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 - JOUR A1 - Wolf, Beat A1 - Kuonen, Pierre A1 - Dandekar, Thomas A1 - Atlan, David T1 - DNAseq workflow in a diagnostic context and an example of a user friendly implementation JF - BioMed Research International N2 - Over recent years next generation sequencing (NGS) technologies evolved from costly tools used by very few, to a much more accessible and economically viable technology. Through this recently gained popularity, its use-cases expanded from research environments into clinical settings. But the technical know-how and infrastructure required to analyze the data remain an obstacle for a wider adoption of this technology, especially in smaller laboratories. We present GensearchNGS, a commercial DNAseq software suite distributed by Phenosystems SA. The focus of GensearchNGS is the optimal usage of already existing infrastructure, while keeping its use simple. This is achieved through the integration of existing tools in a comprehensive software environment, as well as custom algorithms developed with the restrictions of limited infrastructures in mind. This includes the possibility to connect multiple computers to speed up computing intensive parts of the analysis such as sequence alignments. We present a typical DNAseq workflow for NGS data analysis and the approach GensearchNGS takes to implement it. The presented workflow goes from raw data quality control to the final variant report. This includes features such as gene panels and the integration of online databases, like Ensembl for annotations or Cafe Variome for variant sharing. KW - next generation sequencing KW - genome browser KW - mutation KW - algorithm KW - database KW - format KW - discovery KW - exome KW - variants KW - alignment Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144527 IS - 403497 ER - TY - THES A1 - Mattern, Felix T1 - Alterungsbedingte Effekte auf DNA-Methylierungsprofile entwicklungsrelevanter Gene in Eizellen und Embryonen am Modellorganismus Bos taurus T1 - Aging-induced effects on DNA methylation profiles of developmental genes in oocytes and embryos on the model organism Bos taurus N2 - Die postovulatorische Alterung sowie die ovarielle Alterung konnten bei der Anwendung assistierter Reproduktionstechniken (ARTs) als entscheidende Faktoren identifiziert werden, die den Reproduktionserfolg nachhaltig beeinträchtigen. Die postovulatorische Alterung tritt ein, sobald die reife Eizelle nicht mehr innerhalb ihres physiologischen Zeitfensters befruchtet wird. Die ovarielle Alterung beschreibt hingegen die Abnahme des Follikel-Vorrats mit zunehmendem Alter des weiblichen Individuums bzw. des Ovars. Sowohl die postovulatorische Alterung als auch die ovarielle Alterung führen u.a. zu einer reduzierten Oozytenqualität und einer geringeren Blastozystenrate. Die Zielsetzung dieser Arbeit bestand darin, den Einfluss der postovulatorischen Alterung und der ovariellen Alterung im Holstein-Rind (Bos taurus) auf die DNA-Methylierung entwicklungsrelevanter Gene in Eizellen und Embryonen zu untersuchen. Aus Schlachthof-Ovarien wurden Antralfollikeln unterschiedlicher Größe (<2 mm, 3-5 mm und >6 mm) isoliert. Eizellen aus Follikeln der Größe 3-5 mm wurden für 24h (physiologisch) und 48h (gealtert) in vitro gereift (IVM). Die gereiften Oozyten wurden anschließend in vitro fertilisiert und Embryonen im 4-6 Zellstadium generiert. Sowohl in den unreifen Eizellen aus Antralfollikeln unterschiedlicher Größe als auch in den gereiften Oozyten und den Embryonen wurde die Promotormethylierung der Gene bH19, bSNRPN, bZAR1, bDNMT3A, bOCT4, bDNMT3Lo und bDNMT3Ls analysiert. Zur Untersuchung der ovariellen Alterung wurden mittelgroßen Antralfollikel aus Ovarien lebender Rinder (in vivo) unterschiedlichen Alters (9-12 Monate, 3-7 Jahre und 8-11 Jahre) gewonnen. In den daraus isolierten unreifen Eizellen wurde die DNA-Methylierung der Promotorregionen der Gene bTERF2, bREC8, bBCL-XL, bPISD, bBUB1, bDNMT3Lo, bH19 und bSNRPN bestimmt. Als Methode zur Analyse der Promotormethylierung wurde die Limiting Dilution Bisulfit-Sequenzierung