, Philippe A1 - Didham, Raphael K. A1 - Novotny, Vojtech A1 - Ødegaard, Frode A1 - Roslin, Tomas A1 - Tishechkin, Alexey K. A1 - Schmidl, Jürgen A1 - Winchester, Neville N. A1 - Roubik, David W. A1 - Aberlenc, Henri-Pierre A1 - Bail, Johannes A1 - Barrios, Hector A1 - Bridle, Jonathan R. A1 - Castaño-Meneses, Gabriela A1 - Corbara, Bruno A1 - Curletti, Gianfranco A1 - da Rocha, Wesley Duarte A1 - De Bakker, Domir A1 - Delabie, Jacques H. C. A1 - Dejean, Alain A1 - Fagan, Laura L. A1 - Floren, Andreas A1 - Kitching, Roger L. A1 - Medianero, Enrique A1 - de Oliveira, Evandro Gama A1 - Orivel, Jerome A1 - Pollet, Marc A1 - Rapp, Mathieu A1 - Ribeiro, Servio P. A1 - Roisin, Yves A1 - Schmidt, Jesper B. A1 - Sørensen, Line A1 - Lewinsohn, Thomas M. A1 - Leponce, Maurice T1 - Arthropod Distribution in a Tropical Rainforest: Tackling a Four Dimensional Puzzle JF - PLoS ONE N2 - Quantifying the spatio-temporal distribution of arthropods in tropical rainforests represents a first step towards scrutinizing the global distribution of biodiversity on Earth. To date most studies have focused on narrow taxonomic groups or lack a design that allows partitioning of the components of diversity. Here, we consider an exceptionally large dataset (113,952 individuals representing 5,858 species), obtained from the San Lorenzo forest in Panama, where the phylogenetic breadth of arthropod taxa was surveyed using 14 protocols targeting the soil, litter, understory, lower and upper canopy habitats, replicated across seasons in 2003 and 2004. This dataset is used to explore the relative influence of horizontal, vertical and seasonal drivers of arthropod distribution in this forest. We considered arthropod abundance, observed and estimated species richness, additive decomposition of species richness, multiplicative partitioning of species diversity, variation in species composition, species turnover and guild structure as components of diversity. At the scale of our study (2km of distance, 40m in height and 400 days), the effects related to the vertical and seasonal dimensions were most important. Most adult arthropods were collected from the soil/litter or the upper canopy and species richness was highest in the canopy. We compared the distribution of arthropods and trees within our study system. Effects related to the seasonal dimension were stronger for arthropods than for trees. We conclude that: (1) models of beta diversity developed for tropical trees are unlikely to be applicable to tropical arthropods; (2) it is imperative that estimates of global biodiversity derived from mass collecting of arthropods in tropical rainforests embrace the strong vertical and seasonal partitioning observed here; and (3) given the high species turnover observed between seasons, global climate change may have severe consequences for rainforest arthropods. KW - trees KW - species richness KW - beta-diveristy KW - strategy KW - turnover KW - similarity KW - biodiversity KW - specialization KW - herbivorous insects KW - assemblages Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136393 VL - 10 IS - 12 ER - TY - JOUR A1 - Brill, Martin F. A1 - Meyer, Anneke A1 - Roessler, Wolfgang T1 - It takes two—coincidence coding within the dual olfactory pathway of the honeybee JF - Frontiers in Physiology N2 - To rapidly process biologically relevant stimuli, sensory systems have developed a broad variety of coding mechanisms like parallel processing and coincidence detection. Parallel processing (e.g., in the visual system), increases both computational capacity and processing speed by simultaneously coding different aspects of the same stimulus. Coincidence detection is an efficient way to integrate information from different sources. Coincidence has been shown to promote associative learning and memory or stimulus feature detection (e.g., in auditory delay lines). Within the dual olfactory pathway of the honeybee both of these mechanisms might be implemented by uniglomerular projection neurons (PNs) that transfer information from the primary olfactory centers, the antennal lobe (AL), to a multimodal integration center, the mushroom body (MB). PNs from anatomically distinct tracts respond to the same stimulus space, but have different physiological properties, characteristics that are prerequisites for parallel processing of different stimulus aspects. However, the PN pathways also display mirror-imaged like anatomical trajectories that resemble neuronal coincidence detectors as known from auditory delay lines. To investigate temporal processing of olfactory information, we recorded PN odor responses simultaneously from both tracts and measured coincident activity of PNs within and between tracts. Our results show that coincidence levels are different within each of the two tracts. Coincidence also occurs between tracts, but to a minor extent compared to coincidence within tracts. Taken together our findings support the relevance of spike timing in coding of olfactory information (temporal code). KW - olfaction KW - mushroom body KW - insect KW - coincidence KW - multi-electrode-recording KW - antennal lobe Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126179 VL - 6 IS - 208 ER - TY - THES A1 - Brockmann, Markus T1 - Inhibition von Aurora-A als neue Therapiestrategie gegen MYCN-amplifizierte Neuroblastome T1 - Inhibition of Aurora-A as a novel therapeutic strategy against MYCN-amplified Neuroblastoma N2 - Im Neuroblastom ist die Amplifikation des MYCN-Gens, das für den Transkriptionsfaktor N-Myc kodiert, der klinisch bedeutendste Faktor für eine schlechte Prognose. Als Mitglied der onkogenen Myc-Familie induziert N-Myc die Expression von Genen, die in vielen biologischen Prozessen wie Metabolismus, Zellzyklusprogression, Zellwachstum und Apoptose eine wichtige Rolle spielen. Die Deregulation der MYCN-Expression führt zu einem charakteristischen Genexpressionsprofil und einem aggressiven Phenotyp in den Tumorzellen. In normalen neuronalen Vorläuferzellen wird N-Myc gewöhnlich sehr schnell proteasomal abgebaut. Während der Mitose wird N-Myc an Serin 62 phosphoryliert. Diese Phosphorylierung dient als Erkennungssignal für die Kinase GSK3β, die die Phosphorylierung an Threonin 58 katalysiert. Das Phosphodegron wird von Fbxw7, einer Komponente des E3-Ubiquitinligase-Komplex SCFFbxw7, erkannt. Die anschließende Ubiquitinierung induziert den proteasomalen Abbau des Proteins. Die Reduktion der N-Myc–Proteinlevel ermöglicht den neuronalen Vorläuferzellen den Austritt aus dem Zellzyklus und führt zu einer terminalen Differenzierung. In einem shRNA Screen konnte AURKA als essentielles Gen für die Proliferation MYCN-amplifizierter Neuroblastomzellen identifiziert werden. Eine Aurora-A–Depletion hatte jedoch keinen Einfluss auf das Wachstum nicht-amplifizierter Zellen. Während dieser Doktorarbeit konnte gezeigt werden, dass Aurora-A speziell den Fbxw7-vermittelten Abbau verhindert und dadurch N-Myc stabilisiert. Für die Stabilisierung ist zwar die Interaktion der beiden Proteine von entscheidender Bedeutung, überraschenderweise spielt die Kinaseaktivität von Aurora-A jedoch keine Rolle. Zwei spezifische Aurora-A–Inhibitoren, MLN8054 und MLN8237, sind allerdings in der Lage, nicht nur die Kinaseaktivität zu hemmen, sondern auch die N-Myc-Proteinlevel zu reduzieren. Beide Moleküle induzieren eine Konformationsänderung in der Kinasedomäne von Aurora-A. Diese ungewöhnliche strukturelle Veränderung hat zur Folge, dass der N-Myc/Aurora-A–Komplex dissoziiert und N-Myc mit Hilfe von Fbxw7 proteasomal abgebaut werden kann. In MYCN-amplifizierten Zellen führt diese Reduktion an N-Myc zu einem Zellzyklusarrest in der G1-Phase. Die in vitro Daten konnten in einem transgenen Maus-Modell für das MYCN-amplifizierte Neuroblastom bestätigt werden. Die Behandlung mit MLN8054 und MLN8237 führte in den Tumoren ebenfalls zu einer N-Myc-Reduktion. Darüber hinaus konnte ein prozentualer Anstieg an differenzierten Zellen, die vollständige Tumorregression in der Mehrzahl der Neuroblastome und eine gesteigerte Lebenserwartung beobachtet werden. Insgesamt zeigen die in vitro und in vivo Daten, dass die spezifischen Aurora-A–Inhibitoren ein hohes therapeutisches Potential gegen das MYCN-amplifizierte Neuroblastom besitzen. N2 - Amplification of MYCN, encoding the transcription factor N-Myc, is one of the strongest clinical predictors of poor prognosis in neuroblastoma. As a member of the oncogenic Myc family, N-Myc activates genes that are involved in several biological processes like metabolism, cell cycle progression, cell growth and apoptosis. Deregulation of MYCN expression leads to a distinct gene expression profile and an aggressive phenotype in neuroblastoma