TY - JOUR A1 - Ankenbrand, Markus J. A1 - Weber, Lorenz A1 - Becker, Dirk A1 - Förster, Frank A1 - Bemm, Felix T1 - TBro: visualization and management of de novo transcriptomes JF - Database N2 - RNA sequencing (RNA-seq) has become a powerful tool to understand molecular mechanisms and/or developmental programs. It provides a fast, reliable and cost-effective method to access sets of expressed elements in a qualitative and quantitative manner. Especially for non-model organisms and in absence of a reference genome, RNA-seq data is used to reconstruct and quantify transcriptomes at the same time. Even SNPs, InDels, and alternative splicing events are predicted directly from the data without having a reference genome at hand. A key challenge, especially for non-computational personnal, is the management of the resulting datasets, consisting of different data types and formats. Here, we present TBro, a flexible de novo transcriptome browser, tackling this challenge. TBro aggregates sequences, their annotation, expression levels as well as differential testing results. It provides an easy-to-use interface to mine the aggregated data and generate publication-ready visualizations. Additionally, it supports users with an intuitive cart system, that helps collecting and analysing biological meaningful sets of transcripts. TBro’s modular architecture allows easy extension of its functionalities in the future. Especially, the integration of new data types such as proteomic quantifications or array-based gene expression data is straightforward. Thus, TBro is a fully featured yet flexible transcriptome browser that supports approaching complex biological questions and enhances collaboration of numerous researchers. KW - database Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147954 VL - 2016 ER - TY - JOUR A1 - Sommerlandt, Frank M. J. A1 - Spaethe, Johannes A1 - Rössler, Wolfgang A1 - Dyer, Adrian G. T1 - Does Fine Color Discrimination Learning in Free-Flying Honeybees Change Mushroom-Body Calyx Neuroarchitecture? JF - PLoS One N2 - Honeybees learn color information of rewarding flowers and recall these memories in future decisions. For fine color discrimination, bees require differential conditioning with a concurrent presentation of target and distractor stimuli to form a long-term memory. Here we investigated whether the long-term storage of color information shapes the neural network of microglomeruli in the mushroom body calyces and if this depends on the type of conditioning. Free-flying honeybees were individually trained to a pair of perceptually similar colors in either absolute conditioning towards one of the colors or in differential conditioning with both colors. Subsequently, bees of either conditioning groups were tested in non-rewarded discrimination tests with the two colors. Only bees trained with differential conditioning preferred the previously learned color, whereas bees of the absolute conditioning group, and a stimuli-naïve group, chose randomly among color stimuli. All bees were then kept individually for three days in the dark to allow for complete long-term memory formation. Whole-mount immunostaining was subsequently used to quantify variation of microglomeruli number and density in the mushroom-body lip and collar. We found no significant differences among groups in neuropil volumes and total microglomeruli numbers, but learning performance was negatively correlated with microglomeruli density in the absolute conditioning group. Based on these findings we aim to promote future research approaches combining behaviorally relevant color learning tests in honeybees under free-flight conditions with neuroimaging analysis; we also discuss possible limitations of this approach.q KW - bees KW - behavioral conditioning KW - learning KW - color vision KW - vision KW - calyx KW - cognition KW - honey bees Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147932 VL - 11 IS - 10 ER - TY - JOUR A1 - Seren, Ümit A1 - Grimm, Dominik A1 - Fitz, Joffrey A1 - Weigel, Detlef A1 - Nordborg, Magnus A1 - Borgwardt, Karsten A1 - Korte, Arthur T1 - AraPheno: a public database for Arabidopsis thaliana phenotypes JF - Nucleic Acids Research N2 - Natural genetic variation makes it possible to discover evolutionary changes that have been maintained in a population because they are advantageous. To understand genotype–phenotype relationships and to investigate trait architecture, the existence of both high-resolution genotypic and phenotypic data is necessary. Arabidopsis thaliana is a prime model for these purposes. This herb naturally occurs across much of the Eurasian continent and North America. Thus, it is exposed to a wide range of environmental factors and has been subject to natural selection under distinct conditions. Full genome sequencing data for more than 1000 different natural inbred lines are available, and this has encouraged the distributed generation of many types of phenotypic data. To leverage these data for meta analyses, AraPheno (https://arapheno.1001genomes.org) provide a central repository of population-scale phenotypes for A. thaliana inbred lines. AraPheno includes various features to easily access, download and visualize the phenotypic data. This will facilitate a comparative analysis of the many different types of phenotypic data, which is the base to further enhance our understanding of the genotype–phenotype map. KW - phenotype KW - arabidopsis KW - genotype Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147909 VL - 45 IS - D1 ER - TY - JOUR A1 - Krajinovic, K. A1 - Reimer, S. A1 - Kudlich, T. A1 - Germer, C. T. A1 - Wiegering, A. T1 - “Rendezvous technique” for intraluminal vacuum therapy of anastomotic leakage of the jejunum JF - Surgical Case Reports N2 - Background Anastomotic leakage (AL) is one of the most common and serious complications following visceral surgery. In recent years, endoluminal vacuum therapy has dramatically changed therapeutic options for AL, but its use has been limited to areas easily accessible by endoscope. Case presentation We describe the first use of endoluminal vacuum therapy in the small intestine employing a combined surgical and endoscopic “rendezvous technique” in which the surgeon assists the endoscopic placement of an endoluminal vacuum therapy sponge in the jejunum by means of a pullback string. This technique led to a completely closed AL after 27 days and 7 changes of the endosponge. Conclusion The combined surgical and endoscopic rendezvous technique can be useful in cases of otherwise difficult endosponge placement. KW - endosponge KW - anastomotic leakage Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147883 VL - 2 IS - 114 ER - TY - JOUR A1 - Adolfi, Mateus C. A1 - Herpin, Amaury A1 - Regensburger, Martina A1 - Sacquegno, Jacopo A1 - Waxman, Joshua S. A1 - Schartl, Manfred T1 - Retinoic acid and meiosis induction in adult versus embryonic gonads of medaka JF - Scientific Reports N2 - In vertebrates, one of the first recognizable sex differences in embryos is the onset of meiosis, known to be regulated by retinoic acid (RA) in mammals. We investigated in medaka a possible meiotic function of RA during the embryonic sex determination (SD) period and in mature gonads. We found RA mediated transcriptional activation in germ cells of both sexes much earlier than the SD stage, however, no such activity during the critical stages of SD. In adults, expression of the RA metabolizing enzymes indicates sexually dimorphic RA levels. In testis, RA acts directly in Sertoli, Leydig and pre-meiotic germ cells. In ovaries, RA transcriptional activity is highest in meiotic oocytes. Our results show that RA plays an important role in meiosis induction and gametogenesis in adult medaka but contrary to common expectations, not for initiating the first meiosis in female germ cells at the SD stage. KW - developmental biology KW - molecular biology Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147843 VL - 6 ER - TY - THES A1 - Maurus, Katja T1 - Melanoma Maintenance by the AP1 Transcription Factor FOSL1 T1 - Der Einfluss des Transkriptionsfaktors FOSL1 auf protumorigene Effekte im Melanom N2 - Identifying novel driver genes in cancer remains a crucial step towards development of new therapeutic approaches and the basic understanding of the disease. This work describes the impact of the AP1 transcription activator component FOSL1 on melanoma maintenance. FOSL1 is strongly upregulated during the progression of melanoma and the protein abundance is highest in metastases. I found that the regulation of FOSL1 is strongly dependent on ERK1/2- and PI3K- signaling, two pathways frequently activated in melanoma. Moreover, the involvement of p53 in FOSL1 regulation in melanoma was investigated. Elevated levels of the tumor suppressor led to decreased FOSL1 protein levels in a miR34a/miR34c- dependent manner. The benefit of elevated FOSL1 amounts in human melanoma cell lines was analyzed by overexpression of FOSL1 in cell lines with low endogenous FOSL1 levels. Enhanced levels of FOSL1 had several pro-tumorigenic effects in human melanoma cell lines. Besides increased proliferation and migration rates, FOSL1 overexpression induced the colony forming ability of the cells. Additionally, FOSL1 was necessary for anchorage independent growth in 3D cell cultures. Microarray analyses revealed novel downstream effectors of FOSL1. On the one hand, FOSL1 was able to induce the transcription of different neuron-related genes, such as NEFL, NRP1 and TUBB3. On the other hand, FOSL1 influenced the transcription of DCT, a melanocyte specific gene, in dependence of the differentiation of the melanoma cell line, indicating dedifferentiation. Furthermore, FOSL1 induced the transcription of HMGA1, a chromatin remodeling protein with reprogramming ability, which is characteristic for stem cells. Consequently, the influence of HMGA1 on melanoma maintenance was investigated. In addition to decreased proliferation and reduced anoikis resistance, HMGA1 knockdown reduced melanoma cell survival. Interestingly, the FOSL1 induced pro-tumorigenic effects were demonstrated to be dependent on the HMGA1 level. HMGA1 manipulation reversed FOSL1 induced proliferation and colony forming ability, as well as the anchorage independent growth effect. In conclusion, I could show that additional FOSL1 confers a clear growth benefit to melanoma cells. This benefit is attributed to the induction of stem cell determinants, but can be blocked by the inhibition of the ERK1/2 or PI3K signaling pathways. N2 - Die Identifizierung von neuen onkogenen Mutationen in Tumoren ist nach wie vor ein unerlässlicher Schritt für die Entwicklung neuer Therapieansätze und für das grundlegende Verständnis der Tumorerkrankungen. Die vorliegende Arbeit beschreibt den Einfluss der AP1-Transkriptionskomplexkomponente FOSL1 auf die Tumorigenität des humanen