angewendet. In unreifen Eizellen aus Antralfollikeln unterschiedlicher Größe (<2 mm, 3-5 mm und >6 mm) konnte ein erhöhtes Auftreten abnormal methylierter Allele in den geprägten Genen bH19 und bSNRPN von Eizellen kleiner Follikel (<2 mm) identifiziert werden. Dieses Ergebnis könnte eine mögliche Ursache einer bereits bekannten und mehrfach beschriebenen geringeren Entwicklungskompetenz von Eizellen kleiner Follikel (<2 mm) auf epigenetischer Ebene darstellen. Die verlängerte Reifungsdauer der IVM-Eizellen hatte eine signifikante Hypermethylierung in der Promotorregion des Gens DNMT3Lo von 48h-gereiften Eizellen zur Folge. Beim Übergang von 48h-gereiften Eizellen zum Embryo konnte eine signifikante Hypomethylierung von CpG7 des stammzellspezifischen Transkripts DNMT3Ls beobachtet werden. Diese CpG-Stelle wies ebenfalls einen signifikanten Anstieg von CpGs mit nicht-eindeutigem Methylierungszustand in unreifen Eizellen mit steigender Follikelgröße auf. Da sich die CpG-Position innerhalb eines Sequenz-Motivs einer Bindungsstelle des Transkriptionsfaktors CREB befindet, könnten die Methylierungsdaten auf eine Interaktion zwischen dem Transkriptionsfaktor CREB und der DNA-Methylierung während der Entwicklung und Reifung der Eizelle sowie der Transition von der Eizelle zum Embryo hindeuten. Die DNA-Methylierungsprofile der untersuchten Gene in unreifen Eizellen aus Kühen unterschiedlichen Alters (9-12 Monate, 3-7 Jahre und 8-11 Jahre) wiesen keine signifikanten Unterschiede zwischen den Altersgruppen auf. Die ovarielle Alterung bei Rindern zwischen 9 Monaten und 11 Jahren zeigte damit keinen Effekt auf die DNA-Methylierung der untersuchten Promotorregionen der Gene bTERF2, bREC8, bBCL-XL, bPISD, bBUB1, bDNMT3Lo, bH19 und bSNRPN. Nach einer simulierten postovulatorischen Alterung durch eine in vitro Reifung für 48h konnte eine Veränderung der DNA-Methylierung der Oozyten-spezifischen (DNMT3Lo) und Stammzell-spezifischen (DNMT3Ls) Promotoren des katalytisch inaktiven Cofaktors von DNMT3A, DNMT3L, beobachtet werden. Die veränderte DNA-Methylierung von DNMT3Ls tritt dabei erst im frühen Embryo in Erscheinung und interagiert vermutlich mit dem Transkriptionsfaktor CREB. Die Veränderungen von DNMT3Lo in Eizellen und DNMT3Ls in den daraus generierten Embryonen lässt vermuten, dass es sich hierbei um eine dynamische Anpassung des Embryos auf äußere Umweltbedingungen der Eizelle über die Methylierung der DNA handelt. N2 - Postovulatory aging and ovarian aging have been identified as key factors in assisted reproductive techniques (ARTs) and have a lasting effect on reproductive success. Postovulatory aging occurs if the mature egg is not fertilized within its physiological time window. On the other hand, ovarian aging describes the decrease in the follicular reserve with increasing age of the female or the ovary, respectively. Both post-ovulatory aging and ovarian aging result in reduced oocyte quality and lower blastocyst rate. The aim of this thesis was to explore the effects of postovulatory aging and ovarian aging in Holstein cattle (Bos taurus) on the DNA methylation of developmentally important genes in oocytes and embryos. Antral follicles of different sizes (<2 mm, 3-5 mm and> 6 mm) were isolated from slaughterhouse ovaries. Female germ cells from middle-sized follicles (3-5 mm) were matured for 24h (physiological conditions) and 48h (aged conditions) in vitro (IVM). The IVM- oocytes were subsequently fertilized in vitro and embryos at the 4-6 cell stage were generated. Promoter methylation of the genes bH19, bSNRPN, bZAR1, bDNMT3A, bOCT4, bDNMT3Lo and bDNMT3Ls was analysed in immature oocytes from antral follicles of different sizes as well as in matured oocytes and the respective embryos. For studying ovarian aging, middle-sized antral follicles were obtained in vivo from animals of different age groups (9-12 months, 3-7 years and 8-11 years). In the extracted immature gametes, the DNA methylation of the promoter regions of bTERF2, bREC8, bBCL-XL, bPISD, bBUB1, bDNMT3Lo, bH19 and bSNRPN was examined. The limiting dilution bisulfite (pyro)sequencing method was applied to determine the promoter methylation of the candidate genes at the single allele level. In immature oocytes from antral follicles of different diameters (<2 mm, 3-5 mm and> 6 mm) an increased occurrence of abnormally methylated alleles of the imprinted genes bH19 and bSNRPN was identified in small follicles (<2 mm). This failure to establish imprinting could be a possible cause of a well-known reduced developmental potential of small follicles (<2 mm) at the epigenetic level. The extended maturation time of the IVM-oocytes resulted in a significant hypermethylation in the promoter region of DNMT3Lo in 48h matured oocytes. After transition from 48h matured oocytes to embryos, a significant hypomethylation of CpG7 of the stem cell specific transcript DNMT3Ls was detected. The same CpG site showed a significant increase of CpGs with unclear methylation state in immature female germ cells with increasing follicular size. This CpG position is located within a potential binding site of the transcription factor CREB. Thus, the methylation data indicates an interaction between the transcription factor CREB and the DNA methylation during development and maturation of oocytes as well as during transition from the oocyte to the embryo. The DNA methylation profiles of the analysed genes in immature oocytes from cows of different age (9-12 months, 3-7 years and 8-11 years) showed no significant differences between age groups. Hence, the ovarian aging in cattle between 9 months and 11 years caused no effect on the DNA methylation of bTERF2, bREC8, bBCL-XL, bPISD, bBUB1, bDNMT3Lo, bH19 and bSNRPN. After a simulated postovulatory aging by in vitro maturation for 48h, a change in the DNA methylation of the oocyte-specific (DNMT3Lo) and stem cell-specific (DNMT3Ls) promoters of the catalytically inactive DNA-methyltransferase DNMT3L was observed. The altered DNA methylation of DNMT3Ls occurs in the early embryo and probably interacts with the transcription factor CREB. The changes of DNMT3Lo in oocytes and DNMT3Ls in the resulting embryos might represent a dynamic adaptation to external environmental conditions. KW - Oozyte KW - Epigenetik KW - Altern KW - DNS-Methyltransferase KW - Ovarielle Alterung KW - Postovulatorische Alterung KW - Antralfollikel KW - Holstein Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144562 ER - TY - THES A1 - Sickel, Wiebke T1 - High-throughput biodiversity assessment - Powers and limitations of meta-barcoding T1 - Hochdurchsatzerfassung von Biodiversität - Stärken und Grenzen von Meta-barcoding N2 - Traditional species identification based on morphological characters is laborious and requires expert knowledge. It is further complicated in the case of species assemblages or degraded and processed material. DNA-barcoding, species identification based on genetic data, has become a suitable alternative, yet species assemblages are still difficult to study. In the past decade meta-barcoding has widely been adopted for the study of species communities, due to technological advances in modern sequencing platforms and because manual separation of individual specimen is not required. Here, meta-barcoding is put into context and applied to the study of bee-collected pollen as well as bacterial communities. These studies provide the basis for a critical evaluation of the powers and limitations of meta-barcoding. Advantages identified include species identification without the need for expert knowledge as well as the high throughput of samples and sequences. In microbiology, meta-barcoding can facilitate directed cultivation of taxa of interest identified with meta-barcoding data. Disadvantages include insufficient species resolution due to short read lengths and incomplete reference databases, as well as limitations in abundance estimation of taxa and functional profiling. Despite these, meta-barcoding is a powerful method for the analysis of species communities and holds high potential especially for automated biomonitoring. N2 - Traditionelle Methoden der Identifizierung von Organismen