TY - JOUR A1 - Horn, Hannes A1 - Keller, Alexander A1 - Hildebrandt, Ulrich A1 - Kämpfer, Peter A1 - Riederer, Markus A1 - Hentschel, Ute T1 - Draft genome of the \(Arabidopsis\) \(thaliana\) phyllosphere bacterium, \(Williamsia\) sp. ARP1 JF - Standards in Genomic Sciences N2 - The Gram-positive actinomycete \(Williamsia\) sp. ARP1 was originally isolated from the \(Arabidopsis\) \(thaliana\) phyllosphere. Here we describe the general physiological features of this microorganism together with the draft genome sequence and annotation. The 4,745,080 bp long genome contains 4434 protein-coding genes and 70 RNA genes. To our knowledge, this is only the second reported genome from the genus \(Williamsia\) and the first sequenced strain from the phyllosphere. The presented genomic information is interpreted in the context of an adaptation to the phyllosphere habitat. KW - arabidopsis thaliana KW - whole genome sequencing KW - adaption KW - Williamsia sp. ARP1 KW - phyllosphere KW - draft genome KW - next generation sequencing KW - assembly KW - annotation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146008 VL - 11 IS - 8 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 - Kupper, Maria A1 - Stigloher, Christian A1 - Feldhaar, Heike A1 - Gross, Roy T1 - Distribution of the obligate endosymbiont Blochmannia floridanus and expression analysis of putative immune genes in ovaries of the carpenter ant Camponotus floridanus JF - Arthropod Structure & Development N2 - The bacterial endosymbiont Blochmannia floridanus of the carpenter ant Camponotus floridanus contributes to its hosts' ontogeny via nutritional upgrading during metamorphosis. This primary endosymbiosis is essential for both partners and vertical transmission of the endosymbionts is guaranteed by bacterial infestation of oocytes. Here we present a detailed analysis of the presence and localisation of B. floridanus in the ants' ovaries obtained by FISH and TEM analyses. The most apical part of the germarium harbouring germ-line stem cells (GSCs) is not infected by the bacteria. The bacteria are detectable for the first time in lower parts of the germarium when cystocytes undergo the 4th and 5th division and B. floridanus infects somatic cells lying under the basal lamina surrounding the ovarioles. With the beginning of cystocyte differentiation, the endosymbionts are exclusively transported from follicle cells into the growing oocytes. This infestation of the oocytes by bacteria very likely involves exocytosis endocytosis processes between follicle cells and the oocytes. Nurse cells were never found to harbour the endosymbionts. Furthermore we present first gene expression data in C floridanus ovaries. These data indicate a modulation of immune gene expression which may facilitate tolerance towards the endosymbionts and thus may contribute to their transovarial transmission. KW - Ecologically important traits KW - Bacterial symbionts KW - Arthropods KW - Peptidoglycan recognition KW - Transovarial transmission KW - Horizontal transfer KW - Insect hosts KW - Microorganisms KW - Reproduction KW - Hymenoptera KW - Primary endosymbiont KW - Oogenesis KW - Insects Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-187482 VL - 45 IS - 5 ER - TY - JOUR A1 - Lorenzin, Francesca A1 - Benary, Uwe A1 - Baluapuri, Apoorva A1 - Walz, Susanne A1 - Jung, Lisa Anna A1 - von Eyss, Björn A1 - Kisker, Caroline A1 - Wolf, Jana A1 - Eilers, Martin A1 - Wolf, Elmar T1 - Different promoter affinities account for specificity in MYC-dependent gene regulation JF - eLife N2 - Enhanced expression of the MYC transcription factor is observed in the majority of tumors. Two seemingly conflicting models have been proposed for its function: one proposes that MYC enhances expression of all genes, while the other model suggests gene-specific regulation. Here, we have explored the hypothesis that specific gene expression profiles arise since promoters differ in affinity for MYC and high-affinity promoters are fully occupied by physiological levels of MYC. We determined cellular