Melanoms. FOSL1 wird im Verlauf der Melanomentwicklung stark hochreguliert und ist in Metastasen am stärksten exprimiert. Darüber hinaus konnte gezeigt werden, dass FOSL1 Expression stark von ERK1/2- und PI3K- vermittelten Signalen abhängig ist, welche im Melanom sehr häufig übermäßig aktiviert sind. Auch p53 ist an der Regulierung von FOSL1 im Melanom beteiligt. Durch eine Erhöhung der Proteinmenge dieses Tumorsuppressors konnte ich die Verminderung des FOSL1-Levels beobachten und konnte weiterhin zeigen, dass dieser Regulation ein miR34a/c- vermittelter Mechanismus unterliegt. Weiterhin untersuchte ich den Vorteil einer erhöhten FOSL1- Menge in menschlichen Melanomzellen, indem FOSL1 in Zellen mit niedrigem endogenen FOSL1- Gehalt konstitutiv überexprimiert wurde. Erhöhte FOSL1- Mengen hatten unterschiedliche protumorigene Effekte auf humane Melanomzellen. Neben deutlich gesteigerter Proliferation und Migration konnte ich auch die FOSL1- induzierte Koloniebildung der Zellen demonstrieren. Ergänzend konnte gezeigt werden, dass FOSL1- Expression für Anoikisresistenz von Zellen notwendig ist. Des Weiteren konnte mit Hilfe einer Microarrayanalyse neue FOSL1- regulierte Effektoren identifiziert werden. Zunächst konnte demonstriert werden, dass FOSL1 zahlreiche neuronale Gene in ihrer Expression beeinflusst. Im Speziellen wurde NEFL, NRP1 und TUBB3 validiert. Zusätzlich nahm FOSL1 Einfluss auf die Expression von DCT, einem melanozytenspezifisch exprimierten Gen. Die Regulierung von DCT durch FOSL1 war abhängig vom Differenzierungsgrad der untersuchten Melanomzelllinien und wies, zusammen mit der Induktion von neuronal-assoziierten Genen, auf Dedifferenzierungsvorgänge hin. Neben den neuronalen Genen wurde auch die Expression von HMGA1, einem Chromatin-Remodeling-Faktor mit Reprogrammierungseigenschaften, durch FOSL1 induziert, was unter anderem charakteristisch für Stammzelligkeit ist. Infolge dieser Beobachtungen wurde der Einfluss von HMGA1 auf das humane Melanom untersucht. Die Herabregulierung von HMGA1 hatte unterschiedliche antitumorigene Effekte auf Melanomzellen. Zusätzlich zu stark verminderter Proliferation und Anoikisresistenz zeigten die Melanomzellen auch reduzierte Überlebensraten. Interessanterweise waren die FOSL1- induzierten, protumorigenen Effekte stark abhängig vom HMGA1- Gehalt der Zellen. Die Manipulation der HMGA1- Level machte die FOSL1- induzierte Proliferation, die Fähigkeit zur Koloniebildung und die Anoikisresistenz rückgängig. Zusammenfassend konnte ich darstellen, dass zusätzliches FOSL1 einer Melanomzelle einen klaren Wachstumsvorteil verschafft. Dieser Vorteil ist der Induktion von Stammzelldeterminanten zu verdanken und kann durch die spezifische Inhibierung von ERK1/2- und PI3K- Signalkaskaden verhindert werden. KW - Melanom KW - FOSL1 KW - Melanoma Maintenance KW - Transkriptionsfaktor Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-142995 ER - TY - JOUR A1 - Lichthardt, Sven A1 - Kerscher, Alexander A1 - Dietz, Ulrich A. A1 - Jurowich, Christian A1 - Kunzmann, Volker A1 - von Rahden, Burkhard H. A. A1 - Germer, Christoph-Thomas A1 - Wiegering, Armin T1 - Original article: role of adjuvant chemotherapy in a perioperative chemotherapy regimen for gastric cancer JF - BMC Cancer N2 - Background Multimodal treatment strategies – perioperative chemotherapy (CTx) and radical surgery – are currently accepted as treatment standard for locally advanced gastric cancer. However, the role of adjuvant postoperative CTx (postCTx) in addition to neoadjuvant preoperative CTx (preCTx) in this setting remains controversial. Methods Between 4/2006 and 12/2013, 116 patients with locally advanced gastric cancer were treated with preCTx. 72 patients (62 %), in whom complete tumor resection (R0, subtotal/total gastrectomy with D2-lymphadenectomy) was achieved, were divided into two groups, one of which receiving adjuvant therapy (n = 52) and one without (n = 20). These groups were analyzed with regard to survival and exclusion criteria for adjuvant therapy. Results Postoperative complications, as well as their severity grade, did not correlate with fewer postCTx cycles administered (p = n.s.). Long-term survival was shorter in patients receiving postCTx in comparison to patients without postCTx, but did not show statistical significance. In per protocol analysis by excluding two patients with perioperative death, a shorter 3-year survival rate was observed in patients receiving postCTx compared to patients without postCTx (3-year survival: 71.2 % postCTx group vs. 90.0 % non-postCTx group; p = 0.038). Conclusion These results appear contradicting to the anticipated outcome. While speculative, they question the value of post-CTx. Prospectively randomized studies are needed to elucidate the role of postCTx. KW - gastric cancer KW - chemotherapy KW - neoadjuvant KW - multimodal KW - complication KW - adjuvant KW - risk factor KW - survival Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147743 VL - 16 IS - 650 ER - TY - JOUR A1 - Kaltdorf, Martin A1 - Srivastava, Mugdha A1 - Gupta, Shishir K. A1 - Liang, Chunguang A1 - Binder, Jasmin A1 - Dietl, Anna-Maria A1 - Meir, Zohar A1 - Haas, Hubertus A1 - Osherov, Nir A1 - Krappmann, Sven A1 - Dandekar, Thomas T1 - Systematic Identification of Anti-Fungal Drug Targets by a Metabolic Network Approach JF - Frontiers in Molecular Bioscience N2 - New antimycotic drugs are challenging to find, as potential target proteins