anhand von morphologischen Merkmalen sind arbeits- und zeitaufwendig und benötigen Expertenkenntnisse der Morphologie. Weitere Probleme liegen in der Analyse von Artgemeinschaften und prozessiertem Material. DNA-barcoding, Artbestimmung anhand von genetischen Merkmalen, hat sich als Alternative herausgebildet, jedoch sind Artgemeinschaften nach wie vor schwierig zu analysieren. Im vergangenen Jahrzehnt wurde meta-barcoding zur Analyse von Artgemeinschaften entwickelt; insbesondere durch die Weiterentwicklung moderner Sequenziergeräte und da eine Auftrennung der Organismen innerhalb einer Gemeinschaft nicht mehr notwendig ist. In der vorliegenden Arbeit wurde zunächst ein Überblick über meta-barcoding erstellt. Die Methode wurde dann für die Analyse von Bienen-gesammeltem Pollen und Bakteriengemeinschaften angewandt. Diese Studien bilden eine gute Basis, um die Vor- und Nachteile von meta-barcoding kritisch zu bewerten. Vorteile beinhalten unter anderem, dass Organismen bestimmt werden können, ohne dass Expertenkenntnisse notwendig sind, sowie der hohe Durchsatz von Proben und Sequenzen. In der Mikrobiologie kann meta-barcoding eine gerichtete Kultivierung von Bakterien erleichtern, die durch meta-barcoding als Zielorganismen indentifiziert wurden. Nachteile finden sich in der manchmal noch unzureichenden Unterscheidung nah ver- wandter Arten aufgrund von kurzen Sequenzlängen und lückenhaften Referenzdatenbanken, sowie Einschränkungen in der Abschätzung von Abundanzen und Funktionen der Organismen innerhalb der Artgemeinschaft. Trotz dieser Problematiken ist meta-barcoding eine leistungsstarke Methode für die Analyse von Artgemeinschaften und ist besonders vielversprechend für automatisiertes Bio-Monitoring. KW - Bacterial community analysis KW - pollen analysis KW - Biodiversity assessment KW - Meta-barcoding KW - Biodiversität KW - DNS-Sequenz Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144573 ER - TY - JOUR A1 - Tsai, Yu-Chen A1 - Grimm, Stefan A1 - Chao, Ju-Lan A1 - Wang, Shih-Chin A1 - Hofmeyer, Kerstin A1 - Shen, Jie A1 - Eichinger, Fred A1 - Michalopoulou, Theoni A1 - Yao, Chi-Kuang A1 - Chang, Chih-Hsuan A1 - Lin, Shih-Han A1 - Sun, Y. Henry A1 - Pflugfelder, Gert O. T1 - Optomotor-blind negatively regulates Drosophila eye development by blocking Jak/STAT signaling JF - PLoS ONE N2 - Organ formation requires a delicate balance of positive and negative regulators. In Drosophila eye development, wingless (wg) is expressed at the lateral margins of the eye disc and serves to block retinal development. The T-box gene optomotor-blind (omb) is expressed in a similar pattern and is regulated by Wg. Omb mediates part of Wg activity in blocking eye development. Omb exerts its function primarily by blocking cell proliferation. These effects occur predominantly in the ventral margin. Our results suggest that the primary effect of Omb is the blocking of Jak/STAT signaling by repressing transcription of upd which encodes the Jak receptor ligand Unpaired. KW - morphogenetic furrow progression KW - cell fate KW - compartment boundary KW - reporter gene KW - compound eye KW - gene expression KW - retinal differentiation KW - acts downstream KW - imaginal disk KW - glial cells Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143577 VL - 10 IS - 3 ER - TY - THES A1 - Schücker, Katharina T1 - The molecular architecture of the meiotic chromosome axis as revealed by super-resolution microscopy T1 - Die molekulare Architektur der meiotischen Chromosomenachse dargestellt mit hochauflösender Mikroskopie N2 - During meiosis proteins of the chromosome axis are important for monitoring chromatin structure and condensation, for pairing and segregation of chromosomes, as well as for accurate recombination. They include HORMA-domain proteins, proteins of the DNA repair system, synaptonemal complex (SC) proteins, condensins and cohesins. To understand more about their function in shaping the meiotic chromosome it is crucial to establish a defined model of their molecular architecture. Up to now their molecular organization was analysed using conventional