TY - JOUR A1 - Mildner, Stephanie A1 - Roces, Flavio T1 - Plasticity of Daily Behavioral Rhythms in Foragers and Nurses of the Ant Camponotus rufipes: Influence of Social Context and Feeding Times JF - PLoS One N2 - Daily activities within an ant colony need precise temporal organization, and an endogenous clock appears to be essential for such timing processes. A clock drives locomotor rhythms in isolated workers in a number of ant species, but its involvement in activities displayed in the social context is unknown. We compared locomotor rhythms in isolated individuals and behavioral rhythms in the social context of workers of the ant Camponotus rufipes. Both forager and nurse workers exhibited circadian rhythms in locomotor activity under constant conditions, indicating the involvement of an endogenous clock. Activity was mostly nocturnal and synchronized with the 12:12h light-dark-cycle. To evaluate whether rhythmicity was maintained in the social context and could be synchronized with non-photic zeitgebers such as feeding times, daily behavioral activities of single workers inside and outside the nest were quantified continuously over 24 hours in 1656 hours of video recordings. Food availability was limited to a short time window either at day or at night, thus mimicking natural conditions of temporally restricted food access. Most foragers showed circadian foraging behavior synchronized with food availability, either at day or nighttime. When isolated thereafter in single locomotor activity monitors, foragers mainly displayed arrhythmicity. Here, high mortality suggested potential stressful effects of the former restriction of food availability. In contrast, nurse workers showed high overall activity levels in the social context and performed their tasks all around the clock with no circadian pattern, likely to meet the needs of the brood. In isolation, the same individuals exhibited in turn strong rhythmic activity and nocturnality. Thus, endogenous activity rhythms were inhibited in the social context, and timing of daily behaviors was flexibly adapted to cope with task demands. As a similar socially-mediated plasticity in circadian rhythms was already shown in honey bees, the temporal organization in C. rufipes and honey bees appear to share similar basic features. KW - honey bees KW - biological locomotion KW - foraging KW - circadian rhythms KW - chronobiology KW - insects KW - nurses KW - ants Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148010 VL - 12 IS - 1 ER - TY - JOUR A1 - Othman, Eman M. A1 - Naseem, Muhammed A1 - Awad, Eman A1 - Dandekar, Thomas A1 - Stopper, Helga T1 - The Plant Hormone Cytokinin Confers Protection against Oxidative Stress in Mammalian Cells JF - PLoS One N2 - Modulating key dynamics of plant growth and development, the effects of the plant hormone cytokinin on animal cells gained much attention recently. Most previous studies on cytokinin effects on mammalian cells have been conducted with elevated cytokinin concentration (in the μM range). However, to examine physiologically relevant dose effects of cytokinins on animal cells, we systematically analyzed the impact of kinetin in cultured cells at low and high concentrations (1nM-10μM) and examined cytotoxic and genotoxic conditions. We furthermore measured the intrinsic antioxidant activity of kinetin in a cell-free system using the Ferric Reducing Antioxidant Power assay and in cells using the dihydroethidium staining method. Monitoring viability, we looked at kinetin effects in mammalian cells such as HL60 cells, HaCaT human keratinocyte cells, NRK rat epithelial kidney cells and human peripheral lymphocytes. Kinetin manifests no antioxidant activity in the cell free system and high doses of kinetin (500 nM and higher) reduce cell viability and mediate DNA damage in vitro. In contrast, low doses (concentrations up to 100 nM) of kinetin confer protection in cells against oxidative stress. Moreover, our results show that pretreatment of the cells with kinetin significantly reduces 4-nitroquinoline 1-oxide mediated reactive oxygen species production. Also, pretreatment with kinetin retains cellular GSH levels when they are also treated with the GSH-depleting agent patulin. Our results explicitly show that low kinetin doses reduce apoptosis and protect cells from oxidative stress mediated cell death. Future studies on the interaction between cytokinins and human cellular pathway targets will be intriguing. KW - DNA damage KW - apoptosis KW - oxidative stress KW - fluorescence recovery after photobleaching KW - lymphocytes KW - antioxidants KW - cell staining KW - cytokinins Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147983 