may have close human orthologs. We here focus on identifying metabolic targets that are critical for fungal growth and have minimal similarity to targets among human proteins. We compare and combine here: (I) direct metabolic network modeling using elementary mode analysis and flux estimates approximations using expression data, (II) targeting metabolic genes by transcriptome analysis of condition-specific highly expressed enzymes, and (III) analysis of enzyme structure, enzyme interconnectedness (“hubs”), and identification of pathogen-specific enzymes using orthology relations. We have identified 64 targets including metabolic enzymes involved in vitamin synthesis, lipid, and amino acid biosynthesis including 18 targets validated from the literature, two validated and five currently examined in own genetic experiments, and 38 further promising novel target proteins which are non-orthologous to human proteins, involved in metabolism and are highly ranked drug targets from these pipelines. KW - metabolism KW - targets KW - antimycotics KW - modeling KW - structure KW - interaction KW - fungicide Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147396 VL - 3 ER - TY - JOUR A1 - Kunz, Meik A1 - Liang, Chunguang A1 - Nilla, Santosh A1 - Cecil, Alexander A1 - Dandekar, Thomas T1 - The drug-minded protein interaction database (DrumPID) for efficient target analysis and drug development JF - Database N2 - The drug-minded protein interaction database (DrumPID) has been designed to provide fast, tailored information on drugs and their protein networks including indications, protein targets and side-targets. Starting queries include compound, target and protein interactions and organism-specific protein families. Furthermore, drug name, chemical structures and their SMILES notation, affected proteins (potential drug targets), organisms as well as diseases can be queried including various combinations and refinement of searches. Drugs and protein interactions are analyzed in detail with reference to protein structures and catalytic domains, related compound structures as well as potential targets in other organisms. DrumPID considers drug functionality, compound similarity, target structure, interactome analysis and organismic range for a compound, useful for drug development, predicting drug side-effects and structure–activity relationships. KW - drug-minded protein KW - database Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147369 VL - 2016 ER - TY - JOUR A1 - Becker, Nils A1 - Kucharski, Robert A1 - Rössler, Wolfgang A1 - Maleszka, Ryszard T1 - Age‐dependent transcriptional and epigenomic responses to light exposure in the honey bee brain JF - FEBS Open Bio N2 - Light is a powerful environmental stimulus of special importance in social honey bees that undergo a behavioral transition from in-hive to outdoor foraging duties. Our previous work has shown that light exposure induces structural neuronal plasticity in the mushroom bodies (MBs), a brain center implicated in processing inputs from sensory modalities. Here, we extended these analyses to the molecular level to unravel light-induced transcriptomic and epigenomic changes in the honey bee brain. We have compared gene expression in brain compartments of 1- and 7-day-old light-exposed honey bees with age-matched dark-kept individuals. We have found a number of differentially expressed genes (DEGs), both novel and conserved, including several genes with reported roles in neuronal plasticity. Most of the DEGs show age-related changes in the amplitude of light-induced expression and are likely to be both developmentally and environmentally regulated. Some of the DEGs are either known to be methylated or are implicated in epigenetic processes suggesting that responses to light exposure are at least partly regulated at the epigenome level. Consistent with this idea light alters the DNA methylation pattern of bgm, one of the DEGs affected by light exposure, and the expression of microRNA miR-932. This confirms the usefulness of our approach to identify candidate genes for neuronal plasticity and provides evidence for the role of epigenetic processes in driving the molecular responses to visual stimulation. KW - DNA methylation KW - insect brain KW - light-induced gene expression KW - microRNA KW - neuronal plasticity Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147080 VL - 6 IS - 7 ER - TY - JOUR A1 - Brunet, Frédéric G. A1 - Volff, Jean-Nicolas A1 - Schartl, Manfred T1 - Whole Genome Duplications Shaped the Receptor Tyrosine Kinase Repertoire of Jawed Vertebrates JF - Genome Biology Evolution N2 - The receptor tyrosine kinase (RTK) gene family, involved primarily in cell growth and differentiation, comprises proteins with a common enzymatic tyrosine kinase intracellular domain adjacent to a transmembrane region. The amino-terminal portion of RTKs is extracellular and made of different domains, the combination of which characterizes each of the 20 RTK subfamilies among mammals. We analyzed a total of 7,376 RTK sequences among 143 vertebrate species to provide here the first comprehensive census of the jawed vertebrate repertoire. We ascertained the 58 genes previously described in the human and mouse genomes and established their phylogenetic relationships. We also identified five additional RTKs amounting to a total of 63 genes in jawed vertebrates. We found that the vertebrate RTK gene family has been shaped by the