methods, like confocal scanning microscopy (CLSM) and transmission electron microscopy (TEM). Unfortunately, these techniques are limited either by their resolution power or their localization accuracy. In conclusion, a lot of data on the molecular organization of chromosome axis proteins stays elusive. For this thesis the molecular structure of the murine synaptonemal complex (SC) and the localization of its proteins as well as of three cohesins was analysed with isotropic resolution, providing new insights into their architecture and topography on a nanoscale level. This was done using immunofluorescence labelling in combination with super-resolution microscopy, line profiles and average position determination. The results show that the murine SC has a width of 221.6 nm ± 6.1 nm including a central region (CR) of 148.2 nm ± 2.6 nm. In the CR a multi-layered organization of the central element (CE) proteins was verified by measuring their strand diameters and strand distances and additionally by imaging potential anchoring sites of SYCP1 (synaptonemal complex protein 1) to the lateral elements (LEs). We were able to show that the two LEs proteins SYCP2 and SYCP3 do co-localize alongside their axis and that there is no significant preferential localization towards the inner LE axis of SYCP2. The presented results also predict an orderly organization of murine cohesin complexes (CCs) alongside the chromosome axis in germ cells and support the hypothesis that cohesins in the CR of the SC function independent of CCs. In the end new information on the molecular organization of two main components of the murine chromosome axis were retrieved with nanometer precision and previously unknown details of their molecular architecture and topography were unravelled. N2 - Innerhalb der Meiose sind Proteine der Chromosomenachse wichtig für das Monitoring der Chromatinstruktur und dessen Kondensation, sowie für die Paarung und Trennung der Chromosomen und für eine fehlerfreie Rekombination. Zu diesen Proteinen zählen HORMA-domain Proteine, Proteine des DNA-Reparatur-Systems und des synaptonemalen Komplexes, sowie Kohäsine und Kondesine. Um mehr über ihre Rolle in der Formgebung meiotischer Chromosomen zu erfahren, ist es unabdingbar ein genau definiertes Modell über ihre molekulare Architektur zu erstellen. Bis jetzt wurde ihre molekulare Organisation mit konventionellen Methoden wie dem konfokalen Laser-Scanning-Mikroskop (CLSM) und dem Transmissionselektronenmikroskop (TEM) untersucht. Beide Techniken sind jedoch entweder in ihrer Auflösung oder ihrer Lokalisationsgenauigkeit beschränkt, wodurch viele Daten zur molekularen Organisation der Chromosomenachse noch nicht erfasst werden konnten. Die vorliegende Arbeit untersucht mit isotropischer Auflösung die molekulare Struktur des synaptonemalen Komplexes (SC) der Maus und die Lokalisation seiner Proteine, sowie die Lokalisation von drei Kohäsinen, was neue Einsichten in deren Architektur und Topographie auf der nanomolekularen Ebene erbrachte. Dies gelang durch die Verwendung von Immunfluoreszenzmarkierungen in Kombination mit hochauflösender Mikroskopie, Linienprofilen und durchschnittlicher Positionsbestimmung. Es konnte gezeigt werden, dass der murine SC eine Weite von 221,6 nm ± 6,1 nm besitzt, inklusive einer 148,2 nm ± 2,6 nm weiten zentralen Region (CR). Innerhalb der CR konnte eine mehrschichtige Anordnung der Proteine des zentralen Elements (CE) bestätigt werden. Dies gelang indem ihre Strangdurchmesser und –abstände gemessen worden sind und zusätzlich potentielle Bindestellen von SYCP1 (synaptonemal complex protein 1) an den lateral Elementen des SCs (LEs) abgebildet werden konnten. Zusätzlich konnte gezeigt werden, dass die beiden LE Proteine, SYCP2 und SYCP3, kolokalisieren. Dabei zeigte SYCP2 keine präferentielle Lokalisation im inneren Bereich der LE. Die Ergebnisse der vorliegenden Arbeit deuten auf eine organisierte Anordnung der murinen Kohäsin Komplexe (CCs) entlang der Chromosomenachse in Keimzellen hin und unterstützen die Hypothese, dass Kohäsine innerhalb der CR des SC eine