MYC levels and used RNA- and ChIP-sequencing to correlate promoter occupancy with gene expression at different concentrations of MYC. Mathematical modeling showed that binding affinities for interactions of MYC with DNA and with core promoter-bound factors, such as WDR5, are sufficient to explain promoter occupancies observed in vivo. Importantly, promoter affinity stratifies different biological processes that are regulated by MYC, explaining why tumor-specific MYC levels induce specific gene expression programs and alter defined biological properties of cells. KW - MYC KW - promoter affinity KW - human KW - mathematical modeling KW - mouse KW - ChIP-sequencing KW - MIZ1 KW - cancer biology KW - cell biology KW - WDR5 Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-162913 VL - 5 ER - TY - JOUR A1 - Deeleman-Reinhold, Christa L. A1 - Miller, Jeremy A1 - Floren, Andreas T1 - Depreissia decipiens, an enigmatic canopy spider from Borneo revisited (Araneae, Salticidae), with remarks on the distribution and diversity of canopy spiders in Sabah, Borneo JF - ZooKeys N2 - Depreissia is a little known genus comprising two hymenopteran-mimicking species, one found in Central Africa and one in the north of Borneo. The male of D. decipiens is redescribed, the female is described for the first time. The carapace is elongated, dorsally flattened and rhombus-shaped, the rear of the thorax laterally depressed and transformed, with a pair of deep pits; the pedicel is almost as long as the abdomen. The male palp is unusual, characterized by the transverse deeply split membranous tegulum separating a ventral part which bears a sclerotized tegular apophysis and a large dagger-like retrodirected median apophysis. The female epigyne consists of one pair of large adjacent spermathecae and very long copulatory ducts arising posteriorly and rising laterally alongside the spermathecae continuing in several vertical and horizontal coils over the anterior surface. Relationships within the Salticidae are discussed and an affinity with the Cocalodinae is suggested. Arguments are provided for a hypothesis that D. decipiens is not ant-mimicking as was previously believed, but is a mimic of polistinine wasps. The species was found in the canopy in the Kinabalu area only, in primary and old secondary rainforest at 200–700 m.a.s.l. Overlap of canopy-dwelling spider species with those in the understorey are discussed and examples of species richness and endemism in the canopy are highlighted. Canopy fogging is a very efficient method of collecting for most arthropods. The canopy fauna adds an extra dimension to the known biodiversity of the tropical rainforest. In southeast Asia, canopy research has been neglected, inhibiting evaluation of comparative results of this canopy project with that from other regions. More use of fogging as a collecting method would greatly improve insight into the actual species richness and species distribution in general. KW - depreissia decipiens KW - jumping spiders KW - canopy spiders KW - taxonomy KW - biodiversity KW - ant-mimicking spiders KW - wasp-mimicking KW - Mt. Kinabalu KW - rainforest KW - Cocalodinae KW - Polistine wasps KW - endemism Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-168342 VL - 556 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 - JOUR A1 - Schneider, Eberhard A1 - Dittrich, Marcus A1 - Böck, Julia A1 - Nanda, Indrajit A1 - Müller, Tobias A1 - Seidmann, Larissa A1 - Tralau, Tim A1 - Galetzka, Danuta A1 - El Hajj, Nady A1 - Haaf, Thomas T1 - CpG sites with continuously increasing or decreasing methylation from early to late human fetal brain development JF - Gene N2 - Normal human brain development is dependent on highly dynamic epigenetic processes for spatial and temporal gene regulation. Recent work identified wide-spread changes in DNA methylation during fetal brain development. We profiled CpG methylation in frontal cortex of 27 fetuses from gestational weeks 12-42, using Illumina 450K methylation arrays. Sites showing genome-wide significant correlation