two successive rounds of whole genome duplications (WGD) called 1R and 2R (1R/2R) that occurred at the base of the vertebrates. In addition, the Vegfr and Ephrin receptor subfamilies were expanded by single gene duplications. In teleost fish, 23 additional RTK genes have been retained after another expansion through the fish-specific third round (3R) of WGD. Several lineage-specific gene losses were observed. For instance, birds have lost three RTKs, and different genes are missing in several fish sublineages. The RTK gene family presents an unusual high gene retention rate from the vertebrate WGDs (58.75% after 1R/2R, 64.4% after 3R), resulting in an expansion that might be correlated with the evolution of complexity of vertebrate cellular communication and intracellular signaling. KW - receptor tyrosine kinase KW - vertebrates KW - deuterostomes KW - whole genome duplications Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146988 VL - 8 IS - 15 ER - TY - JOUR A1 - Falibene, Augustine A1 - Roces, Flavio A1 - Rössler, Wolfgang A1 - Groh, Claudia T1 - Daily Thermal Fluctuations Experienced by Pupae via Rhythmic Nursing Behavior Increase Numbers of Mushroom Body Microglomeruli in the Adult Ant Brain JF - Frontiers in Behavioral Neuroscience N2 - Social insects control brood development by using different thermoregulatory strategies. Camponotus mus ants expose their brood to daily temperature fluctuations by translocating them inside the nest following a circadian rhythm of thermal preferences. At the middle of the photophase brood is moved to locations at 30.8°C; 8 h later, during the night, the brood is transferred back to locations at 27.5°C. We investigated whether daily thermal fluctuations experienced by developing pupae affect the neuroarchitecture in the adult brain, in particular in sensory input regions of the mushroom bodies (MB calyces). The complexity of synaptic microcircuits was estimated by quantifying MB-calyx volumes together with densities of presynaptic boutons of microglomeruli (MG) in the olfactory lip and visual collar regions. We compared young adult workers that were reared either under controlled daily thermal fluctuations of different amplitudes, or at different constant temperatures. Thermal regimes significantly affected the large (non-dense) olfactory lip region of the adult MB calyx, while changes in the dense lip and the visual collar were less evident. Thermal fluctuations mimicking the amplitudes of natural temperature fluctuations via circadian rhythmic translocation of pupae by nurses (amplitude 3.3°C) lead to higher numbers of MG in the MB calyces compared to those in pupae reared at smaller or larger thermal amplitudes (0.0, 1.5, 9.6°C), or at constant temperatures (25.4, 35.0°C). We conclude that rhythmic control of brood temperature by nursing ants optimizes brain development by increasing MG densities and numbers in specific brain areas. Resulting differences in synaptic microcircuits are expected to affect sensory processing and learning abilities in adult ants, and may also promote interindividual behavioral variability within colonies. KW - microglomeruli KW - temperature KW - broodtranslocation KW - camponotus ants KW - olfaction KW - vision KW - synapticplasticity KW - mushroom body Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146711 VL - 10 IS - 73 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 - THES A1 - Blättner, Sebastian T1 - The role of the non-ribosomal peptide synthetase AusAB and its product phevalin in intracellular virulence of Staphylococcus aureus T1 - Die Rolle der nicht-ribosomalen Peptidsynthetase AusAB und ihres Produktes Phevalin in der intrazellulären Virulenz von Staphylococcus aureus N2 - Staphylococcus aureus is a prevalent commensal bacterium which represents one of the leading causes in health care-associated bacterial infections worldwide and can cause a variety of different diseases ranging from simple abscesses to severe and life threatening infections including pneumonia, osteomyelitis and sepsis. In recent times multi-resistant strains have emerged, causing severe problems in nosocomial as well as community-acquired (CA) infection settings, especially in the United States (USA). Therefore S. aureus has been termed as a superbug by the WHO, underlining the severe health risk originating from it. Today, infections in the USA are dominated by S. aureus genotypes which are classified as USA300 and USA400, respectively. Strains of genotype USA300 are responsible for about 70% of the CA infections. The molecular mechanisms which render S. aureus such an effective pathogen are still not understood in its entirety. For decades S. aureus was thought to be a strictly extracellular pathogen relying on pore-forming toxins like α-hemolysin to damage human cells and tissue. Only recently it has been shown that S. aureus can enter non-professional phagocytes, using adhesins like the fibronectin-binding proteins which mediate an endocytotic uptake into the host cells. The bacteria are consequently localized to endosomes, where the degradation of enclosed bacterial cells through phagosome maturation would eventually occur. S. aureus can avoid degradation, and translocate to the cellular cytoplasm, where it can replicate. The ability to cause this so-called phagosomal escape has mainly been attributed to a family of amphiphilic peptides called phenol soluble modulins (PSMs), but as studies have