VL - 11 IS - 12 ER - TY - JOUR A1 - Otto, Christoph A1 - Hahlbrock, Theresa A1 - Eich, Kilian A1 - Karaaslan, Ferdi A1 - Jürgens, Constantin A1 - Germer, Christoph-Thomas A1 - Wiegering, Armin A1 - Kämmerer, Ulrike T1 - Antiproliferative and antimetabolic effects behind the anticancer property of fermented wheat germ extract JF - BMC Complementary and Alternative Medicine N2 - Background Fermented wheat germ extract (FWGE) sold under the trade name Avemar exhibits anticancer activity in vitro and in vivo. Its mechanisms of action are divided into antiproliferative and antimetabolic effects. Its influcence on cancer cell metabolism needs further investigation. One objective of this study, therefore, was to further elucidate the antimetabolic action of FWGE. The anticancer compound 2,6-dimethoxy-1,4-benzoquinone (DMBQ) is the major bioactive compound in FWGE and is probably responsible for its anticancer activity. The second objective of this study was to compare the antiproliferative properties in vitro of FWGE and the DMBQ compound. Methods The IC\(_{50}\) values of FWGE were determined for nine human cancer cell lines after 24 h of culture. The DMBQ compound was used at a concentration of 24 μmol/l, which is equal to the molar concentration of DMBQ in FWGE. Cell viability, cell cycle, cellular redox state, glucose consumption, lactic acid production, cellular ATP levels, and the NADH/NAD\(^+\) ratio were measured. Results The mean IC\(_{50}\) value of FWGE for the nine human cancer cell lines tested was 10 mg/ml. Both FWGE (10 mg/ml) and the DMBQ compound (24 μmol/l) induced massive cell damage within 24 h after starting treatment, with changes in the cellular redox state secondary to formation of intracellular reactive oxygen species. Unlike the DMBQ compound, which was only cytotoxic, FWGE exhibited cytostatic and growth delay effects in addition to cytotoxicity. Both cytostatic and growth delay effects were linked to impaired glucose utilization which influenced the cell cycle, cellular ATP levels, and the NADH/NAD\(^+\) ratio. The growth delay effect in response to FWGE treatment led to induction of autophagy. Conclusions FWGE and the DMBQ compound both induced oxidative stress-promoted cytotoxicity. In addition, FWGE exhibited cytostatic and growth delay effects associated with impaired glucose utilization which led to autophagy, a possible previously unknown mechanism behind the influence of FWGE on cancer cell metabolism. KW - cytostatic KW - FWGE KW - benzoquinone KW - cancer cells KW - reactive oxygen species KW - autophagy KW - cytotoxicity Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146013 VL - 16 IS - 160 ER - TY - THES A1 - Pasch, Elisabeth T1 - The role of SUN4 and related proteins in sperm head formation and fertility T1 - Die Rolle von SUN4 und verwandten Proteinen in der Spermienkopfformierung und Fertilität N2 - Spermiogenesis describes the differentiation of haploid germ cells into motile, fertilization-competent spermatozoa. During this fundamental transition the species-specific sperm head is formed, which necessitates profound nuclear restructuring coincident with the assembly of sperm-specific structures and chromatin compaction. In the case of the mouse, it is characterized by reshaping of the early round spermatid nucleus into an elongated sickle-shaped sperm head. This tremendous shape change requires the transduction of cytoskeletal forces onto the nuclear envelope (NE) or even further into the nuclear interior. LINC (linkers of nucleoskeleton and cytoskeleton) complexes might be involved in this process, due to their general function in bridging the NE and thereby physically connecting the nucleus to the peripheral cytoskeleton. LINC complexes consist of inner nuclear membrane integral SUN-domain proteins and outer nuclear membrane KASH-domain counterparts. SUN- and KASH-domain proteins are directly connected to each other within the perinuclear space, and are thus capable of transferring forces across the NE. To date, these protein complexes are known for their essential functions in nuclear migration, anchoring and positioning of the nucleus, and even for chromosome movements and the maintenance of cell polarity and nuclear shape. In this study LINC complexes were investigated with regard to their potential role in sperm head formation, in order to gain further insight into the processes occurring during spermiogenesis. To this end, the behavior and function of the testis-specific SUN4 protein was studied. The SUN-domain protein SUN4, which had received limited characterization prior to this work, was found to be exclusively expressed in