with gestational age were compared to a publicly available data set from gestational weeks 3-26. Altogether, we identified 2016 matching developmentally regulated differentially methylated positions (m-dDMPs): 1767 m-dDMPs were hypermethylated and 1149 hypomethylated during fetal development. M-dDMPs are underrepresented in CpG islands and gene promoters, and enriched in gene bodies. They appear to cluster in certain chromosome regions. M-dDMPs are significantly enriched in autism-associated genes and CpGs. Our results promote the idea that reduced methylation dynamics during fetal brain development may predispose to autism. In addition, m-dDMPs are enriched in genes with human-specific brain expression patterns and/or histone modifications. Collectively, we defined a subset of dDMPs exhibiting constant methylation changes from early to late pregnancy. The same epigenetic mechanisms involving methylation changes in cis-regulatory regions may have been adopted for human brain evolution and ontogeny. KW - Autism spectrum disorders KW - DNA methylation KW - Genome KW - Autism KW - Frontal cortex KW - Human prefrontal cortex KW - Gene-expression KW - Schizophrenia KW - Patterns KW - Transcription KW - Epigenetics KW - Environment KW - Fetal brain development KW - DNA methylation dynamics KW - Methylome Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186936 VL - 592 IS - 1 ER - TY - JOUR A1 - Dotterweich, Julia A1 - Schlegelmilch, Katrin A1 - Keller, Alexander A1 - Geyer, Beate A1 - Schneider, Doris A1 - Zeck, Sabine A1 - Tower, Robert J. J. A1 - Ebert, Regina A1 - Jakob, Franz A1 - Schütze, Norbert T1 - Contact of myeloma cells induces a characteristic transcriptome signature in skeletal precursor cells-implications for myeloma bone disease JF - Bone N2 - Physical interaction of skeletal precursors with multiple myeloma cells has been shown to suppress their osteogenic potential while favoring their tumor-promoting features. Although several transcriptome analyses of myeloma patient-derived mesenchymal stem cells have displayed differences compared to their healthy counterparts, these analyses insufficiently reflect the signatures mediated by tumor cell contact, vary due to different methodologies, and lack results in lineage-committed precursors. To determine tumor cell contact-mediated changes on skeletal precursors, we performed transcriptome analyses of mesenchymal stem cells and osteogenic precursor cells cultured in contact with the myeloma cell line INA-6. Comparative analyses confirmed dysregulation of genes which code for known disease-relevant factors and additionally revealed upregulation of genes that are associated with plasma cell homing, adhesion, osteoclastogenesis, and angiogenesis. Osteoclast-derived coupling factors, a dysregulated adipogenic potential, and an imbalance in favor of anti-anabolic factors may play a role in the hampered osteoblast differentiation potential of mesenchymal stem cells. Angiopoietin-Like 4 (ANGPTL4) was selected from a list of differentially expressed genes as a myeloma cell contact-dependent target in skeletal precursor cells which warranted further functional analyses. Adhesion assays with full-length ANGPTL4-coated plates revealed a potential role of this protein in INA6 cell attachment. This study expands knowledge of the myeloma cell contact-induced signature in the stromal compartment of myelomatous bones and thus offers potential targets that may allow detection and treatment of myeloma bone disease at an early stage. KW - marrow stromal cells KW - Endothelial growth-factor KW - precedes multiple-myeloma KW - monoclonial gammopathy KW - in-vitro KW - mesenchymal stem-cells KW - undetermined significance KW - angiogenic cytokines KW - peripheral-blood KW - gene-expression KW - Multiple myeloma KW - Bone disease KW - Angiopoietin-like 4 KW - Gene expression profiling KW - Mesenchymal stem cells KW - Osteogenic precursor cells Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186688 VL - 93 ER - TY - JOUR A1 - Bert, Bettina A1 - Chmielewska, Justyna