cells. In normal neuronal progenitor cells, N-Myc is rapidly degraded by the ubiquitin-proteasome system. N-Myc degradation is controlled by two phospho-sites. During mitosis, Cyclin B/Cdk1 phosphorylates N-Myc at serine 62, which primes the protein for a second phosphorylation at threonine 58 via GSK3β. This phospho-degron provides a recognition site for Fbxw7, an F-box protein of the E3-Ligase complex SCFFbxw7, leading to destabilisation of the N-Myc protein. Mitotic degradation of the N-Myc protein allows progenitor cells to exit the cell cycle and enables terminal differentiation. Our group had previously identified AURKA as a gene that is required for cell growth in MYCN-amplified neuroblastoma cells but not essential for cells lacking MYCN. Here, we show that Aurora-A counteracts the Fbxw7-mediated degradation, and that the interaction between Aurora-A and N-Myc is cruical for N-Myc stabilization. Surprisingly, Aurora-A stabilizes the transcription factor in a kinase-independent manner. Interestingly, two Aurora-A-Inhibitors, MLN8054 and MLN8237, inhibit the kinase activity but also destabilize the N-Myc protein. These inhibitors induce an unusual conformation of the kinase domain and resulting in the dissociation of the N-Myc/Aurora-A complex. We demonstrate that the disruption of the complex promotes Fbxw7-mediated degradation of N-Myc. Inhibitor treatment in neuroblastoma cells leads to a cell cycle arrest in G1-phase. In a transgenic mouse model of MYCN-driven neuroblastoma, treatment causes downregulation of N-Myc protein levels, differentiation of the tumor cells and complete tumor regression in the majority of tumors. Consistent with the tumor reduction, treatment with MLN8054 and MLN8234 results in an extension of survival of the transgenic mice. Collectively, these results demonstrate that the Aurora-A–Inhibitors MLN8054 and MLN8237 are potential therapeutics against MYCN-amplified Neuroblastoma. KW - N-Myc KW - Neuroblastoma KW - Therapie KW - Neuroblastom KW - MYCN-amplified KW - Therapy KW - Aurora-A Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-135951 ER - TY - THES A1 - Bruttel, Valentin Stefan T1 - Soluble HLA-G binds to dendritic cells which likely suppresses anti-tumour immune responses in regional lymph nodes in ovarian carcinoma T1 - Lösliches HLA-G wird von dendritischen Zellen gebunden, was beim Ovarialkarzinom zur Hemmung von Immunraktionen in regionalen Lymphknoten führen kann N2 - Zusammenfassung Einleitung HLA-G, ein nicht-klassisches HLA bzw. MHC Klasse Ib Molekül, kann sowohl als membrangebundenes als auch als lösliches Molekül verschiedenste Immunzellpopulationen effektiv inhibieren. Unter physiologischen Bedingungen wird HLA-G vor allem in der Plazenta exprimiert, wo es dazu beiträgt den semiallogenen Embryo vor einer Abstoßung durch das mütterliche Immunsystem zu beschützen. Außerdem wird HLA-G in einer Vielzahl von Tumoren wie zum Beispiel in Ovarialkarzinomen überexprimiert. Ziel dieser Arbeit war es besonders die Rolle von löslichem HLA-G im Ovarialkarzinom und die Expression von HLA-G in verschiedenen Subtypen des Ovarialkarzinoms genauer zu untersuchen. Ergebnisse Anhand eines Tissue Microarrays wurde bestätigt dass HLA-G unter physiologischen Bedingungen nur in sehr wenigen Geweben wie Plazenta oder Testes exprimiert wird. Außerdem wurden erstmals auch im Nebennierenmark hohe Expressionslevel detektiert. Im Gegensatz zur physiologischen Expression wurde HLA-G in serösen, muzinösen, endometrioiden und Klarzellkarzinomen und somit in Tumoren aller untersuchten Subtypen des Ovarialkarzinoms detektiert. Am häufigsten war HLA-G in hochgradigen serösen Karzinomen überexprimiert. Hier konnte gezeigt werden dass auf Genexpressionslevel in Ovarialkarzinomen die Expression des immunsuppressiven HLA-G mit der Expression von klassischen MHC Molekülen wie HLA-A, -B oder -C hochsignifikant korreliert. Außerdem konnte in Aszitesproben von Patientinnen mit Ovarialkarzinomen hohe Konzentrationen von löslichem HLA-G nachgewiesen werden. Auch auf metastasierten Tumorzellen in regionalen Lymphknoten war HLA-G nachweisbar. Überraschenderweise wurde aber besonders viel HLA-G auf Dendritischen Zellen in Lymphknoten detektiert. Da in Monozyten und Dendritischen Zellen von gesunden Spendern durch IL-4 oder IL-10 im Gegensatz zu Literatur keine Expression von HLA-G induzierbar war, untersuchten wir ob Dendritische Zellen lösliches HLA-G binden. Es konnte gezeigt werden, dass besonders Dendritische Zellen die in Gegenwart von IL-4, IL-10 und GM-CSF aus Monozyten generiert wurden (DC-10) effektiv lösliches HLA-G über ILT Rezeptoren binden. In Abhängigkeit von ihrer Beladung mit HLA-G hemmen auch fixierte DC-10 Zellen noch die Proliferation von zytotoxischen CD8+ T Zellen. Zudem wurden regulatorische T Zellen induziert. Schlussfolgerungen Besonders in den am häufigsten diagnostizierten hochgradigen serösen Ovarialkarzinomen ist HLA-G in den meisten Fällen überexprimiert. Durch die Expression immunsuppressiver MHC Klasse Ib Moleküle wie HLA-G können wahrscheinlich auch Tumore wachsen, die noch klassische MHC Moleküle exprimieren und aufgrund ihrer Mutationslast eigentlich vom Immunsystem erkannt und eliminiert werden müssten. Lösliches HLA-G könnte zudem lokal Immunantworten gegen Tumorantigene unterdrücken indem es an Dendritische Zellen in regionalen Lymphknoten bindet. Diese Zellen präsentieren nomalerweise zytotoxischen T Zellen Tumorantigene und spielen daher eine entscheidende Rolle in der Entstehung von protektiven Immunantworten. Mit löslichem HLA-G beladene Dendritische Zellen hemmen jedoch die Proliferation von CD8+ T Zellen und induzieren regulatorische T Zellen. Dadurch könnten Ovarialkarzinome “aus der Ferne” auch in metastasenfreien Lymphknoten die Entstehung von gegen den Tumor gerichteten Immunantworten unterdrücken. Dieser erstmals beschriebene Mechanismus könnte auch in anderen malignen Erkrankungen eine Rolle spielen, da lösliches HLA-G in einer Vielzahl von Tumorindikationen nachgewiesen wurde. N2 - Abstract Background HLA-G is a non-classical MHC class I molecule which exerts strong immunosuppressive effects on various immune cells. Several membrane-bound and soluble isoforms are known. Physiologically, HLA-G is predominantly expressed in the placenta, where it contributes to protecting the semi-allogeneic embryo from rejection by the maternal immune system. However, HLA-G is also often upregulated during tumourigenesis, such as in ovarian cancer. The aim of this thesis is to investigate how soluble HLA-G may contribute to local immunosuppression in ovarian carcinomas, and to characterize HLA-G expression in different ovarian carcinoma subtypes and metastases. Results As reported by others, physiological HLA-G expression is restricted to few tissues, such as placenta and testes. Here, HLA-G was also detected in the medulla of the adrenal gland. In contrast, HLA-G expression was frequently detected in tumours of all assessed subtypes of ovarian carcinomas (serous, mucinous, endometrioid and clear cell). Highest expression levels were detected in high-grade serous carcinomas. In primary tumours, expression of HLA-G correlated with expression of classical MHC class I molecules HLA-A, -B and -C. Surprisingly, high levels of HLA-G were also detected on dendritic cells in local lymph nodes. As no expression of HLA-G was inducible in monocytes or dendritic cells from healthy donors in response to IL-10 or IL-4, we speculated that tumour-derived soluble HLA-G might be transferred to dendritic cells via the lymphatic system. Accordingly, high levels of tumour-derived soluble HLA-G were detected in ovarian cancer ascites samples. In vitro, dendritic cells expanded in the presence of IL-4, IL-10 and GM-CSF (DC-10) were particularly prone to binding high amounts of soluble HLA-G via ILT receptors. Furthermore, HLA-G loaded DC-10 cells inhibited the proliferation of CD8 effector cells and induced regulatory T cells, even when the DC-10 cells had been fixed with paraformaldehyde. Conclusion The immunosuppressive molecule HLA-G is overexpressed in high-grade serous ovarian carcinomas, which account for the majority of ovarian cancers. In particular tumours with a high mutational burden and intact expression of classical, immunogenic MHC class Ia molecules may use HLA-G to escape from immunosurveillance. Additionally, tumour-derived soluble HLA-G may inhibit adaptive immune responses by binding to dendritic cells in local lymph nodes. Dendritic cells usually play a decisive role in the initiation of adaptive anti-tumour immune responses by presenting tumour antigens to cytotoxic T cells. In contrast, dendritic cells loaded with soluble HLA-G inhibit the