shown, they are not sufficient. In this work I used a transposon mutant library in combination with automated fluorescence microscopy to screen for genes involved in the phagosomal escape process and intracellular survival of S. aureus. I thereby identified a number of genes, including a non-ribosomal peptide synthetase (NRPS). The NRPS, encoded by the genes ausA and ausB, produces two types of small peptides, phevalin and tyrvalin. Mutations in the ausAB genes lead to a drastic decrease in phagosomal escape rates in epithelial cells, which were readily restored by genetic complementation in trans as well as by supplementation of synthetic phevalin. In leukocytes, phevalin interferes with calcium fluxes and activation of neutrophils and promotes cytotoxicity of intracellular bacteria in both, macrophages and neutrophils. Further ausAB is involved in survival and virulence of the bacterium during mouse lung pneumoniae. The here presented data demonstrates the contribution of the bacterial cyclic dipeptide phevalin to S. aureus virulence and suggests, that phevalin directly acts on a host cell target to promote cytotoxicity of intracellular bacteria. N2 - Staphylococcus aureus ist ein weit verbreitetes kommensales Bakterium, welches zugleich einer der häufigsten Verursacher von Krankenhausinfektionen ist, und eine Reihe verschiedener Krankheiten, angefangen bei simplen Abszessen, bis hin zu schweren Erkrankungen wie Lungenentzündung, Osteomylitis und Sepsis verursachen kann. Das Risiko durch nosokomiale sowie epidemische S. aureus Infektionen ist in den vergangenen Jahren weiter gestiegen. Dazu beigetragen hat das Auftreten multiresistenter und hoch cytotoxischer Stämme, vor allem in den USA. Als Konsequenz hat die WHO S. aureus inzwischen als „Superbug“ tituliert und als globales Gesundheitsrisiko eingestuft. Bei CA-Infektionen dominieren die Isolate der Klassifizierung USA300 und USA400, wobei den Erstgenannten bis zu 70% aller in den USA registrierten CA-MRSA Infektionen der letzten Jahre zugesprochen werden. Lange Zeit wurde angenommen, dass S. aureus strikt extrazellulär im Infektionsbereich vorliegt und die cytotoxische Wirkung von z.B. α-Toxin für Wirtszelltod und Gewebeschädigungen verantwortlich ist. Erst vor kurzem wurde festgestellt, dass S. aureus auch durch fakultativ phagozytotische Zellen, wie Epithel- oder Endothelzellen, mittels zahlreicher Adhäsine aufgenommen wird. Die Aufnahme in die Zelle erfolgt zunächst in ein Phagoendosom, in dem die Pathogene durch antimikrobielle Mechanismen abgebaut würden. Um dies zu verhindern, verfügt S. aureus über Virulenzfaktoren, welche die endosomale Membran schädigen. Die Bakterien gelangen so in das Zellzytoplasma, wo sie sich vervielfältigen können, bevor die Wirtszelle schließlich getötet wird. Eine wichtige Funktion in diesem Vorgang konnte bereits in mehreren Studien den Phenol löslichen Modulinen (PSM) zugesprochen werden, Arbeiten unserer Gruppe deuten jedoch darauf hin, dass diese nicht alleine für den phagosomalen Ausbruch von S. aureus verantwortlich sind. In dieser Arbeit verwendete ich eine Transposon Mutantenbibliothek des S. aureus Stammes JE2 (USA300) in Verbindung mit automatisierter Fluoreszenzmikroskopie, um Gene zu identifizieren, die den phagosomalen Ausbruch von S. aureus beeinflussen. Unter den Mutanten, welche eine Minderung der Ausbruchsraten zeigten, fanden sich auch Mutanten in beiden Genen eines Operons, welches für die nicht-ribosomale Peptidsynthetase AusA/B codiert, die die beiden Dipeptide Phevalin und Tyrvalin produziert. Verminderte Ausbruchsraten konnten sowohl durch genetische Komplementation als auch mittels des Zusatzes synthetischen Phevalins wiederhergestellt werden. In Leukozyten verhindert Phevalin effizienten Calcium-Flux und die Aktivierung von Neutrophilen. Zudem fördert Phevalin die Cytotoxizität intrazellulärer Bakterien sowohl in Makrophagen, als auch Neutrophilen. Darüber hinaus konnten wir zeigen, dass die NRPS AusAB und ihre Produkte eine Rolle beim Überleben der Bakterien während einer Infektion im Tiermodell einnehmen. Die hier präsentierten Daten hinsichtlich des Einflusses von Phevalin auf Virulenz und der Interaktion zwischen Wirt und Pathogen lassen den Schluss zu, dass Phevalin direkt auf einen Wirtszellfaktor wirkt, um die Cytotoxicität intrazellulärer Bakterien zu stärken. KW - Staphylococcus aureus KW - MRSA KW - Virulenz KW - Intracellular virulence KW - Non-ribosomal peptide synthetase KW - USA300 Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146662 ER - TY - THES A1 - Jung, Lisa Anna T1 - Targeting MYC Function as a Strategy for Tumor Therapy T1 - Hemmung der MYC-Funktion als Strategie für die zielgerichtete Tumortherapie N2 - A large fraction of human tumors exhibits aberrant expression of the oncoprotein MYC. As a transcription factor regulating various cellular processes, MYC is also crucially involved in normal development. Direct targeting of MYC has been a major challenge for molecular cancer drug discovery. The proof of principle that its inhibition is nevertheless feasible came from in vivo studies using a dominant-negative allele of MYC termed OmoMYC. Systemic expression of OmoMYC triggered long-term tumor regression with mild and fully reversible side effects on normal tissues. In this study, OmoMYC’s mode of action was investigated combining methods of structural biology and functional genomics to elucidate how it is able to preferentially affect