A1 - Bergmann, Sven A1 - Busch, Maximilian A1 - Driever, Wolfgang A1 - Finger-Baier, Karin A1 - Hößler, Johanna A1 - Köhler, Almut A1 - Leich, Nora A1 - Misgeld, Thomas A1 - Nöldner, Torsten A1 - Reiher, Annegret A1 - Schartl, Manfred A1 - Seebach-Sproedt, Anja A1 - Thumberger, Thomas A1 - Schönfelder, Gilbert A1 - Grune, Barbara T1 - Considerations for a European animal welfare standard to evaluate adverse phenotypes in teleost fish JF - The EMBO Journal N2 - No abstract available. KW - Danio-rerio KW - Zebrafish KW - Pain Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-188783 VL - 35 IS - 11 ER - TY - JOUR A1 - Vogtmann, Emily A1 - Hua, Xing A1 - Zeller, Georg A1 - Sunagawa, Shinichi A1 - Voigt, Anita Y. A1 - Hercog, Rajna A1 - Goedert, James J. A1 - Shi, Jianxin A1 - Bork, Peer A1 - Sinha, Rashmi T1 - Colorectal Cancer and the Human Gut Microbiome: Reproducibility with Whole-Genome Shotgun Sequencing JF - PLoS ONE N2 - Accumulating evidence indicates that the gut microbiota affects colorectal cancer development, but previous studies have varied in population, technical methods, and associations with cancer. Understanding these variations is needed for comparisons and for potential pooling across studies. Therefore, we performed whole-genome shotgun sequencing on fecal samples from 52 pre-treatment colorectal cancer cases and 52 matched controls from Washington, DC. We compared findings from a previously published 16S rRNA study to the metagenomics-derived taxonomy within the same population. In addition, metagenome-predicted genes, modules, and pathways in the Washington, DC cases and controls were compared to cases and controls recruited in France whose specimens were processed using the same platform. Associations between the presence of fecal Fusobacteria, Fusobacterium, and Porphyromonas with colorectal cancer detected by 16S rRNA were reproduced by metagenomics, whereas higher relative abundance of Clostridia in cancer cases based on 16S rRNA was merely borderline based on metagenomics. This demonstrated that within the same sample set, most, but not all taxonomic associations were seen with both methods. Considering significant cancer associations with the relative abundance of genes, modules, and pathways in a recently published French metagenomics dataset, statistically significant associations in the Washington, DC population were detected for four out of 10 genes, three out of nine modules, and seven out of 17 pathways. In total, colorectal cancer status in the Washington, DC study was associated with 39% of the metagenome-predicted genes, modules, and pathways identified in the French study. More within and between population comparisons are needed to identify sources of variation and disease associations that can be reproduced despite these variations. Future studies should have larger sample sizes or pool data across studies to have sufficient power to detect associations that are reproducible and significant after correction for multiple testing. KW - colorectal cancer KW - gut microbiota KW - whole-genome shotgun sequencing Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-166904 VL - 11 IS - 5 ER - TY - JOUR A1 - Kilinc, Mehmet Okyay A1 - Ehrig, Klaas A1 - Pessian, Maysam A1 - Minev, Boris R. A1 - Szalay, Aladar A. T1 - Colonization of xenograft tumors by oncolytic vaccinia virus (VACV) results in enhanced tumor killing due to the involvement of myeloid cells JF - Journal of Translational Medicine N2 - Background The mechanisms by which vaccinia virus (VACV) interacts with the innate immune components are complex and involve different mechanisms. iNOS-mediated NO production by myeloid cells is one of the central antiviral mechanisms and this study aims to investigate specifically whether iNOS-mediated NO production by myeloid cells, is involved in tumor eradication following the virus treatment. Methods Human colon adenocarcinoma (HCT-116) xenograft tumors were infected by VACV. Infiltration of iNOS\(^{+}\) myeloid cell population into the tumor, and virus titer was monitored