proliferation of effector T cells and promote the induction of regulatory T cells. Thus, soluble HLA-G that is transferred to dendritic cells via lymphatic vessels may enable ovarian carcinomas to remotely suppress anti-tumour immune responses in local lymph nodes. This novel immune-escape mechanism may also exist in other solid tumours that express HLA-G. KW - HLA-G KW - HLA-G KW - Dendritische Zelle KW - Eierstocktumor KW - ovarian cancer KW - ovarian carcinoma KW - transfer KW - dendritic cells KW - immune escape Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-127252 ER - TY - THES A1 - Czakai, Kristin Bernadette T1 - Interaktionen des humanpathogenen Pilzes Aspergillus fumigatus mit dem angeborenen Immunsystem und Thrombozyten T1 - Interaction of the human pathogenic mold Aspergillus fumigatus with the innate immune system and platelets N2 - Pilze sind in unserer Umwelt allgegenwärtig und besiedeln im Fall von Candida albicans (C. albicans) sogar bei über 50% der Menschen die Schleimhäute, während Sporen von Aspergillus fumigatus (A. fumigatus) täglich über die Atmung in die Lunge des Menschen gelangen. Dennoch sind Erkrankungen, die durch diese zwei Pilze ausgelöst werden, bei gesunden Menschen selten. Ist jedoch das Immunsystem beeinträchtigt, können diese Pilze zu systemischen und damit lebensbedrohlichen Erkrankungen wie der invasiven Aspergillose und der systemischen Candidiasis führen. Für eine Verbesserung der Behandlung solcher Infektionen ist das genaue Verständnis der Immunabwehrmechanismen entscheidend. Da A. fumigatus über die Lunge in den Körper gelangt, wurden in dieser Arbeit die häufigsten Immunzellen der Lunge, die Makrophagen, und deren Immunantwort auf A. fumigatus untersucht. Parallel hierzu wurden dendritische Zellen (DCs) verwendet, die als Brücke zwischen dem angeborenen und adaptiven Immunsystem wirken. Ein besonderes Augenmerk wurde hierbei auf A. fumigatus induzierte Genexpressionsänderungen und deren Regulationsmechanismen gelegt. Dabei wurden kurze, regulatorische RNAs, die sogenannten miRNAs, untersucht, die eine wichtige Rolle in der post-transkriptionalen Genregulation spielen. Bislang ist nur wenig über die miRNA-abhängigen Genregulationen in DCs, die auf eine Infektion mit A. fumigatus oder C. albicans reagieren, bekannt. Um alle durch A. fumigatus und C. albicans regulierten miRNAs zu identifizieren, wurden DCs mit A. fumigatus und C. albicans ko-kultiviert und anschließend eine Komplettsequenzierung der kurzen RNAs durchgeführt. Die Pilz-spezifische Induktion der miRNA-Regulation wurde zudem mit der miRNA-Regulation durch den bakteriellen Zellwandbestandteil Lipopolysaccharid verglichen. Durch die Stimulation mit Keimschläuchen von A. fumigatus wurden die miRNAs miR-132-3p/5p, miR-155-5p, miR129-2-3p, miR-129-5p, miR-212-3p/5p und miR-9-5p in DCs induziert. Diese wurden ebenfalls durch C. albicans induziert, zudem noch die miRNAs miR-147a und miR-147b. Spezifisch für A. fumigatus war die Regulation der miR-129-2-3p. Neben dem miRNA-Profiling wurde auch das mRNA-Transkriptom über Microarrays analysiert und dadurch 18 potentielle Zielgene der Pilz-induzierten miRNAs identifiziert. Neben den Elementen der Translationsregulation wurden auch die Transkriptionsfaktoren untersucht. Als einziger unter den 60 regulierten Transkriptionsfaktoren zeigte KLF4 eine veränderte Expressionsrichtung in DCs, die mit Pilzen oder LPS behandelt waren. Während die Stimulation mit LPS die Expression von KLF4 induzierte, wurde es durch die Pilze A. fumigatus und C. albicans reprimiert. In einer Untersuchung der unterschiedlichen A. fumigatus-Rezeptoren, wurde deren Einfluss auf die KLF4-Regulation gezeigt. Während TLR4-Liganden KLF4 induzierten, führten Liganden, die an die Rezeptoren TLR2/TLR1 und Dectin-1 binden, zu einer Reduktion von KLF4. Nach einem erfolgreich etablierten KLF4-knock-down mittels RNA-Interferenz wurden KLF4-Zielgene untersucht. Während kein bzw. nur ein geringer Effekt auf die Genexpression von CCL2, RANTES, CXCL10 und TNF beobachtet wurde, sorgte der KLF4 knock-down für eine hoch signifikante Reduktion der IL6-Genexpression in LPS-stimulierten DCs. Um die KLF4-Regulation weiter zu untersuchen, wurde zudem eine weitere Zellpopulation des angeborenen Immunsystems, die Makrophagen, verwendet. Auch hier wurde die Immunantwort gegen A. fumigatus analysiert. Zudem wurde die Rolle der Thrombozyten als Immunmediatoren betrachtet. Zuerst wurde ein Zytokinprofil des plättchenreichen Plasmas (PRP), das mit A. fumigatus stimuliert wurde, erstellt. In diesem konnte nur RANTES in hoher Konzentration nachgewiesen werden. Daraufhin wurde der Einfluss von PRP auf die Reifung von DCs, die Phagozytosefähigkeit von Makrophagen und DCs sowie der Einfluss von DCs und Makrophagen auf die metabolische Aktivität von A. fumigatus in An- und Abwesenheit von plättchenreichem Plasma untersucht. Es konnte eine gering verstärkte Reifung der DCs durch PRP gezeigt werden. Isolierte Thrombozyten konnten die Phagozytose von DCs steigern, während Makrophagen durch PRP verstärkt Konidien phagozytierten. In einem genomweiten Transkriptomprofiling wurde die Immunantwort von DCs und Makrophagen verglichen. Zudem wurde untersucht, wie PRP die Immunantwort dieser Immunzellen beeinflusst. Es wurden 2 bzw. 24 Gene identifiziert, die signifikant in A. fumigatus-stimulierten DCs und Makrophagen reguliert waren. Hierbei wurde gezeigt, dass KLF4 durch die Zugabe von PRP herabreguliert wurde. Das zuvor beschriebene Zielgen IL6 wurde durch PRP in A. fumigatus-stimulierten DCs gegenüber stimulierten DCs ohne PRP deutlich reduziert, wodurch sich eine immunmodulatorische Fähigkeit des PRP zeigte. Die Induktion von IL-6, weiteren Zytokinen und der Reifemarker durch A. fumigatus in DCs wurden zudem in einem Booleschen Modell simuliert. Dieses Modell soll in Zukunft Vorhersagen über experimentelle Ergebnisse und dadurch eine optimale Versuchsvorbereitung ermöglichen. N2 - Fungi are ubiquitously distributed and around 50% of human mucosae are colonized by Candida albicans. Spores of Aspergillus fumigatus, called conidia, reach the human lung by inhalation of normal air. Still, fungi normally do not cause severe diseases in healthy individuals. Immunosuppression, however, predisposes to systematic and therefore life-threatening infection like invasive aspergillosis and systemic candidiasis. The treatment of those infections can only be improved by a detailed insight in immune defense mechanisms. The most prominent cell type in the lung, the location where A. fumigatus conidia can germinate and grow into tissue, are macrophages. Furthermore, the immune response of DCs that bridge innate and adaptive immunity was compared to macrophages. The main focus was on A. fumigatus induced changes in gene expression and their regulatory mechanisms. Especially the regulation of small, regulatory RNAs, called miRNAs, that are important in the post-transcriptional regulation of gene expression, was examined. So far, little is known about miRNA regulations in DCs, confronted with A. fumigatus or C. albicans. Therefore a complete sequencing of small RNAs was performed to discover all regulated miRNAs. The fungi-induced regulation was compared to DCs, stimulated with the bacterial cell membrane component lipopolysaccharide (LPS). An A. fumigatus and C. albicans dependent regulation of miR-132-3p/5p, miR-155-5p, miR129-2-3p, miR-129-5p, miR-212-3p/5p and miR-9-5p was observed. In C. albicans simulated DCs miR-147a and miR-147b were additionally regulated, whereas miR-129-2-3p was specifically regulated by A. fumigatus. Furthermore a genome wide transcriptome profiling was performed and 18 potential miRNA targets were identified. Beside post-transcriptional regulators of gene expression, an analysis of transcriptional regulators, called transcription factors, was conducted. The transcription factor KLF4 was identified as the only of all 60 differentially regulated transcription factors that was oppositely regulated comparing fungi and LPS. KLF4 was induced by LPS, but strongly down-regulated by A. fumigatus and C. albicans stimulation. Specific Toll-like receptor 4 activation by LPS and ultra-pure LPS induced KLF4. However, ligands to TLR2/TLR1 and Dectin-1 significantly reduced KLF4 mRNA and protein. A KLF4 knock-down by RNA interference was established to analyze KLF4 target genes. Little or no effect was observed on the expression of CCL2, RANTES, CXCL10 and TNF. However, KLF4 knock down induced a significant reduction of IL6 gene expression and IL-6 release by LPS treated DCs. To further examine the KLF4 regulation another cell type of the innate immune system, called macrophages, was used. The A. fumigatus-induced