oncogenic functions of MYC. The crystal structure of the OmoMYC homodimer, both in the free and the E-box-bound state, was determined, which revealed that OmoMYC forms a stable homodimer, and as such, recognizes DNA via the same base-specific DNA contacts as the MYC/MAX heterodimer. OmoMYC binds DNA with an equally high affinity as MYC/MAX complexes. RNA-sequencing showed that OmoMYC blunts both MYC-dependent transcriptional activation and repression. Genome-wide DNA-binding studies using chromatin immunoprecipitation followed by high-throughput sequencing revealed that OmoMYC competes with MYC/MAX complexes on chromatin, thereby reducing their occupancy at consensus DNA binding sites. The most prominent decrease in MYC binding was seen at low-affinity promoters, which were invaded by MYC at oncogenic levels. Strikingly, gene set enrichment analyses using OmoMYC-regulated genes enabled the identification of tumor subgroups with high MYC levels in multiple tumor entities. Together with a targeted shRNA screen, this identified novel targets for the eradication of MYC-driven tumors, such as ATAD3A, BOP1, and ADRM1. In summary, the findings suggest that OmoMYC specifically inhibits tumor cell growth by attenuating the expression of rate-limiting proteins in cellular processes that respond to elevated levels of MYC protein using a DNA-competitive mechanism. This opens up novel strategies to target oncogenic MYC functions for tumor therapy. N2 - Eine Vielzahl humaner Tumore entsteht durch die aberrante Expression des Onkoproteins MYC. Da MYC als Transkriptionsfaktor viele zelluläre Prozesse reguliert, ist er auch maßgeblich an der Entwicklung von normalem Gewebe beteiligt. Die direkte Hemmung von MYC stellt eine große Herausforderung für die Wirkstoffentwicklung dar. Studien mit dem dominant-negativen MYC-Allel namens OmoMYC belegten, dass MYC ein potenzieller Angriffspunkt für die zielgerichtete Tumortherapie ist. Die systemische Expression dieser MYC-Mutante löste eine dauerhafte Tumorregression aus und zeigte milde sowie vollständig reversible Nebenwirkungen. In der vorliegenden Arbeit wurde der molekulare Wirkmechanismus von OmoMYC untersucht, wobei sowohl Methoden der Strukturbiologie als auch der funktionalen Genomik angewendet wurden. Die Kristallstruktur des OmoMYC Proteins wurde im freien und E-Box-gebundenen Zustand bestimmt. Dadurch konnte gezeigt werden, dass OmoMYC ein stabiles Homodimer bildet. Als solches erkennt es DNA mittels derselben basenspezifischen Interaktionen wie der MYC/MAX-Komplex. Dabei bindet OmoMYC DNA mit einer ähnlichen Affinität wie das MYC/MAX-Heterodimer. Die genomweite Expressionsanalyse mittels RNA-Sequenzierung identifiziert eine Reduktion sowohl der MYC-abhängigen Transkriptionsaktiverung als auch der Transkriptionsrepression durch OmoMYC. Mittels Chromatin-Immunpräzipitation gefolgt von einer Hochdurchsatz-Sequenzierung wird gezeigt, dass OmoMYC mit MYC/MAXKomplexen auf Chromatin konkurriert und so deren Besetzung global an Konsensus-Bindestellen verringert. Die stärkste Reduktion zeigt sich an Promoterregionen mit schwacher Affinität für die MYC-Bindung, welche durch onkogene MYC-Proteinmengen aufgefüllt werden. Gene set enrichment-Analysen unter Berücksichtigung von OmoMYC-regulierten Genen erlaubten die Identifizierung von Tumor-Subgruppen mit hohen MYC-Proteinmengen in zahlreichen Tumorentitäten. Zusammen mit einem fokussierten shRNA-Screen können so neue Zielproteine für die Bekämpfung von MYC-getriebenen Tumoren, wie zum Beispiel ATAD3A, BOP1 und ADRM1, identifiziert werden. Zusammenfassend weisen die Ergebnisse darauf hin, dass OmoMYC spezifisch das Tumorzellwachstum inhibiert, indem es die Expression von zentralen Proteinen limitiert, welche durch erhöhte MYC-Proteinmengen reguliert werden. Somit können neue Strategien zur Tumortherapie identifiziert werden, die auf onkogene Funktionen von MYC zielen. KW - Myc KW - Kristallstruktur KW - Transkription KW - Bauchspeicheldrüsenkrebs KW - DNS-Bindung KW - OmoMYC KW - promoter invasion Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146993 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 - JOUR A1 - Bargul, Joel L. A1 - Jung, Jamin A1 - McOdimba, Francis A. A1 - Omogo, Collins O. A1 - Adung'a, Vincent O. A1 - Krüger, Timothy A1 - Masiga, Daniel K. A1 - Engstler, Markus T1 - Species-Specific Adaptations of Trypanosome Morphology and Motility to the Mammalian Host JF - PLoS Pathogens N2 - African trypanosomes thrive in the bloodstream and tissue spaces of a wide range of mammalian hosts. Infections of cattle cause an enormous socio-economic burden in sub-Saharan Africa. A hallmark of the trypanosome lifestyle is the flagellate’s incessant motion. This work details the cell motility behavior of the four livestock-parasites Trypanosoma vivax, T. brucei, T. evansi and T. congolense. The trypanosomes feature distinct swimming patterns, speeds and flagellar wave frequencies, although the basic mechanism of flagellar propulsion is conserved, as is shown by extended single flagellar beat analyses. Three-dimensional analyses of the trypanosomes expose a high degree of dynamic pleomorphism, typified by the ‘cellular waveform’. This is a product of the flagellar oscillation, the chirality of the flagellum attachment and the stiffness of the trypanosome cell body. The waveforms are characteristic for each trypanosome species and are influenced by changes of the microenvironment, such as