following the treatment. Single-cell suspensions were stained for qualitative and quantitative flow analysis. The effect of different myeloid cell subsets on tumor growth and colonization were investigated by depletion studies. Finally, in vitro culture experiments were carried out to study NO production and tumor cell killing. Student’s t test was used for comparison between groups in all of the experiments. Results Infection of human colon adenocarcinoma (HCT-116) xenograft tumors by VACV has led to recruitment of many CD11b\(^{+}\) ly6G\(^{+}\) myeloid-derived suppressor cells (MDSCs), with enhanced iNOS expression in the tumors, and to an increased intratumoral virus titer between days 7 and 10 post-VACV therapy. In parallel, both single and multiple rounds of iNOS-producing cell depletions caused very rapid tumor growth within the same period after virus injection, indicating that VACV-induced iNOS\(^{+}\) MDSCs could be an important antitumor effector component. A continuous blockade of iNOS by its specific inhibitor, L-NIL, showed similar tumor growth enhancement 7–10 days post-infection. Finally, spleen-derived iNOS+ MDSCs isolated from virus-injected tumor bearing mice produced higher amounts of NO and effectively killed HCT-116 cells in in vitro transwell experiments. Conclusions We initially hypothesized that NO could be one of the factors that limits active spreading of the virus in the cancerous tissue. In contrast to our initial hypothesis, we observed that PMN-MDSCs were the main producer of NO through iNOS and NO provided a beneficial antitumor effect, The results strongly support an important novel role for VACV infection in the tumor microenvironment. VACV convert tumor-promoting MDSCs into tumor-killing cells by inducing higher NO production. KW - MDSCs KW - VACV KW - iNOS KW - oncolytic virus therapy KW - NO KW - innate immune system KW - antitumor immune response KW - antiviral immunity Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-168914 VL - 14 IS - 340 ER - TY - THES A1 - Cicova, Zdenka T1 - Characterization of a novel putative factor involved in host adaptation in Trypanosoma brucei T1 - Charakterisierung einer neuen Komponente für die Wirtsanpassung in Trypanosoma brucei N2 - Trypanosomes are masters of adaptation to different host environments during their complex life cycle. Large-scale proteomic approaches provide information on changes at the cellular level in a systematic way. However, a detailed work on single components is necessary to understand the adaptation mechanisms on a molecular level. Here we have performed a detailed characterization of a bloodstream form (BSF) stage-specific putative flagellar host adaptation factor (Tb927.11.2400) identified previously in a SILAC-based comparative proteome study. Tb927.11.2400 shares 38% amino acid identity with TbFlabarin (Tb927.11.2410), a procyclic form (PCF) stage specific flagellar BAR domain protein. We named Tb927.11.2400 TbFlabarin like (TbFlabarinL) and demonstrate that it is a result of a gene duplication event, which occurred in African trypanosomes. TbFlabarinL is not essential for growth of the parasites under cell culture conditions and it is dispensable for developmental differentiation from BSF to the PCF in vitro. We generated a TbFlabarinL-specific antibody and showed that it localizes in the flagellum. The co-immunoprecipitation experiment together with a biochemical cell fractionation indicated a dual association of TbFlabarinL with the flagellar membrane and the components of the paraflagellar rod. N2 - Trypansomen zeigen sich im Laufe ihres komplexen Lebeszyklus als Meister der Adaption an verschiedene Umweltbedingungen ihrer Wirte. Umfangreiche proteomische Analysen geben systematisch Auskunft über Änderungen auf zellulärer Ebene. Detailierte Arbeit an einzelnen Komponenten ist jedoch nötig, um die Adaptionsmechanismen auf molekularer Ebene zu verstehen. Wir haben im Rahmen dieser Arbeit eine detaillierte Charakterisierung eines stadienspezifischen mutmaßlich flagellaren Wirtsadaptionsfaktors