Funktion unabhängig der von CCs haben. Schlussendlich konnten neue Informationen zur molekularen Anordnung von zwei wichtigen Komponenten der murinen Chromosomenachse mit einer Präzision im Nanometerbereich gewonnen werden und bisher nicht bekannte Details ihrer molekularen Architektur und Topographie aufgedeckt werden. KW - Meiose KW - Super-resolution microscopy KW - Meiosis KW - Synaptonemal complex KW - Cohesin complex Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144199 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 - Carstensen, Anne Carola T1 - Identification of novel N-MYC interacting proteins reveals N-MYC interaction with TFIIIC T1 - Identifizierung von neuen N-MYC interagierenden Proteinen offenbart N-MYC's Interaktion mit TFIIIC N2 - N-MYC is a member of the human MYC proto-oncogene family, which comprises three transcription factors (C-, N- and L-MYC) that function in multiple biological processes. Deregulated expression of MYC proteins is linked to tumour initiation, maintenance and progression. For example, a large fraction of neuroblastoma displays high N-MYC levels due to an amplification of the N-MYC encoding gene. MYCN-amplified neuroblastoma depend on high N-MYC protein levels, which are maintained by Aurora-A kinase. Aurora-A interaction with N-MYC interferes with degradation of N-MYC via the E3 ubiquitin ligase SCFFBXW7. However, the underlying mechanism of Aurora-A-mediated stabilisation of N-MYC remains to be elucidated. To identify novel N-MYC interacting proteins, which could be involved in N-MYC stabilisation by Aurora-A, a proteomic analysis of purified N-MYC protein complexes was conducted. Since two alanine mutations in MBI of N-MYC, T58A and S62A (N-MYC mut), disable Aurora-A-mediated stabilisation of N-MYC, N-MYC protein complexes from cells expressing either N-MYC wt or mut were analysed. Proteomic analysis revealed that N-MYC interacts with two deubiquitinating enzymes, USP7 and USP11, which catalyse the removal of ubiquitin chains from target proteins, preventing recognition by the proteasome and subsequent degradation. Although N-MYC interaction with USP7 and USP11 was confirmed in subsequent immunoprecipitation experiments, neither USP7, nor USP11 was shown to be involved in the regulation of N-MYC stability. Besides USP7/11, proteomic analyses identified numerous additional N-MYC interacting proteins that were not described to interact with MYC transcription factors previously. Interestingly, many of the identified N-MYC interaction partners displayed a preference for the interaction with N-MYC wt, suggesting a MBI-dependent interaction. Among these were several proteins, which are involved in three-dimensional organisation of chromatin domains and transcriptional elongation by POL II. Not only the interaction of N-MYC with proteins functioning in elongation, such as the DSIF component SPT5 and the PAF1C components CDC73 and CTR9, was validated in immunoprecipitation experiments, but also with the POL III transcription factor TFIIIC and topoisomerases TOP2A/B. ChIP-sequencing analysis of N-MYC and TFIIIC subunit 5 (TFIIIC5) revealed a large number of joint binding sites in POL II promoters and intergenic regions, which are characterised by the presence of a specific motif that is highly similar to the CTCF motif. Additionally, N-MYC was shown to interact with the ring-shaped cohesin complex that is known to bind to CTCF motifs and to assist the insulator protein CTCF. Importantly, individual ChIP experiments demonstrated that N-MYC, TFIIIC5 and cohesin subunit RAD21 occupy joint binding sites comprising a CTCF motif. Collectively, the results indicate that N-MYC functions in two biological processes that have not been linked to MYC biology previously. Furthermore, the identification of joint binding sites of N-MYC, TFIIIC and cohesin and the confirmation of their interaction with each other suggests a novel function of MYC transcription factors in three-dimensional organisation of chromatin. N2 - N-MYC ist ein Mitglied der humanen MYC proto-Onkogen Familie, welche drei Transkriptionsfaktoren