differences in viscosity and the presence of confining obstacles. The distinct cellular waveforms may be reflective of the actual anatomical niches the parasites populate within their mammalian host. T. vivax displays waveforms optimally aligned to the topology of the bloodstream, while the two subspecies T. brucei and T. evansi feature distinct cellular waveforms, both additionally adapted to motion in more confined environments such as tissue spaces. T. congolense reveals a small and stiff waveform, which makes these parasites weak swimmers and destined for cell adherence in low flow areas of the circulation. Thus, our experiments show that the differential dissemination and annidation of trypanosomes in their mammalian hosts may depend on the distinct swimming capabilities of the parasites. KW - swimming KW - viscosity KW - flagella KW - host-pathogen interactions KW - cell motility KW - blood KW - parasitic diseases KW - trypanosoma brucei gambiense Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146513 VL - 12 IS - 2 ER - TY - JOUR A1 - Dejung, Mario A1 - Subota, Ines A1 - Bucerius, Ferdinand A1 - Dindar, Gülcin A1 - Freiwald, Anja A1 - Engstler, Markus A1 - Boshart, Michael A1 - Butter, Falk A1 - Janzen, Chistian J. T1 - Quantitative proteomics uncovers novel factors involved in developmental differentiation of Trypanosoma brucei JF - PLoS Pathogens N2 - Developmental differentiation is a universal biological process that allows cells to adapt to different environments to perform specific functions. African trypanosomes progress through a tightly regulated life cycle in order to survive in different host environments when they shuttle between an insect vector and a vertebrate host. Transcriptomics has been useful to gain insight into RNA changes during stage transitions; however, RNA levels are only a moderate proxy for protein abundance in trypanosomes. We quantified 4270 protein groups during stage differentiation from the mammalian-infective to the insect form and provide classification for their expression profiles during development. Our label-free quantitative proteomics study revealed previously unknown components of the differentiation machinery that are involved in essential biological processes such as signaling, posttranslational protein modifications, trafficking and nuclear transport. Furthermore, guided by our proteomic survey, we identified the cause of the previously observed differentiation impairment in the histone methyltransferase DOT1B knock-out strain as it is required for accurate karyokinesis in the first cell division during differentiation. This epigenetic regulator is likely involved in essential chromatin restructuring during developmental differentiation, which might also be important for differentiation in higher eukaryotic cells. Our proteome dataset will serve as a resource for detailed investigations of cell differentiation to shed more light on the molecular mechanisms of this process in trypanosomes and other eukaryotes. KW - cell differentiation KW - cell cycle and cell division KW - parasitic cell cycles KW - proteomes KW - chromatin KW - parasitic life cycles KW - transcriptome analysis KW - host-pathogen interactions Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146362 VL - 12 IS - 2 ER - TY - JOUR A1 - Kneitz, Susanne A1 - Mishra, Rasmi R. A1 - Chalopin, Domitille A1 - Postlethwait, John A1 - Warren, Wesley C. A1 - Walther, Ronald B. A1 - Schartl, Manfred T1 - Germ cell and tumor associated piRNAs in the medaka and \(Xiphophorus\) melanoma models JF - BMC Genomics N2 - Background A growing number of studies report an abnormal expression of Piwi-interacting RNAs (piRNAs) and the piRNA processing enzyme Piwi in many cancers. Whether this finding is an epiphenomenon of the chaotic molecular biology of the fast dividing, neoplastically transformed cells or is functionally relevant to tumorigenesisis is difficult to discern at present. To better understand the role of piRNAs in cancer development small laboratory fish models can make a valuable contribution. However, little is known about piRNAs in somatic and neoplastic tissues of fish. Results To identify piRNA clusters that might be involved in melanoma pathogenesis, we use several transgenic lines of medaka, and platyfish/swordtail hybrids, which develop various types of melanoma. In these tumors Piwi, is expressed at different levels, depending on tumor type. To quantify piRNA levels, whole piRNA populations of testes and melanomas of different histotypes were sequenced. Because no reference piRNA cluster set for medaka or Xiphophorus was yet available we developed a software pipeline to detect piRNA clusters in our samples and clusters were selected that were enriched in one or more samples. We found several loci to be overexpressed or down-regulated in different melanoma subtypes as compared to hyperpigmented skin. Furthermore, cluster analysis revealed a clear distinction between testes, low-grade and high-grade malignant melanoma in medaka. Conclusions Our data imply that dysregulation of piRNA expression may be associated with development of melanoma. Our results also reinforce the importance of fish as a suitable model system to study the role of piRNAs in tumorigenesis. KW - small RNA-sequencing KW - melanoma KW - piRNA KW - fish model Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146028 VL - 17 IS - 357 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 -