haploid stages during germ cell development. In these cell stages, it specifically localized to the posterior NE at regions decorated by the manchette, a spermatid-specific structure which was previously shown to be involved in nuclear shaping. Mice deficient for SUN4 exhibited severely disorganized manchette residues and gravely misshapen sperm heads. These defects resulted in a globozoospermia-like phenotype and male mice infertility. Therefore, SUN4 was not only found to be mandatory for the correct assembly and anchorage of the manchette, but also for the correct localization of SUN3 and Nesprin1, as well as of other NE components. Interaction studies revealed that SUN4 had the potential to interact with SUN3, Nesprin1, and itself, and as such is likely to build functional LINC complexes that anchor the manchette and transfer cytoskeletal forces onto the nucleus. Taken together, the severe impact of SUN4 deficiency on the nucleocytoplasmic junction during sperm development provided direct evidence for a crucial role of SUN4 and other LINC complex components in mammalian sperm head formation and fertility. N2 - Die Spermiogenese beschreibt die Differenzierung haploider Keimzellen zu beweglichen, fortpflanzungsfähigen Spermatozoen. Während dieses fundamentalen Entwicklungsabschnittes wird neben dem Aufbau von spermienspezifischen Strukturen und der Kompaktierung des Chromatins auch der speziesspezifische Spermienkopf geformt. Im Falle der Maus ist dies eine aktive Umformung des runden Zellkerns in einen gestreckten, sichelförmigen Spermienkopf. Eine derart gravierende Formveränderung erfordert eine Kraftweiterleitung aus dem Zytoskelett auf die Kernhülle und das Kerninnere. In diesem Zusammenhang könnten LINC (linkers of nucleoskeleton and cytoskeleton) Komplexe eine Rolle spielen, da ihre grundlegende Funktion darin besteht die Kernhülle zu überbrücken und somit den Kern mit dem peripheren Zytoskelett zu verbinden. LlNC Komplexe werden aus SUN und KASH Domänen Proteinen aufgebaut, welche in die innere beziehungsweise äußere Kernmembran eingelagert sind. Diese membranintegralen Proteine sind direkt miteinander verbunden, so dass sie einen Komplex bilden, der zur Kräfteübertragung geeignet ist. LINC Komplexe besitzen vielfältige Funktionen in Prozessen wie nuklearer Migration, Verankerung und Positionierung des Zellkerns, Chromosomenbewegungen und in der Aufrechterhaltung der Zellpolarität oder der Kernform. Um ein größeres Verständnis der Prozesse während der Spermiogenese zu gewinnen, wurden in dieser Studie die Funktionen von LINC Komplexen in der Spermiogenese und ihre spezifische Rolle bei der gerichteten Spermienkopf-strukturierung untersucht. Dabei wurde insbesondere das Verhalten und die Funktion des bisher wenig charakterisierten SUN Domänen Proteins SUN4 erforscht. Entsprechend der Ergebnisse dieser Studie ist SUN4 ein hodenspezifisches Protein, das ausschließlich in haploiden Keimzellen exprimiert wird. In diesen lokalisiert es in der posterioren Kernhülle, spezifisch in Regionen, an die sich die spermatidenspezifische Manschette anlagert. Dies ist eine Struktur, für die bereits gezeigt wurde, dass sie an der Verformung des Kerns beteiligt ist. SUN4 defiziente Mäuse zeigten ausschließlich Spermatiden mit stark desorganisierten Manschettenüberresten und einen gravierend verformten Spermienkopf. Insgesamt führten die Fehlbildungen zu einem globozoospermieartigen Phänotyp und männlicher Sterilität bei Mäusen. Dabei zeigte sich, dass SUN4 nicht nur zwingend erforderlich ist für den korrekten Aufbau und die Verankerung der Manschette, sondern auch für die korrekte Lokalisation von SUN3 und Nesprin1, wie auch für weitere Komponenten der posterioren Kernhülle. Interaktionsstudien zeigten, dass SUN4 sowohl mit SUN3 und Nesprin1 als auch mit sich selbst interagieren kann, vermutlich um funktionsfähige LINC Komplexe zu bilden, die die Manchette verankern und Kräfte aus dem Zytoskelett auf den Kern übertragen. Zusammenfassend zeigen die schwerwiegenden Auswirkungen auf die kernzytoplasmatische Verbindung während der Spermienentwicklung, die durch den Verlust von SUN4 entstanden, einen direkten Nachweis einer entscheidenden Rolle von SUN4 und anderen LINC-Komplex-Komponenten für die Spermienkopfentwicklung und Fertilität bei Säugetieren. KW - Maus KW - spermiogenesis KW - Fertilität KW - Spermatogenese KW - Kernhülle KW - Molekularbiologie KW - LINC complex KW - SUN domain proteins KW - sperm head formation KW - fertility KW - Spermiogenese KW - Spermienbildung KW - Kernproteine Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-139092 ER - TY - JOUR A1 - Peck, Barrie A1 - Schug, Zachary T. A1 - Zhang, Qifeng