umfasst (C-,N- und L-MYC), die in zahlreichen biologischen Prozessen fun-gieren. Deregulierte Expression der MYC Proteine ist mit Tumorinitiierung, -erhalt und -progression verbunden. Zum Beispiel zeigt ein großer Anteil an Neuroblastomen aufgrund einer Amplifizierung des N-MYC kodierenden Gens hohe N-MYC Level. MYCN-amplifizierte Neuroblastome hängen von den hohen N-MYC Protein Leveln ab, die durch die Aurora-A Kinase erhalten werden. Die Interaktion von Aurora-A mit N-MYC behindert den Abbau von N-MYC durch die E3 Ubiquitin Ligase SCFFBXW7. Allerdings muss der zugrunde liegende Mechanismus der Aurora-A vermittelten Stabilisierung von N-MYC noch aufgedeckt werden. Um neue N-MYC interagierende Proteine zu identifizieren, welche in der N-MYC Stabilisierung durch Aurora-A involviert sind, wurde eine Proteom Analyse der aufgereinigten N-MYC Proteinkomplexe durchgeführt. Da zwei Alanin-Mutationen in MBI von N-MYC, T58A und S62A (N-MYC mut), die Aurora-A vermittelte Stabilisierung von N-MYC verhindern, wurden N-MYC Protein-Komplexe von Zellen, die entweder N-MYC wt oder mut exprimieren analysiert. Die Proteom Analyse offenbarte, dass N-MYC mit zwei Deubiquitinierenden Enzymen, USP7 und USP11, interagiert, welche das Entfernen von Ubiquitinketten von Zielproteinen katalysieren und dadurch die Erkennung durch das Proteasom und den darauf folgenden Abbau verhindern. Obwohl die Interaktion von N-MYC mit USP7 und USP11 in darauf folgenden Immunpräzipitationsexperimenten bestätigt wurde, konnnte weder für USP7, noch für USP11 gezeigt werden, dass es in die Regulierung der Stabilität von N-MYC involviert ist. Neben USP7/11 wurden in der Proteom Analyse zusätzlich zahlreiche mit N-MYC interagierende Proteine identifiziert, die zuvor noch nicht beschrieben wurden mit MYC Transkriptionsfaktoren zu interagieren. Interessanterweise zeigten viele der identifizierten N-MYC Interaktionspartner eine Präferenz für die Interaktion mit N-MYC wt, was eine MBI-abhängige Interaktion suggeriert. Unter diesen waren einige Proteine, die in die drei-dimensionale Organisation von Chromatindomänen und transkriptioneller Elongation durch POL II involviert sind. Nicht nur die Interaktion von N-MYC mit Proteinen, die in der Elongation agieren, wie die DSIF Komponente SPT5 und die PAF1C Komponenten CDC73 und CTR9, wurden in Immunpräzipitationsexperimenten bestätigt, sondern auch mit dem POL III Transkriptionsfaktor TFIIIC und den Topoisomerasen TOP2A/B. Analyse von ChIP-Sequenzierungsexperimenten für N-MYC und TFIIIC Untereinheit 5 (TFIIIC5) offenbarte eine große Anzahl von gemeinsamen Bindungsstellen in POL II Promotoren und intergenen Regionen, welche durch das Vorkommen eines speziellen Motivs gekennzeichent waren, das dem CTCF Motiv sehr ähnlich ist. Zusätzlich wurde gezeigt, dass N-MYC mit dem ringförmigen Cohesin Komplex interagiert, der dafür bekannt ist an CTCF Motive zu binden und dem Insulator Protein CTCF zu assistieren. Entscheidender Weise zeigten individuelle ChIP Experimente, dass N-MYC, TFIIIC5 und die Cohesin Untereinheit RAD21 gemeinsame Bindungstellen haben, die ein CTCF Motiv enthalten. Zusammenfassend weisen die Ergebnisse darauf hin, dass N-MYC in zwei biologischen Prozessen fungiert, die zuvor nicht mit der Biologie von MYC verbunden wurden. Zudem suggeriert die Identifizierung von gemeinsamen Bindungstellen von N-MYC, TFIIIC und Cohesin und die Bestätigung der Interaktion untereinander eine neue Funktion von MYC Transkriptionsfaktoren in der drei-dimensionalen Organisation von Chromatin. KW - Biologie KW - Transkriptionsfaktor KW - Onkogen KW - N-MYC KW - neuroblastoma KW - TFIIIC KW - Aurora-A KW - mass spectrometry KW - cohesin Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143658 ER - TY - JOUR A1 - Schwede, Angela A1 - Jones, Nicola A1 - Engstler, Markus A1 - Carrington, Mark T1 - The VSG C-terminal domain is inaccessible to antibodies on live trypanosomes JF - Molecular & Biochemical Parasitology N2 - In the mammalian host, the Trypanosoma brucei cell surface is covered with a densely packed protein coat of a single protein, the