immune response of macrophages was compared to DCs. Furthermore, the role of platelets as immune mediators was examined. At first, a cytokine profile of untreated and A. fumigatus stimulated platelet-rich plasma was performed. RANTES was identified as the only detectable cytokine. Then the influence of PRP on DC maturation, DC and macrophages phagocytosis as well as the metabolic activity of A. fumigatus was determined. Only a weak, but still significant, influence of PRP on DCs maturation induced by A. fumigatus was observed. In the analysis of phagocytosis of A. fumigatus conidia, DCs and macrophages were reacting differently to the addition of PRP and isolated platelets. Isolated platelets were able to enhance the phagocytosis of DCs. On the other hand, PRP and plasma without platelets increased phagocytosis of macrophages. In a genome wide approach the immune response of DCs and macrophages was compared and additionally examined, if PRP alters the DC and macrophage gene expression. PRP induced a significant regulation of 2 and 24 genes of A. fumigatus treated DCs and macrophages. Furthermore, an influence of PRP on the KLF4 expression was monitored. The previously described KLF4 target gene IL6 was significantly down-regulated in PRP and A. fumigatus stimulated DCs and macrophages, compared to A. fumigatus stimulated cells. In conclusion, PRP has only a weak but detectable influence on cell function and gene expression. Furthermore a Boolean model was established to analyze the influence of A. fumigatus stimulation on the cytokine release, especially of IL-6, IL-1B and TNF, and the induction of maturation markers. This model will be used for predictions and optimizations of experimental settings. KW - Aspergillus fumigatus KW - Immunsystem KW - Thrombozyt KW - angeborenes Immunsystem Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-117496 ER - TY - JOUR A1 - Dandekar, Thomas A1 - Eisenreich, Wolfgang T1 - Host-adapted metabolism and its regulation in bacterial pathogens JF - Frontiers in Cellular and Infection Microbiology N2 - No abstract available. KW - bacterial pathogens KW - enteric pathogens KW - metabolism KW - host-pathogen adaption KW - isotopolog profiling Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-196876 SN - 2235-2988 VL - 5 IS - 28 ER - TY - JOUR A1 - Dandekar, Thomas A1 - Fieselmann, Astrid A1 - Fischer, Eva A1 - Popp, Jasmin A1 - Hensel, Michael A1 - Noster, Janina T1 - Salmonella - how a metabolic generalist adopts an intracellular lifestyle during infection JF - Frontiers in Cellular and Infection Microbiology N2 - The human-pathogenic bacterium Salmonella enterica adjusts and adapts to different environments while attempting colonization. In the course of infection nutrient availabilities change drastically. New techniques, "-omics" data and subsequent integration by systems biology improve our understanding of these changes. We review changes in metabolism focusing on amino acid and carbohydrate metabolism. Furthermore, the adaptation process is associated with the activation of genes of the Salmonella pathogenicity islands (SPIs). Anti-infective strategies have to take these insights into account and include metabolic and other strategies. Salmonella infections will remain a challenge for infection biology. KW - enterica serovar Typhimurium KW - bacterial invasion KW - mouse model KW - defenses KW - regulation KW - "-omics" KW - virulence KW - Salmonella-containing vacuole (SCV) KW - metabolism KW - nitric oxide Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-149029 VL - 4 IS - 191 ER - TY - JOUR A1 - Degen, Tobias A1 - Hovestadt, Thomas A1 - Mitesser, Oliver A1 - Hölker, Franz T1 - High female survival promotes evolution of protogyny and xexual conflict JF - PLoS ONE N2 - Existing models explaining the evolution of sexual dimorphism in the timing of emergence (SDT) in Lepidoptera assume equal mortality rates for males and females. The limiting assumption of equal mortality rates has the consequence that these models are only able to explain the evolution of emergence of males before females, i.e. protandry-the more common temporal sequence of emergence in Lepidoptera. The models fail, however, in providing adaptive explanations for the evolution of protogyny, where females emerge before males, but protogyny is not rare in insects. The assumption of equal mortality rates seems too restrictive for many insects, such as butterflies. To investigate the influence of unequal mortality rates on the evolution of SDT, we present a generalised version of a previously published model where we relax this assumption. We find that longer life-expectancy of females compared to males can indeed favour the evolution of protogyny as a fitness enhancing strategy. Moreover, the encounter rate between females and males and the sex-ratio are two important factors that also influence the evolution of optimal SDT. If considered independently for females and males the predicted strategies can be shown to be evolutionarily stable (ESS). Under the assumption of equal mortality rates the difference between the females' and males' ESS remains typically very small. However, female and male ESS may be quite dissimilar if mortality rates are different. This creates the potential for an 'evolutionary conflict' between females and males. Bagworm moths (Lepidoptera: Psychidae) provide an exemplary case where life-history attributes are such that protogyny should indeed be the optimal emergence strategy from the males' and females' perspectives: (i) Female longevity is considerably larger than that of males, (ii) encounter rates between females and males are presumably low, and (iii) females mate only once. Protogyny is indeed the general mating strategy found in the bagworm family. KW - mortality rates KW - bagworms Lepidoptera KW - size dimorphism KW - mating success KW - life span KW - armyworm Lepidoptera KW - adaptive growth KW - males emerge KW - protandry KW - butterflies Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143586 VL - 10 IS - 3 ER - TY - THES A1 - Dusik, Verena T1 - Immunhistochemische und funktionelle Charakterisierung der Mitogen-aktivierten Proteinkinase p38 in der inneren Uhr von Drosophila melanogaster T1 - Immunhistochemical and functional characterisation of the mitogen-activated protein kinase p38 in the endogenous clock of Drosophila melanogaster N2 - Circadianes und Stress-System sind zwei physiologische Systeme, die dem Organismus helfen sich an Veränderungen ihrer Umwelt anzupassen. Während letzteres spontane und schnelle Antworten auf akute, unvorhersehbare Umweltreize liefert, sagt das circadiane System täglich wiederkehrende Ereignisse vorher and bereitet den Organismus so vorzeitig auf diese nahende Umweltveränderung vor. Dennoch, trotz dieser unterschiedlichen Reaktionsmechanismen agieren beide Systeme nicht komplett autonom. Studien der vergangen Jahre belegen vielmehr eine Interaktion beider Systeme. So postulieren sie zum einem Unterschiede in der Stressantwort in Abhängigkeit von der Tageszeit zu der der Reiz auftritt und weisen zugleich auf eine Zunahme von gestörten biologischen Tagesrhythmen, wie zum Beispiel Schlafstörungen, in Folge von unkontrollierten oder exzessiven Stress hin. Ebenso liefern kürzlich durchgeführte Studien an Vertebraten und Pilzen Hinweise, dass mit p38, eine Stress-aktivierte Kinase, an der Signalweiterleitung zur inneren Uhr beteiligt ist (Hayashi et al., 2003), sogar durch dieses endogene Zeitmesssystem reguliert wird (Vitalini et al., 2007; Lamb et al., 2011) und deuten damit erstmals eine mögliche Verbindung zwischen Stress-induzierten und regulären rhythmischen Anpassungen des Organismus an Umweltveränderungen an. Molekulare und zelluläre Mechanismen dieser Verknüpfung sind bisher noch nicht bekannt. Während die Rolle von p38 MAPK bei der Stress- und Immunantwort in Drosophila melanogaster gut charakterisiert ist, wurden Expression und Funktion von p38 in der inneren Uhr hingegen bislang nicht untersucht. Die hier vorliegende Arbeit hatte daher zum Ziel mittels immunhistochemischer, verhaltensphysiologischer und molekularer Methoden eine mögliche Rolle der Stress-aktivierten Kinase im circadianen System der Fliege aufzudecken. Antikörperfärbungen sowie Studien mit Reporterlinien zeigen deutliche Färbesignale in den s-LNv, l-LNv und DN1a und erbringen erstmals einen Nachweis für p38 Expression in den Uhrneuronen der Fliege. Ebenso scheint die Aktivität von p38 MAPK in den DN1a uhrgesteuert zu sein. So liegt p38 vermehrt in seiner aktiven Form in der Dunkelphase vor und zeigt, neben seiner circadian regulierten Aktivierung, zusätzlich auch eine Inaktivierung durch Licht. 