A1 - Dankworth, Beatrice A1 - Jones, Dylan T. A1 - Smethurst, Elizabeth A1 - Patel, Rachana A1 - Mason, Susan A1 - Jian, Ming A1 - Saunders, Rebecca A1 - Howell, Michael A1 - Mitter, Richard A1 - Spencer-Dene, Bradley A1 - Stamp, Gordon A1 - McGarry, Lynn A1 - James, Daniel A1 - Shanks, Emma A1 - Aboagye, Eric O. A1 - Critchlow, Susan E. A1 - Leung, Hing Y. A1 - Harris, Adrian L. A1 - Wakelam, Michael J. O. A1 - Gottlieb, Eyal A1 - Schulze, Almut T1 - Inhibition of fatty acid desaturation is detrimental to cancer cell survival in metabolically compromised environments JF - Cancer & Metabolism N2 - Background Enhanced macromolecule biosynthesis is integral to growth and proliferation of cancer cells. Lipid biosynthesis has been predicted to be an essential process in cancer cells. However, it is unclear which enzymes within this pathway offer the best selectivity for cancer cells and could be suitable therapeutic targets. Results Using functional genomics, we identified stearoyl-CoA desaturase (SCD), an enzyme that controls synthesis of unsaturated fatty acids, as essential in breast and prostate cancer cells. SCD inhibition altered cellular lipid composition and impeded cell viability in the absence of exogenous lipids. SCD inhibition also altered cardiolipin composition, leading to the release of cytochrome C and induction of apoptosis. Furthermore, SCD was required for the generation of poly-unsaturated lipids in cancer cells grown in spheroid cultures, which resemble those found in tumour tissue. We also found that SCD mRNA and protein expression is elevated in human breast cancers and predicts poor survival in high-grade tumours. Finally, silencing of SCD in prostate orthografts efficiently blocked tumour growth and significantly increased animal survival. Conclusions Our data implicate lipid desaturation as an essential process for cancer cell survival and suggest that targeting SCD could efficiently limit tumour expansion, especially under the metabolically compromised conditions of the tumour microenvironment. KW - SCD KW - lipidomics KW - prostate cancer KW - breast cancer KW - lipid desaturation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145905 VL - 4 IS - 6 ER - TY - JOUR A1 - Peters, Marcell K. A1 - Hemp, Andreas A1 - Appelhans, Tim A1 - Behler, Christina A1 - Classen, Alice A1 - Detsch, Florian A1 - Ensslin, Andreas A1 - Ferger, Stefan W. A1 - Frederiksen, Sara B. A1 - Gebert, Frederike A1 - Haas, Michael A1 - Helbig-Bonitz, Maria A1 - Hemp, Claudia A1 - Kindeketa, William J. A1 - Mwangomo, Ephraim A1 - Ngereza, Christine A1 - Otte, Insa A1 - Röder, Juliane A1 - Rutten, Gemma A1 - Costa, David Schellenberger A1 - Tardanico, Joseph A1 - Zancolli, Giulia A1 - Deckert, Jürgen A1 - Eardley, Connal D. A1 - Peters, Ralph S. A1 - Rödel, Mark-Oliver A1 - Schleuning, Matthias A1 - Ssymank, Axel A1 - Kakengi, Victor A1 - Zhang, Jie A1 - Böhning-Gaese, Katrin A1 - Brandl, Roland A1 - Kalko, Elisabeth K.V. A1 - Kleyer, Michael A1 - Nauss, Thomas A1 - Tschapka, Marco A1 - Fischer, Markus A1 - Steffan-Dewenter, Ingolf T1 - Predictors of elevational biodiversity gradients change from single taxa to the multi-taxa community level JF - Nature Communications N2 - The factors determining gradients of biodiversity are a fundamental yet unresolved topic in ecology. While diversity gradients have been analysed for numerous single taxa, progress towards general explanatory models has been hampered by limitations in the phylogenetic coverage of past studies. By parallel sampling of 25 major plant and animal taxa along a 3.7 km elevational gradient on Mt. Kilimanjaro, we quantify cross-taxon consensus in diversity gradients and evaluate predictors of diversity from single taxa to a multi-taxa community level. While single taxa show complex distribution patterns and respond to different environmental factors, scaling up diversity to the community level leads to an unambiguous support for temperature as the main predictor of species richness in both plants and animals. Our findings illuminate the influence of taxonomic coverage for models of diversity gradients and point to the importance of temperature for diversification and species coexistence in plant and animal communities. KW - community ecology KW - macroecology KW - tropical ecology KW - biodiversity Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-169374 VL - 7 ER - TY - JOUR A1 - Pfeiffer, Susanne A1 - Krüger, Jacqueline A1 - Maierhofer, Anna A1 - Böttcher, Yvonne A1 - Klöting, Nora A1 - El Hajj, Nady A1 - Schleinitz, Dorit A1 - Schön, Michael R. A1 - Dietrich, Arne A1 - Fasshauer, Mathias A1 - Lohmann, Tobias A1 - Dreßler, Miriam A1 - Stumvoll, Michael A1 - Haaf, Thomas A1 - Blüher, Matthias A1 - Kovacs, Peter T1 - Hypoxia-inducible factor 3A gene expression and methylation in adipose tissue is related to adipose tissue dysfunction JF - Scientific Reports N2 - Recently, a genome-wide analysis identified DNA methylation of the HIF3A (hypoxia-inducible factor 3A) as strongest correlate of BMI. Here we tested the hypothesis that HIF3A mRNA expression and CpG-sites methylation in adipose tissue (AT) and genetic variants in HIF3A are related to parameters of AT distribution and function. In paired samples of subcutaneous AT (SAT) and visceral AT (VAT) from 603 individuals, we measured HIF3A mRNA expression and analyzed its correlation with obesity and related traits. In subgroups of individuals, we investigated the effects on HIF3A genetic variants on its AT expression (N = 603) and methylation of CpG-sites (N = 87). HIF3A expression was significantly higher in SAT compared to VAT and correlated with obesity and parameters of AT dysfunction (including CRP and leucocytes count). HIF3A methylation at cg22891070 was significantly higher in VAT compared to SAT and correlated with BMI, abdominal SAT and VAT area. Rs8102595 showed a nominal significant association with AT HIF3A methylation levels as well as with obesity and fat distribution. HIF3A expression and methylation in AT are fat depot specific, related to obesity and AT dysfunction. Our data support the hypothesis that HIF pathways may play an important role in the development of AT dysfunction in obesity. KW - gene expression KW - adipose KW - hypoxia-inducible factor 3A KW - adipose tissue dysfunction KW - obesity Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-167662 VL - 6 IS - 27969 ER - TY - JOUR A1 - Rosenbaum, Corinna A1 - Schick, Martin Alexander A1 - Wollborn, Jakob A1 - Heider, Andreas A1 - Scholz, Claus-Jürgen A1 - Cecil, Alexander A1 - Niesler, Beate A1 - Hirrlinger, Johannes A1 - Walles, Heike A1 - Metzger, Marco T1 - Activation of Myenteric Glia during Acute Inflammation In Vitro and In Vivo JF - PLoS One N2 - Background Enteric glial cells (EGCs) are the main constituent of the enteric nervous system and share similarities with astrocytes from the central nervous system including their reactivity to an inflammatory microenvironment. Previous studies on EGC pathophysiology have specifically focused on mucosal glia activation and its contribution to mucosal inflammatory processes observed in the gut of inflammatory bowel disease (IBD) patients. In contrast knowledge is scarce on intestinal inflammation not locally restricted to the mucosa but systemically affecting the intestine and its effect on the overall EGC network. Methods and Results In this study, we analyzed the biological effects of a systemic LPS-induced hyperinflammatory insult on overall EGCs in a rat model in vivo, mimicking the clinical situation of systemic inflammation response syndrome (SIRS). Tissues from small and large intestine were removed 4 hours after systemic LPS-injection and analyzed on transcript and protein level. Laser capture microdissection was performed to study plexus-specific gene expression alterations. Upon systemic LPS-injection in vivo we observed a rapid and dramatic activation of Glial Fibrillary Acidic Protein (GFAP)-expressing glia on mRNA level, locally restricted to the myenteric plexus. To study the specific role of the GFAP subpopulation, we established flow cytometry-purified primary glial cell cultures from GFAP promotor-driven EGFP reporter mice. After LPS stimulation, we analyzed cytokine secretion and global gene expression profiles, which were finally implemented in a bioinformatic comparative transcriptome analysis. Enriched GFAP+ glial cells cultured as gliospheres secreted increased levels of prominent inflammatory cytokines upon LPS stimulation. Additionally, a shift in myenteric glial gene expression profile was induced that predominantly affected genes associated with immune response. Conclusion and Significance Our findings identify the myenteric GFAP-expressing glial subpopulation as particularly susceptible and responsive to acute systemic inflammation of the gut wall and complement knowledge on glial involvement in mucosal inflammation of the intestine. KW - gene expression KW - gastrointestinal tract KW - inflammatory bowel disease KW - central nervous system KW - systemic inflammatory response syndrome KW - inflammation KW - astrocytes KW - cytokines Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146544 VL - 11 IS - 3 ER - TY - THES A1 - Ruf, Franziska T1 - The circadian regulation of eclosion in \(Drosophila\) \(melanogaster\) T1 - Die zeitliche