variant surface glycoprotein (VSG). The VSG is believed to shield invariant surface proteins from host antibodies but there is limited information on how far antibodies can penetrate into the VSG monolayer. Here, the VSG surface coat was probed to determine whether it acts as a barrier to binding of antibodies to the membrane proximal VSG C-terminal domain. The binding of C-terminal domain antibodies to VSG221 or VSG118 was compared with antibodies recognising the cognate whole VSGs. The C-terminal VSG domain was inaccessible to antibodies on live cells but not on fixed cells. This provides further evidence that the VSG coat acts as a barrier and protects the cell from antibodies that would otherwise bind to some of the other externally disposed proteins. KW - Trypanosome KW - VSG KW - Trypanosoma brucei KW - Cell surface KW - Antibody Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-142746 VL - 175 IS - 2 ER - TY - JOUR A1 - Schleuning, Matthias A1 - Farwig, Nina A1 - Peters, Marcell K. A1 - Bergsdorf, Thomas A1 - Bleher, Bärbel A1 - Brandl, Roland A1 - Dalitz, Helmut A1 - Fischer, Georg A1 - Freund, Wolfram A1 - Gikungu, Mary W. A1 - Hagen, Melanie A1 - Garcia, Francisco Hita A1 - Kagezi, Godfrey H. A1 - Kaib, Manfred A1 - Kraemer, Manfred A1 - Lung, Tobias A1 - Naumann, Clas M. A1 - Schaab, Gertrud A1 - Templin, Mathias A1 - Uster, Dana A1 - Wägele, J. Wolfgang A1 - Böhning-Gaese, Katrin T1 - Forest Fragmentation and Selective Logging Have Inconsistent Effects on Multiple Animal-Mediated Ecosystem Processes in a Tropical Forest JF - PLoS ONE N2 - Forest fragmentation and selective logging are two main drivers of global environmental change and modify biodiversity and environmental conditions in many tropical forests. The consequences of these changes for the functioning of tropical forest ecosystems have rarely been explored in a comprehensive approach. In a Kenyan rainforest, we studied six animal-mediated ecosystem processes and recorded species richness and community composition of all animal taxa involved in these processes. We used linear models and a formal meta-analysis to test whether forest fragmentation and selective logging affected ecosystem processes and biodiversity and used structural equation models to disentangle direct from biodiversity-related indirect effects of human disturbance on multiple ecosystem processes. Fragmentation increased decomposition and reduced antbird predation, while selective logging consistently increased pollination, seed dispersal and army-ant raiding. Fragmentation modified species richness or community composition of five taxa, whereas selective logging did not affect any component of biodiversity. Changes in the abundance of functionally important species were related to lower predation by antbirds and higher decomposition rates in small forest fragments. The positive effects of selective logging on bee pollination, bird seed dispersal and army-ant raiding were direct, i.e. not related to changes in biodiversity, and were probably due to behavioural changes of these highly mobile animal taxa. We conclude that animal-mediated ecosystem processes respond in distinct ways to different types of human disturbance in Kakamega Forest. Our findings suggest that forest fragmentation affects ecosystem processes indirectly by changes in biodiversity, whereas selective logging influences processes directly by modifying local environmental conditions and resource distributions. The positive to neutral effects of selective logging on ecosystem processes show that the functionality of tropical forests can be maintained in moderately disturbed forest fragments. Conservation concepts for tropical forests should thus include not only remaining pristine forests but also functionally viable forest remnants. KW - Ant-following birds KW - Land-use change KW - Habitat fragmentation KW - Rain-forest KW - Functional diversity KW - Plantation forests KW - Amazonian forest KW - Prunus-africana KW - Seed dispersal KW - Logged forests Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-140093 VL - 6 IS - 11 ER -