15-Minuten-Lichtpulse in der subjektiven Nacht führen zu einer signifikanten Reduktion von aktivierter, phosphorylierter p38 MAPK in den DN1a von Canton S Wildtypfliegen im Vergleich zu Fliegen ohne Lichtpuls-Behandlung. Aufzeichnungen der Lokomotoraktivität offenbaren zusätzlich die Notwendigkeit von p38 MAPK für wildtypisches Timing der Abendaktivität sowie zum Erhalt von 24-Stunden-Verhaltensrhythmen unter konstanten Dauerdunkel-Bedindungen. So zeigen Fliegen mit reduzierten p38 Level in Uhrneuronen einen verzögerten Beginn der Abendaktivität und stark verlängerte Freilaufperioden. In Übereinstimmung mit Effekten auf das Laufverhalten scheint darüber hinaus die Expression einer dominant-negativen Form von p38b in Drosophila’s wichtigsten Uhrneuronen eine verspätete nukleäre Translokation von Period zur Folge zu haben. Westernblots legen zusätzlich einen Einfluss von p38 auf den Phosphorylierungsgrad von Period nahe und liefern damit einen mögliche Erklärung für den verspäteten Kerneintritt des Uhrproteins. Abschließende Stützung der Westernblotergebnisse bringen in vitro Kinasenassays und deuten auf p38 als eine potentielle „Uhrkinase“ hin, welche auch in vivo Period an Serin 661 sowie weiteren potentiellen Phosphorylierungsstellen phosphorylieren könnte. Zusammengenommen deuten die Ergebnisse der hier vorliegenden Arbeit eindeutig auf eine bedeutende Rolle von p38, neben dessen Funkion im Stress-System, auch im circadianen System der Fliege hin und offenbaren damit die Möglichkeit, dass p38 als Schnittstelle zwischen beider Systeme fungiert. N2 - The circadian and the stress system are two distinct physiological systems that help the organism to adapt to environmental challenges. While the latter elicits reactive responses to acute environmental changes, the circadian system predicts daily occurring alterations and prepares the organism in advance. However, despite of these differences both responses are not mutually exclusive. Studies in the last years obviously prove a strong interaction between both systems showing a strong time-related stress response depending on the time of day of stressor presentation on the one hand and increased disturbances of daily rhythms, like sleep disorders, in consequence of uncontrolled or excessive stress on the other. In line with this fact, recent studies in vertebrates and fungi indicate that p38, a stress-activated Kinase, is involved in signaling to the circadian clock (Hayashi et al., 2003) and in turn is additionally regulated by this timekeeping system (Vitalini et al., 2007; Lamb et al., 2011) providing an interesting link between stress-induced and regularly rhythmic adaptations of the organism to environmental changes. However, little is known about molecular and cellular mechanisms of this interconnection. In Drosophila melanogaster the role of p38 MAPK is well characterized in terms of immune and stress response, p38 expression and function in the circadian clock has not been reported so far. Therefore, the present thesis aimed to elucidate a putative role of the stress-activated Kinase in the fly’s circadian system using an immunohistochemical, behavioral as well as molecular approach. Surprisingly, for the first time antibody as well as reporterline studies cleary prove p38 expression in Drosophila clock neurons showing visible staining in s-LNvs, l-LNvs and DN1as. Moreover p38 MAPK in DN1as seems to be activated in a clock-dependent manner. p38 is most active under darkness and, besides its circadian activation, additionally gets inactivated by light. 15 minutes light pulse applied during the dark phase lead to a significant reduction in phosphorylated and activated p38 MAPK in Canton S wildtype flies compared to flies without light pulse treatment. In addition, locomotor activity recordings reveal that p38 is essential for a wild-type timing of evening activity and for maintaining ~24h behavioral rhythms under constant darkness. Flies with reduced p38 activity in clock neurons show delayed evening activity onsets and drastically lengthened the period of their free-running rhythms. In line with these effects on locomotor behavior, the nuclear translocation of the clock protein Period is significantly delayed on the expression of a dominant-negative form of p38b in Drosophila’s most important clock neurons. Western Blots reveal that p38 affects the phosphorylation degree of Period, what is likely the reason for its effects on nuclear entry of Period. In vitro kinase assays additionally confirm the Western Blot results and point to p38 as a potential “clock kinase” phosphorylating Period at Serin 661 and putative phosphorylation sites. Taken together, the results of the present thesis clearly indicate a prominent role of p38 in the circadian system of the fly besides its function in stress-input pathways und open up the possibility of p38 MAPK being a nodal point of both physiological systems. KW - Taufliege KW - Biologische Uhr KW - MAP-Kinase KW - Innere Uhr KW - MAPK KW - p38 KW - Phosphorylierung KW - Mitogen-aktivierte Proteinkinase KW - Drosophila melanogaster KW - Circadiane Rhythmen KW - Drosophila Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-124636 ER - TY - JOUR A1 - Dühring, Sybille A1 - Germerodt, Sebastian A1 - Skerka, Christine A1 - Zipfel, Peter F. A1 - Dandekar, Thomas A1 - Schuster, Stefan T1 - Host-pathogen interactions between the human innate immune system and Candida albicans - understanding and modeling defense and evasion strategies JF - Frontiers in Microbiology N2 - The diploid, polymorphic yeast Candida albicans is one of the most important human pathogenic fungi. C. albicans can grow, proliferate and coexist as a commensal on or within the human host for a long time. However, alterations in the host environment can render C. albicans virulent. In this review, we describe the immunological cross-talk between C. albicans and the human innate immune system. We give an overview in form of pairs of human defense strategies including immunological mechanisms as well as general stressors such as nutrient limitation, pH, fever etc. and the corresponding fungal response and evasion mechanisms. Furthermore, Computational Systems Biology approaches to model and investigate these complex interactions are highlighted with a special focus on game-theoretical methods and agent-based models. An outlook on interesting questions to be tackled by Systems Biology regarding entangled defense and evasion mechanisms is given. KW - agent-based model KW - antimicrobial peptides KW - fungal pathogens KW - Candida albicans KW - immunological cross-talk KW - beta-lactamase inhibition KW - in vitro KW - biomaterial surfaces KW - biofilm formation KW - dendritic cells KW - infection KW - resistance KW - human immune system KW - host-pathogen interaction KW - computational systems biology KW - defense and evasion strategies Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151621 VL - 6 IS - 625 ER - TY - JOUR A1 - Ehmann, Nadine A1 - Sauer, Markus A1 - Kittel, Robert J. T1 - Super-resolution microscopy of the synaptic active zone JF - Frontiers in Cellular Neuroscience N2 - Brain function relies on accurate information transfer at chemical synapses. At the presynaptic active zone (AZ) a variety of specialized proteins are assembled to complex architectures, which set the basis for speed, precision and plasticity of synaptic transmission. Calcium channels are pivotal for the initiation of excitation-secretion coupling and, correspondingly, capture a central position at the AZ. Combining quantitative functional studies with modeling approaches has provided predictions of channel properties, numbers and even positions on the nanometer scale. However, elucidating the nanoscopic organization of the surrounding protein network requires direct ultrastructural access. Without this information, knowledge of molecular synaptic structure-function relationships remains incomplete. Recently, super-resolution microscopy (SRM) techniques have begun to enter the neurosciences. These approaches combine high spatial resolution with the molecular specificity of fluorescence microscopy. Here, we discuss how SRM can be used to obtain information on the organization of AZ proteins KW - excitation-secretion coupling KW - Ca\(^{2+}\) channels KW - structure-function relationships KW - super-resolution microscopy KW - active zone KW - presynaptic calcium KW - neurotransmitter release Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148997 VL - 9 IS - 7 ER - TY - JOUR A1 - Elkon, Ran A1 - Loayza-Puch, Fabricio A1 - Korkmaz, Gozde A1 - Lopes, Rui A1 - van Breugel, Pieter C A1 - Bleijerveld, Onno B A1 - Altelaar, AF Maarten A1 - Wolf, Elmar A1 - Lorenzin, Francesca A1 - Eilers, Martin A1 - Agami, Reuven T1 - Myc coordinates transcription and translation to enhance transformation and suppress invasiveness JF - EMBO reports N2 - c‐Myc is one of the major human proto‐oncogenes and is often associated with tumor aggression and poor clinical outcome. Paradoxically, Myc was also reported as a suppressor of cell motility, invasiveness, and metastasis. Among the direct targets of Myc are many components of the protein synthesis machinery whose induction results in an overall increase in protein synthesis that empowers tumor cell growth. At present, it is largely unknown whether beyond the global enhancement of protein synthesis, Myc activation results in translation modulation of specific genes. Here, we measured Myc‐induced global changes in gene expression at the transcription, translation, and protein levels and uncovered extensive transcript‐specific regulation of protein translation. Particularly, we detected a broad coordination between regulation of transcription and translation upon modulation of Myc activity and showed the connection of these responses to mTOR signaling to enhance oncogenic transformation and to the TGFβ pathway to modulate cell migration and invasiveness. Our results elucidate novel facets of Myc‐induced cellular responses and provide a more comprehensive view of the consequences of its activation in cancer cells. KW - c‐Myc KW - transcriptional responses KW - translational regulation KW - transcription KW - transformation KW - metastasis KW - cancer KW - protein biosynthesis & quality control Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-150373 VL - 16 IS - 12 ER - TY - THES A1 - Endt, Daniela T1 - Fanconi Anämie : Entwicklung von hämatopoetischen Mosaiken sowie funktionelle Studien von FANCO (RAD51C) und FANCN (PALB2) T1 - Fanconi Anämie : Development of hematopoetic mosaicism and functional studies of FANCO (RAD51C) and FANCN (PALB2) N2 - Zur Wahrung der Genomstabilität entwickelten sich verschiedene Reparaturmechanismen, deren Defekte zu diversen Erkrankungen führen. Der 1927 erstmals beschriebenen Fanconi Anämie (FA) (Fanconi 1927) liegt eine fehlerhafte Reparatur der DNA-Doppelstrang-Quervernetzung zugrunde. Als Ursache wurden Defekte innerhalb des FA/BRCA-Weges lokalisiert, welche zur Chromosomeninstabilität führen. Das Krankheitsbild der autosomal rezessiven oder X-chromosomalen Erkrankung wird meist von kongenitalen Fehlbildungen, progressivem Knochenmarkversagen sowie bereits im jugendlichen Alter erhöhten Tumor-raten und Anämien geprägt. Bisher wurden Defekte in 19 verschiedenen Genen als ursächlich für diese Erkrankung diskutiert. Anhand des betroffenen Gens können nur begrenzt Rückschlüsse auf die Ausprä-gung des Phänotyps geschlossen werden, vielmehr scheinen die Art der Mutation und deren Position im Gen mit der Schwere der Erkrankung zu korrelieren. Im Laufe der Zeit wurden immer mehr Patienten mit mild ausgeprägtem Erkrankungsbild beobachtet. Eine mögliche Erklärung hierfür liefern milde Mutationen, eine weitere das Vorhandensein von Mosaiken blutbildender Zellen. Zu letzterem führt die Reversion einer der beiden Mutationen. Diese Art der „natürlichen Gentherapie“ wurde bei 10-30% der FA-Patienten beobachtet. Um die Entwicklung von Reversionen besser zu verstehen, erfolgte im Rahmen dieser Arbeit die Untersuchung verschiedener Zelllinien von 5 Patienten im Alter von 11 (Pat. 5) bis 33 (Pat. 4) Jahren. Die FA-A-Patienten 1 und 2 wurden bereits von Gross et al. 2002 als Mosaikpatienten beschrieben. Für die weiteren Patienten führten unterschiedliche Aspekte, wie normale Blutwerte, MMC-tolerante lympho-blastoide Zelllinien und gDNA-Analysen des Blutes zum Mosaikverdacht. Nähere Analysen bestätigten für die FA-D2-Patienten (Pat. 4, 5) ebenfalls das Vorliegen einer Reversion in den Blutzellen. Allen Patienten gemein war die Reversion in Form einer Rückmutation (Pat. 1: c.971T>G, Pat. 2: c.856 C>T, Pat. 4: c.3467-2A>G, Pat. 5: c.3707G>A), welche meist in einem oder in der Nähe eines Mutationsmotives vorlag. Zur Einschätzung des Mosaikstatus in den Patientenblutzellen wurden, neben der meist mehrjährigen Be-obachtung der Blutwerte (Thrombo-, Mono-, Granulo-, Lymphozyten, Hämoglobin), gDNA-, Chromoso-menbruch- und Zellzyklusanalysen durchgeführt. Chromosomenbruchanalysen von Metaphasen der T-Lymphozyten der Patienten 4 und 5 zeigten nach MMC-Behandlung die mosaik-typische bimodale Vertei-lung der Chromosomenbruchraten. Die nur moderat erhöhten Bruchraten in Metaphasen des Patienten 1 sprachen für eine starke Reversion. Zur besseren Abschätzung des Mosaikstatus wurden Zellzyklusanaly-sen an Mischungsreihen aus FA- und nicht FA- Blut durchgeführt. Die Detektionsgrenze für FA-Mosaike lag bei einem Anteil von 30% Zellen mit spontanem/MMC-induziertem G2-Phasen-Arrest. In Anlehnung an Mischungskurven wurden für die vier Patienten Reversionen von 0% (Pat. 4) bis 90-95% (Pat. 2) ange-nommen. Die gDNA-Analyse MACS-sortierter T-/B-Lympho-, Mono- und Granulozyten sowie von Fib-roblasten und lymphoblastoiden Zelllinien ermöglichte einen detaillierten Einblick in die Mosaikstatus auf molekularer Ebene. Wir fanden bei allen Patienten einen unterschiedlich stark ausgeprägten Mosaikstatus ihrer Blutzellreihen. Tendenziell scheinen die Reversionsgrade mit der Zell-Lebensdauer korrelieren, hier-bei zeigen kurzlebige Zellen (Mono-, Granulo-, B-Lymphozyten) höhere Reversionsgrade als langlebige T-Lymphozyten. Das Auftreten von gleichen Reversionen in allen Zelllinien lässt eine Reversion in einer gemeinsamen Vorläuferzelle vermuten. Als Besonderheit fanden wir, unseren Erachtens erstmalig, eine komplette Reversion einer Knochenmark-Fibroblastenzelllinie (Pat. 1). Häufig in Kultur stattfindende Re-versionen in lymphoblastoiden Zelllinien beobachteten wir für alle vier Patienten. Die Mosaikentstehung im Patientenblut konnte mit allen Methoden bestätigt werden. Jede Methode wies Vor- und Nachteile auf. Zur Abschätzung der Mosaikstatus empfiehlt sich deshalb eine Kombination der Methoden. Ein weiteres Projekt beschäftigte sich mit Interaktionen des FANCO (RAD51C) innerhalb der RAD51 Paraloge (RAD51B, -C, -D, XRCC2, XRCC3) und mit RAD51. Die Analysen erfolgten im Mammalian Two- und Three-Hybrid (M2H/M3H) System. Die Untersuchungen bestätigten die meisten der bisher detektierten Interaktionen, welche zur Ausbildung des RAD51C-XRCC3 Komplexes und des, aus den Subkomplexen RAD51B-RAD51C (BC) und RAD51D-XRCC2 (DX2) bestehenden, BCDX2-Komplex führen. Die M3H-Analysen weisen auf eine wichtige Rolle des RAD51B-Proteins bei der Ausprägung dieses Komplexes hin. Es scheint die Ausbildung der RAD51C-RAD51D-Interaktion erst zu ermöglichen und zusätzlich, anders als bisher beobachtet, auch mit XRCC2 zu interagieren. Diese Interaktion wiederum wird durch die Anwesenheit von RAD51D stark gefördert. Unsere M2H-/M3H-Beobachtungen weisen darauf hin, dass die Ausbildung der Subkomplexe für die Entstehung des BDCX2-Komplexes wichtig ist und dieser vermutlich als Ringstruktur vorliegt. Zusätzlich fanden wir Hinweise auf mögliche Wechselwir-kungen zwischen den BCDX2- und den XRCC3-Komplexproteinen. Aufgrund der Beteiligung der Protei-ne an der Doppelstrangläsionsreparatur wurde die Auswirkung von MMC-induzierten DNA-Schäden un-tersucht. Diese führten innerhalb der Subkomplexe zu gegensätzlichen Änderungen der Interaktionsinten-sität. Während die Substanz im DX2-Komplex zum Sinken der Interaktionsstärke führte, erhöhte sich diese im BC-Komplex. Die in der Literatur beschriebene und charakterisierte RAD51C-FANCN-Interation war im M2H-Test nicht darstellbar. Möglicherweise würde diese jedoch durch die Anwesenheit eines drit-ten Proteins gefördert werden. Zusätzlich wurde ein RAD51C-Protein, welches die Patientenmutation R258H enthielt, überprüft. Es zeigte nur in der M3H-Analyse, mit pMRAD51D und nativem RAD51B, nach Behandlung mit MMC eine reduzierte Interaktionsstärke im Vergleich zum Wildtyp. Dies unter-streicht einmal mehr die als hypomorph beschriebene Mutation des Proteins. Das dritte Projekt, die angestrebte Strukturaufklärung des RAD51C-Proteins erwies sich als schwierig. Eine für eine Kristallisation ausreichende Proteinmenge konnte, weder im E. coli-System noch in Insektenzellen oder in Co-Expression mit seinem Interaktionspartner XRCC3, isoliert und aufgereinigt werden. Elektro-phoretische Mobility Shift Assays des CX3-Proteinkomplexes mit DNA-Strukturen (ssDNA, Open Fork, 3‘-/ 5‘-Überhang-Struktur), zeigten eine Bevorzugung des 3‘-Überhang-DNA-Substrates. Diese Art der Analyse könnte in weiterführenden Analysen zur Abschätzung der Auswirkung von Patientenmutationen herangezogen werden. bb N2 - For maintaining genomic stability several repair mechanisms