Steuerung des Adultschlupfes in \(Drosophila\) \(melanogaster\) N2 - Eclosion is the emergence of an adult insect from the pupal case at the end of development. In the fruit fly Drosophila melanogaster, eclosion is a circadian clock-gated event and is regulated by various peptides. When studied on the population level, eclosion reveals a clear rhythmicity with a peak at the beginning of the light-phase that persists also under constant conditions. It is a long standing hypothesis that eclosion gating to the morning hours with more humid conditions is an adaption to reduce water loss and increase the survival. Eclosion behavior, including the motor pattern required for the fly to hatch out of the puparium, is orchestrated by a well-characterized cascade of peptides. The main components are ecdysis-triggering hormone (ETH), eclosion hormone (EH) and crustacean cardioactive peptide (CCAP). The molt is initiated by a peak level and pupal ecdysis by a subsequent decline of the ecdysteroid ecdysone. Ecdysteroids are produced by the prothoracic gland (PG), an endocrine tissue that contains a peripheral clock and degenerates shortly after eclosion. Production and release of ecdysteroids are regulated by the prothoracicotropic hormone (PTTH). Although many aspects of the circadian clock and the peptidergic control of the eclosion behavior are known, it still remains unclear how both systems are interconnected. The aim of this dissertation research was to dissect this connection and evaluate the importance of different Zeitgebers on eclosion rhythmicity under natural conditions. Potential interactions between the central clock and the peptides regulating ecdysis motor behavior were evaluated by analyzing the influence of CCAP on eclosion rhythmicity. Ablation and silencing of CCAP neurons, as well as CCAP null-mutation did not affect eclosion rhythmicity under either light or temperature entrainment nor under natural conditions. To dissect the connection between the central and the peripheral clock, PTTH neurons were ablated. Monitoring eclosion under light and temperature entrainment revealed that eclosion became arrhythmic under constant conditions. However, qPCR expression analysis revealed no evidence for cycling of Ptth mRNA in pharate flies. To test for a connection with pigment-dispersing factor (PDF)-expressing neurons, the PDF receptor (PDFR) and short neuropeptide F receptor (sNPFR) were knocked down in the PTTH neurons. Knockdown of sNPFR, but not PDFR, resulted in arrhythmic eclosion under constant darkness conditions. PCR analysis of the PTTH receptor, Torso, revealed its expression in the PG and the gonads, but not in the brain or eyes, of pharate flies. Knockdown of torso in the PG lead to arrhythmicity under constant conditions, which provides strong evidence for the specific effect of PTTH on the PG. These results suggest connections from the PDF positive lateral neurons to the PTTH neurons via sNPF signaling, and to the PG via PTTH and Torso. This interaction presumably couples the period of the peripheral clock in the PG to that of the central clock in the brain. To identify a starting signal for eclosion and possible further candidates in the regulation of eclosion behavior, chemically defined peptidergic and aminergic neurons were optogenetically activated in pharate pupae via ChR2-XXL. This screen approach revealed two candidates for the regulation of eclosion behavior: Dromyosuppressin (DMS) and myo-inhibitory peptides (MIP). However, ablation of DMS neurons did not affect eclosion rhythmicity or success and the exact function of MIP must be evaluated in future studies. To assess the importance of the clock and of possible Zeitgebers in nature, eclosion of the wildtype Canton S and the clock mutant per01 and the PDF signaling mutants pdf01 and han5304 was monitored under natural conditions. For this purpose, the Würzburg eclosion monitor (WEclMon) was developed, which is a new open monitoring system that allows direct exposure of pupae to the environment. A general decline of rhythmicity under natural conditions compared to laboratory conditions was observed in all tested strains. While the wildtype and the pdf01 and han5304 mutants stayed weakly rhythmic, the per01 mutant flies eclosed mostly arrhythmic. PDF and its receptor (PDFR encoded by han) are required for the synchronization of the clock network and functional loss can obviously be compensated by a persisting synchronization to external Zeitgebers. The loss of the central clock protein PER, however, lead to a non-functional clock and revealed the absolute importance of the clock for eclosion rhythmicity. To quantitatively analyze the effect of the clock and abiotic factors on eclosion rhythmicity, a statistical model was developed in cooperation with Oliver Mitesser and Thomas Hovestadt. The modelling results confirmed the clock as the most important factor for eclosion rhythmicity. Moreover, temperature was found to have the strongest effect on the actual shape of the daily emergence pattern, while light has only minor effects. Relative humidity could be excluded as Zeitgeber for eclosion and therefore was not further analyzed. Taken together, the present dissertation identified the so far unknown connection between the central and peripheral clock regulating eclosion. Furthermore, a new method for the analysis of eclosion rhythms under natural conditions was established and the necessity of a functional clock for rhythmic eclosion even in the presence of multiple Zeitgebers was shown. N2 - Der Schlupf adulter Fliegen aus dem Puparium wird in der Taufliege Drosophila melanogaster zum einen von der inneren Uhr und zum anderen von Peptiden gesteuert. Beobachtet man den Schlupf auf der Populationsebene, lässt sich erkennen, dass die meisten Fliegen zu Beginn der Lichtphase schlüpfen. Diese Rhythmizität im Schlupfverhalten von Fliegenpopulationen hält auch unter konstanten Bedingungen an. Seit langer Zeit wird angenommen, dass der Schlupf am Morgen eine Anpassung an feuchte Bedingungen ist, wodurch der Wasserverlust verringert und die Überlebenswahrscheinlichkeit erhöht werden könnte. Das stereotype motorische Schlupfverhalten, mit dem sich die Fliege aus der Puppenhülle befreit, wird durch das gut untersuchte Zusammenspiel zahlreicher Peptide gesteuert. Die wichtigsten Peptide sind hierbei das ecdysis-triggering hormone (ETH), das Schlupfhormon (EH) und das crustacean cardioactive peptide (CCAP). Wie bei jedem Schlupf wird die Häutung durch eine stark erhöhte Produktion des Ecdysteroids Ecdyson ausgelöst. Der anschließende Abfall der Ecdyson-Titer löst dann den Adultschlupf aus. Ecdysteroide werden in der Prothorakaldrüse (PD) gebildet, die eine periphere Uhr besitzt und kurz nach dem Adultschlupf zurückgebildet wird. Das prothorakotrope Hormon (PTTH) reguliert sowohl die Produktion als auch die Freisetzung der Ecdysteroide aus der PD. Obwohl bereits viel über den Aufbau und die Funktionsweise der inneren Uhr und der Kontrolle des Adultschlupfes durch Peptide bekannt ist, weiß man bisher nicht, wie beide Systeme miteinander interagieren. Das Hauptziel der vorliegenden Arbeit war es, einerseits diese Verbindung zu untersuchen und andererseits die Gewichtung verschiedener Zeitgeber für den Adultschlupf unter natürlichen Bedingungen zu bewerten. Um eine mögliche Verbindung zwischen der zentralen Uhr und den Peptiden, die das motorische Verhalten während des Schlupfes steuern, zu untersuchen, wurde der Einfluss von CCAP auf die Schlupfrhythmik betrachtet. Hierzu wurden die CCAP-exprimierenden Neurone genetisch ablatiert oder elektrisch stillgelegt, sowie zusätzlich eine CCAP-defiziente Mutante getestet. Weder unter künstlichen Licht- oder Temperaturzyklen, noch unter natürlichen Bedingungen wurden Effekte auf den Schlupfrhythmus bei veränderter CCAP Verfügbarkeit beobachtet. Die Verbindung zwischen der zentralen und der peripheren Uhr der PD wurde untersucht, indem die PTTH-exprimierenden Neurone in Fliegen ablatiert wurden. Dies führte sowohl unter konstanten Licht- als auch Temperaturbedingungen zu arrhythmischem Schlupf der Populationen. Die Analyse der Expression von Ptth mRNA mittels qPCR lieferte keine Hinweise auf eine zyklische Regulation des Ptth Transkripts in pharaten Tieren. Um eine Verbindung zu pigment-dispersing factor (PDF)-exprimierenden Uhrneuronen nachzuweisen, wurden die Rezeptoren von PDF (PDFR) und dem short Neuropeptide F (sNPFR) in den PTTH- Neuronen herunterreguliert. Nur der Verlust von sNPFR führte unter konstanten Bedingungen zu arrhythmischem Schlupf. RT-PCR-Analyse der mRNA Expression des Rezeptors von PTTH, Torso, ergab, dass torso mRNA in pharaten Fliegen nur in der PD und in den Gonaden exprimiert wird, nicht jedoch im Gehirn. Das Herrunterregulieren der torso mRNA in der PD führte unter konstanten Bedingungen zu arrhythmischem Schlupf und lieferte deutliche Hinweise zur spezifischen Funktion von PTTH in der PD. Diese Ergebnisse zeigen eine sNPF-vermittelte Verbindung zwischen den PDF-positiven lateralen Neuronen und den PTTH-Neuronen, welche über PTTH und Torso weiter bis in die PD reicht. Durch diese Verbindung wird vermutlich die Periode der peripheren Uhr in der PD an die Periode der zentralen Uhr im Gehirn angepasst. Um ein Startsignal für den Adultschlupf und weitere mögliche Kandidaten, die eine