have evolved. Defects in these mechanisms lead to diverse diseases. One of these Fanconi Anemia (FA), first described in 1927, evoked by deficient mechanism of interstrand crosslinks. As causative reason defects within the FA-BRCA pathway were iden-tified leading to chromosome instability. To date 19 different genes were found to cause Fanconi Anemia. Most commonly for the clinical picture of FA are congenital malformations, progressive bone marrow defects as like an increased tumor rates and anemia at a juvenile age. Knowing the affected gene only lim-ited conclusions could be considered of the phenotypical appearance. More likely the kind of mutation and the affected position within the gene seems to correlate with the severity of the disease. Over the time an elevated number of patients with mild phenotype were observed. One possible explanation may be mild mutations another a mosaic state developed within the blood forming cells. The latter was caused by rever-sion of one of both mutations. This kind of “natural gene therapy” was observed in the blood of 10 up to 30 % FA- patients. To get better insights in to the mosaic development we investigated different cell lines of five patients aged between 11 (pat. 5) and 33 (pat. 4) years. Both FA-A patients (pat. 1, 2) were described as mosaic patients before by Gross et al. 2002. The other patients arouse suspicion for developing mosai-cism by different aspects like normal blood counts, MMC tolerant lymphoblastiode cell lines and analyzing gDNA from blood. Detailed analyses confirmed the reversion of one mutation in blood of the FA-D2 patients (pat. 4, 5). In common for all four mosaic was the kind of reversion, a back mutation (pat. 1: c.971T>G, pat. 2: c.856 C>T, pat. 4: c.3467-2A>G, pat. 5: c.3707G>A) mostly in or near by a mutation motive. To get insights in to the mosaic state of the patients’ blood cells, gDNA, chromosomal breakage and cell cycle analyses were performed and blood cell counts of thrombo-, mono-, granulo-, lymphocytes and haemoglobin were observed for several years. Chromosomal breakage analyses of t-lymphocytes met-aphases (pat. 4, 5) treated with MMC showed a mosaicism typical bimodal distribution. The only moderate increased chromosomal breakage rate in metaphases of patient 1 points out a strong pronounced reversion. For better estimation of the Mosaic state in patient blood we performed cell cycle analysis with mixtures of FA- and non FA-blood. Thereby we observed the border for mosaic detection at a degree of 30 % cells with spontaneous /MMC induced G2-phase arrest. Compared to the mixing study reversion degrees of 0 % (pat. 4) up to 90-95 % (pat. 2) were assumed for four of the patients. At molecular base gDNA analyses of MACS sorted T-/ B- lympho, mono and granulocytes as well as from fibroblasts and lymphoblastoide cell lines allowed a more detailed insight in to the mosaic statuses. In all patients we observed different distinct of mosaic state in their blood cell lines. We observed a tendency of correlation between reversion degree and the longevity of blood cells – cells with short life spans (mono-, granulo-, B-lymphoytes) showed higher reversion degrees than log living T-lymphocytes. The fact that we detected the same rever-sion in the different cell lines of a patient suggests a reversion within a common precursor cell. Further we observed, as we know for the first time, a reversion within a bone marrow fibroblast line (pat. 1). Four of our patients showed commonly observed reversions in cultured lymphoblastoide cell lines. With each of the tested methods we could show mosaic development in blood of our patients. Every of them showed pros and cons. For this reason a combination of the different methods would be recommendable for cal-culation of the mosaic state in patient blood. The second project investigated the interactions of FANCO (RAD51C) within the group of the RAD51 paralogs (RAD51B, -C, -D, XRCC2, XRCC3) and with RAD51. Interactions were tested by Mammalian Two- and Three-Hybrid (M2H/M3H) System. Our investigations confirm most of the up to now detected interactions leading to RAD51C-XRCC3-complex (CX3) and RAD51B-RAD51C-RAD51D-XRCC2 com-plex (BCDX2) formation – latter consisting of the subcomplexes RAD51B-RAD51C (BC) and RAD51D-XRCC2 (DX2). M3H analyses give a hint for the importance of the RAD51B protein for the BCDX2 complex formation. The protein seems to be necessary for RAD51C-RAD51D interaction and also to interact, other than intended before, with XRCC2. In turn this interaction seems to be strongly promoted by RAD51D. In M2H and M3H analyses we found evidence of the importance of subcomplex formation for the formation of the whole BCDX2 complex and that the complex may be a circular structure. Addi-tionaly we observed evidence for interdependency between the BCDX2- and the XRCC3- complex pro-teins. Because of the proteins involvement into the double strand lesion repair the effect of MMC induced DNA lesions were tested. MMC treatment leads to different changes of interaction within the subcom-plexes. We observed a decrease of interaction strength between RAD51D and XRCC2 and an increased interaction within the BC-complex. The interaction between RAD51C and FANCN was not detectable in our M2H assay but may be promoted by another protein in M3H analysis. Additionally we tested a RAD51C protein inherited the patient mutation R258H. Only in M3H analysis with pMRAD51D and native RAD51B and with additional MMC treatment reduced interaction strength was detectable compared to the wildtype RAD51C. This underlines the hypomorphic nature of the mutation described before. The third project – the elucidation of the RAD51C protein structure proved to be difficult. We could not isolate and purify enough protein for crystallization, neither by expression within a E.coli or an insect cell system not even by co-expression of the complex partner XRCC3. Electrophoretic mobility shift assays of the CX3 complex with different DNA-structures (ssDNA, open fork, 3’- and 5’- overhang structures) showed preference for the 3’-overhang DNA substrate. This method may be used for further investiga-tions of mutations in patient DNA in future. KW - Fanconi Anämie KW - Hämatopoese KW - Mosaik KW - Remission KW - Molekulargenetik KW - Fanconi Anämie KW - hämatopoetisches Mosaik KW - Reversion KW - RAD51C KW - FANCO Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-127836 ER - TY - JOUR A1 - Falibene, Agustina A1 - Roces, Flavio A1 - Rössler, Wolfgang T1 - Long-term avoidance memory formation is associated with a transient increase in mushroom body synaptic complexes in leaf-cutting ants JF - Frontiers in Behavioral Neuroscience N2 - Long-term behavioral changes related to learning and experience have been shown to be associated with structural remodeling in the brain. Leaf-cutting ants learn to avoid previously preferred plants after they have proved harmful for their symbiotic fungus, a process that involves long-term olfactory memory. We studied the dynamics of brain microarchitectural changes after long-term olfactory memory formation following avoidance learning in Acromyrmex ambiguus. After performing experiments to control for possible neuronal changes related to age and body size, we quantified synaptic complexes (microglomeruli, MG) in olfactory regions of the mushroom bodies (MBs) at different times after learning. Long-term avoidance memory formation was associated with a transient change in MG densities. Two days after learning, MG density was higher than before learning. At days 4 and 15 after learning—when ants still showed plant avoidance—MG densities had decreased to the initial state. The structural reorganization of MG triggered by long-term avoidance memory formation clearly differed from changes promoted by pure exposure to and collection of novel plants with distinct odors. Sensory exposure by the simultaneous collection of several, instead of one, non-harmful plant species resulted in a decrease in MG densities in the olfactory lip. We hypothesize that while sensory exposure leads to MG pruning in the MB olfactory lip, the formation of long-term avoidance memory involves an initial growth of new MG followed by subsequent pruning. KW - microglomeruli KW - olfaction KW - avoidance learning KW - leaf-cutting ants KW - acromyrmex ambiguus KW - synaptic plasticity KW - mushroom body Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125522 VL - 9 IS - 84 ER - TY - JOUR A1 - Falibene, Augustina A1 - Roces, Flavio A1 - Rössler, Wolfgang T1 - Long-term avoidance memory formation is associated with a transient increase in mushroom body synaptic complexes in leaf-cutting ants JF - Frontiers in Behavioural Neuroscience N2 - Long-term behavioral changes related to learning and experience have been shown to be associated with structural remodeling in the brain. Leaf-cutting ants learn to avoid previously preferred plants after they have proved harmful for their symbiotic fungus, a process that involves long-term olfactory memory. We studied the dynamics of brain microarchitectural changes after long-term olfactory memory formation following avoidance learning in Acromyrmex ambiguus. After performing experiments to control for possible neuronal changes related to age and body size, we quantified synaptic complexes (microglomeruli, MG) in olfactory regions of the mushroom bodies (MB) at different times after learning. Long-term avoidance memory formation was associated with a transient change in MG densities. Two days after learning, MG density was higher than before learning. At days 4 and 15 after learning when ants still showed plant avoidance MG densities had decreased to the initial state. The structural reorganization of MG triggered by long-term avoidance memory formation clearly differed from changes promoted by pure exposure to and collection of novel plants with distinct odors. Sensory exposure by the simultaneous collection of several, instead of one, non-harmful plant species resulted in a decrease in MG densities in the olfactory lip. We hypothesize that while sensory exposure leads to MG pruning in the MB olfactory lip, the formation of long-term avoidance memory involves an initial growth of new MG followed by subsequent pruning. KW - Acromyrmex ambiguus KW - leaf-cutting ants KW - avoidance learning KW - olfaction KW - honeybee KW - microglomeruli KW - mushroom body KW - synaptic plasticity Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148763 VL - 9 IS - 84 ER - TY - THES A1 - Fischer, Robin T1 - Generating useful tools for future studies in the center of the circadian clock – defined knockout mutants for PERIOD and TIMELESS T1 - Generierung nützlicher Instrumente für zukünftige Studien im Zentrum der Inneren Uhr - definierte knockout Mutanten für PERIOD und TIMELESS N2 - To unravel the role of single genes underlying certain biological processes, scientists often use amorphic or hypomorphic alleles. In the past, such mutants were often created by chance. Enormous approaches with many animals and massive screening effort for striking phenotypes were necessary to find a needle in the haystack. Therefore at the beginning chemical mutagens or radiation were used to induce mutations in the genome. Later P-element insertions and inaccurate jump-outs enabled the advantage of potential larger deletions or inversions. The mutations were characterized and subsequently kept in smaller populations in the laboratories. Thus additional mutations with unknown background effects could accumulate. The precision of the knockout through homologous recombination and the additional advantage of being able to generate many useful rescue constructs that can be easily reintegrated into the target locus made us trying an ends-out targeting procedure of the two core clock genes period and timeless in Drosophila melanogaster. Instead of the endogenous region, a small fragment of approximately 100 base pairs remains including an attP-site that can be used as integration site for in vitro created rescue constructs. After a successful ends-out targeting procedure, the locus will be restored with e.g. flies expressing the endogenous gene under the native promoter at the original locus coupled to a fluorescence tag or expressing luciferase. We also linked this project to other research interests of our work group, like the epigenetic related ADAR-editing project of the Timeless protein, a promising newly discovered feature of time point specific timeless mRNA modification after transcription with yet unexplored consequences. The editing position within the Timeless protein is likewise interesting and not only noticed for the first time. This will render new insights into the otherwise not-satisfying investigation and quest for functional important sequences of the Timeless protein, which anyway shows less homology to other yet characterized proteins. Last but not least, we bothered with the question of the role of Shaggy on the circadian clock. The impact of an overexpression or downregulation of Shaggy on the pace of the clock is obvious and often described. The influence of Shaggy on Period and Timeless was also shown, but for the latter it is still controversially discussed. Some are talking of a Cryptochrome stabilization effect and rhythmic animals in constant light due to Shaggy overexpression, others show a decrease of Cryptochrome levels under these conditions. Also the constant light rhythmicity of the flies, as it was published, could not be repeated so far. We were able to expose the conditions behind the Cryptochrome stabilization and discuss possibilities for the phenomenon of rhythmicity under constant light due to Shaggy overexpression. N2 - Um die Rolle einzelner Gene hinter biologischen Prozessen zu entschlüsseln, bedienen sich Wissenschaftler häufig amorpher oder hypomorpher Allele. Diese wurden in der Vergangenheit oft auf Zufall basierend generiert. Gewaltige Ansätze mit zahllosen Tieren unter enormem Selektionsaufwand bei der Suche nach markanten Phänotypen waren notwendig um sprichwörtlich die Nadel im Heuhaufen zu finden. Zunächst wurden chemische Mutagene oder Strahlung verwendet um Mutationen im Genom zu induzieren. Später kamen P-element Insertionen und induziertes unpräzises Herausspringen der Transposons dazu. Das hatte den Vorteil, dass so unter Umstände größere Deletionen oder Inversionen entstanden. Die Mutationen wurden charakterisiert und die Tiere anschließend in kleinen Populationen gehalten. Dadurch konnten sich zusätzliche Mutationen mit möglichen Hintergrundeffekten unbemerkt ansammeln. Ebenso blieben weitere durchaus mögliche Mutationen aufgrund der Mutagene und dem deutlicheren Phänotyp der primären Mutation oftmals unbemerkt. Die Präzision eines Knockouts durch homologe Rekombination und der Vorteil, zusätzlich im Stande zu sein, jedes entworfene Rettungskonstrukt auf einfache Weise wieder einsetzen zu können, überzeugte uns, eine Ends-out Targeting Prozedur mit den zwei Uhr Basisgenen period und timeless in Drosophila melanogaster durchzuführen. Dabei soll ein geplanter Knockout zu einer kompletten Deletion des gesamten Bereichs durch homologe Rekombination führen. Anstelle der endogenen Region verbleibt lediglich ein kleines Fragment von ungefähr 100 Basenpaaren inklusive einer attP-Stelle, die als Insertionsstelle für in vitro hergestellte Konstrukte genutzt werden kann. Angestrebte Ziele sind beispielsweise Fliegen, die das endogene Gen unter der Kontrolle des ursprünglichen Promoters am originalen Lokus gebunden an einen Fluoreszenzmarker oder aber gekoppelt an Luziferase exprimieren. Wir koppelten dieses Projekt zusätzlich mit anderen Forschungsinteressen unserer Arbeitsgruppe, wie zum Beispiel dem epigenetischen ADAR-Editierungsprojekt des Timeless Proteins, einer vielversprechenden Neuentdeckung zeitpunktspezifischer und posttranskriptionaler Modifizierung der timeless mRNA, mit bisher noch unbekannten Folgen. Die Position der Editierung innerhalb des Timeless Proteins ist ebenfalls sehr interessant und nicht zum ersten Mal im Fokus von Wissenschaftlern. Dies wird neue Einblicke in die sonst bislang nicht zufriedenstellende Suche nach funktionell wichtigen Strukturen von Timeless bringen, welche aufgrund der geringen Homologie zu anderen bisher charakterisierten Proteinen bislang nur unzureichend bestimmt werden konnten. Zuletzt beschäftigten wir uns mit der Frage nach der Rolle von Shaggy bezüglich der inneren Uhr. Der Einfluss einer Überexpression oder Herabregulierung von Shaggy auf die Taktung der Uhr ist eindeutig und wurde schon oft beschrieben. Der Einfluss von Shaggy auf Period und Timeless wurde ebenfalls bereits gezeigt, wird jedoch im Falle des letzteren Proteins noch sehr kontrovers diskutiert. Während einige von einem Cryptochrom stabilisierenden Effekt und rhythmischen Tieren in konstanter Beleuchtung aufgrund von Shaggy Überexpression sprechen, zeigen andere einen Abfall des Cryptochromlevels unter eben genau diesen Umständen. Es war uns möglich die Umstände hinter der Cryptochromstabilisierung aufzudecken. Darüber hinaus zeigen wir mögliche Gründe für das Phänomen des Rhythmus im Dauerlicht von Shaggy Überexpressionstieren auf. KW - Biologische Uhr KW - Circadian clock KW - Period KW - Timeless KW - Genetic engineering KW - Shaggy KW - Taufliege KW - Knockout Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119141 ER -