Rolle in der Steuerung des Schlupfes spielen, zu identifizieren, wurden chemisch definierte kleine Gruppen peptiderger und aminerger Neurone optogenetisch durch das Kanalrhodopsin ChR2-XXL aktiviert. In dieser Testreihe wurden Dromyosuppressin (DMS) und myoinhibitorisches Peptid (MIP) als mögliche Kandidaten ermittelt. Eine Ablation der DMS-Neurone hatte jedoch keine Auswirkungen auf Schlupfrhythmik und -erfolg. Die genaue Funktion von MIP sollte in zukünftigen Experimenten untersucht werden. Um die Gewichtung der Uhr und möglicher Zeitgeber für das natürliche Verhalten zu bestimmen, wurde der Schlupf des Wildtyps Canton S, der Uhrmutante per01 sowie der PDF-Signalwegsmutanten pdf01 und han5304 (han codiert für den PDFR) unter natürlichen Bedingungen beobachtet. Hierfür wurde ein neues und offenes Aufzeichnungssystem entwickelt: der Würzburger Schlupfmonitor (WEclMon), der einen direkten Kontakt der Puppen mit den sie umgebenden abiotischen Bedingungen ermöglicht. Im Vergleich zu Laborbedingungen war die Rhythmizität des Schlupfes unter natürlichen Bedingungen in allen getesteten Fliegenlinien weniger ausgeprägt. Während der Wildtyp sowie die pdf01 und han5304 Mutanten weiterhin schwach rhythmisch schlüpften, schlüpfte die per01 Mutante hauptsächlich arrhythmisch. Das Zusammenspiel zwischen PDF und seinem Rezeptor synchronisiert das Uhrnetzwerk, und der Verlust dieser Interaktion kann durch tägliches neues Ausrichten an den Zeitgebern ausgeglichen werden. Der Verlust des Uhrproteins PER unterbindet jedoch die komplette Funktionsfähigkeit der Uhr. Dadurch wird die Notwendigkeit der Uhr für einen rhythmischen Schlupf unterstrichen. Um den Einfluss der Uhr und abiotischer Faktoren auf den Schlupfrhythmus zu untersuchen, wurde im Rahmen einer Kooperation mit Oliver Mitesser und Thomas Hovestadt ein statistisches Modell entwickelt. Die Ergebnisse der Modellierung unterstützen die Hypothese, dass die Uhr der wichtigste Faktor für einen rhythmischen Schlupf auch unter Zeitgeber-Bedingungen ist. Die Umgebungstemperatur übt hingegen den stärksten Einfluss auf die Form des täglichen Schlupfmusters aus, während Licht hier nur einen schwachen Einfluss hat. Es konnte gezeigt werden, dass sich relative Luftfeuchtigkeit nicht als Zeitgeber für den Schlupf eignet, weshalb sie in weiteren Untersuchungen nicht berücksichtigt wurde. Zusammenfassend lässt sich sagen, dass mit der vorliegenden Arbeit die Verbindung zwischen der zentralen und peripheren Uhr in der Steuerung des Schlupfes identifiziert werden konnten, die bisher nicht bekannt war. Außerdem wurde eine neue Methode der Untersuchung des Adultschlupfes unter natürlichen Bedingungen etabliert und die Notwendigkeit einer intakten Uhr für einen rhythmischen Adultschlupf selbst in Anwesenheit mehrerer Zeitgeber konnte herausgestellt werden. KW - Taufliege KW - Tagesrhythmus KW - Adultschlupfes Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146265 ER - TY - JOUR A1 - Scharaw, Sandra A1 - Iskar, Murat A1 - Ori, Alessandro A1 - Boncompain, Gaelle A1 - Laketa, Vibor A1 - Poser, Ina A1 - Lundberg, Emma A1 - Perez, Franck A1 - Beck, Martin A1 - Bork, Peer A1 - Pepperkok, Rainer T1 - The endosomal transcriptional regulator RNF11 integrates degradation and transport of EGFR JF - Journal of Cell Biology N2 - Stimulation of cells with epidermal growth factor (EGF) induces internalization and partial degradation of the EGF receptor (EGFR) by the endo-lysosomal pathway. For continuous cell functioning, EGFR plasma membrane levels are maintained by transporting newly synthesized EGFRs to the cell surface. The regulation of this process is largely unknown. In this study, we find that EGF stimulation specifically increases the transport efficiency of newly synthesized EGFRs from the endoplasmic reticulum to the plasma membrane. This coincides with an up-regulation of the inner coat protein complex II (COP II) components SEC23B, SEC24B, and SEC24D, which we show to be specifically required for EGFR transport. Up-regulation of these COP II components requires the transcriptional regulator RNF11, which localizes to early endosomes and appears additionally in the cell nucleus upon continuous EGF stimulation. Collectively, our work identifies a new regulatory mechanism that integrates the degradation and transport of EGFR in order to maintain its physiological levels at the plasma membrane. KW - Epidermal growth-factor KW - finger protein 11 KW - receptor tyrosine kinases KW - early secretory pathway KW - breast-cancer KW - brefeldin-a KW - E3 ligase KW - trafficking KW - export KW - endoplasmic-reticulum Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186731 VL - 215 IS - 4 ER -