der Blutstromform (BSF) durchgeführt (Tb927.11.2400), der zuvor in einer SILAC-basierten vergleichenden Proteomstudie idendifiziert wurde. Tb927.11.2400 teilt 38% der mit TbFlabarin (Tb927.11.2410), eines stadienspezifischen flagellaren BAR- domänen Proteins der prozyklischen Form (PCF). Wir haben Tb927.11.2400 TbFlabarin like (TbFlabarinL) genannt und zeigen, dass es das Ergebnis eines Genduplikations-Ereignisses darstellt, das in afrikanischen Trypanosomen aufgetreten ist. TbFlabarinL ist nicht essentiell für das Wachstum der Parasiten unter Zellkultur-Bedingungen und entbehrlich für den Differenzierungprozess von BSF zu PCF in vitro. Wir haben einen TbFlabarinL-spezifischen Antikörper entwickelt und zeigen, dass er in der Flagelle lokalisiert. Das Co-immunoprezipitations-Experiment deutet zusammen mit einer biochemischen Zellfraktionierung darauf hin, dass TbFlabarinL mit der flagellaren Membran und Komponenten der paraflagellaren Stab binär assoziiert ist. KW - Trypanosoma brucei KW - Wirt KW - Anpassung KW - stage specific regulation KW - Geißel KW - flagellum KW - Flabarin Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-142462 ER - TY - JOUR A1 - Goméz-H, Laura A1 - Felipe-Medina, Natalia A1 - Sánchez-Martín, Manuel A1 - Davies, Owen R. A1 - Ramos, Isabel A1 - García-Tuñón, Ignacio A1 - de Rooij, Dirk G. A1 - Dereli, Ihsan A1 - Tóth, Attila A1 - Barbero, José Luis A1 - Benavente, Ricardo A1 - Llano, Elena A1 - Pendas, Alberto M. T1 - C14ORF39/SIX6OS1 is a constituent of the synaptonemal complex and is essential for mouse fertility JF - Nature Communications N2 - Meiotic recombination generates crossovers between homologous chromosomes that are essential for genome haploidization. The synaptonemal complex is a ‘zipper’-like protein assembly that synapses homologue pairs together and provides the structural framework for processing recombination sites into crossovers. Humans show individual differences in the number of crossovers generated across the genome. Recently, an anonymous gene variant in C14ORF39/SIX6OS1 was identified that influences the recombination rate in humans. Here we show that C14ORF39/SIX6OS1 encodes a component of the central element of the synaptonemal complex. Yeast two-hybrid analysis reveals that SIX6OS1 interacts with the well-established protein synaptonemal complex central element 1 (SYCE1). Mice lacking SIX6OS1 are defective in chromosome synapsis at meiotic prophase I, which provokes an arrest at the pachytene-like stage and results in infertility. In accordance with its role as a modifier of the human recombination rate, SIX6OS1 is essential for the appropriate processing of intermediate recombination nodules before crossover formation. KW - Chromosomes KW - Meiosis KW - Spermatogenesis Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165907 VL - 7 ER - TY - THES A1 - Pischimarov, Jordan Ivanov T1 - Bioinformatische Methoden zur Identifizierung und Klassifizierung somatischer Mutationen in hämatologischen Erkrankungen T1 - Bioinformatics approaches for the detection and classification of somatic mutations in hematological malignancies N2 - Die Sequenzierungstechnologien entwickeln sich stetig weiter, dies ermöglicht eine zuvor nicht erreichte Ausbeute an experimentellen Daten und auch an Neuentwicklungen von zuvor nicht realisierbaren Experimenten. Zugleich werden spezifische Datenbanken, Algorithmen und Softwareprogramme entwickelt, um die neu entstandenen Daten zu analysieren. Während der Untersuchung bioinformatischer Methoden für die Identifizierung und Klassifizierung somatischer Mutationen in hämatologischen Erkrankungen, zeigte sich eine hohe Vielfalt an alternativen Softwaretools die für die jeweiligen Analyseschritte genutzt werden können. Derzeit existiert noch kein Standard zur effizienten Analyse von Mutationen aus Next-Generation-Sequencing (NGS)-Daten. Die unterschiedlichen Methoden und Pipelines generieren Kandidaten, die zum größten Anteil in allen Ansätzen identifiziert werden können, jedoch werden Software spezifische Kandidaten nicht einheitlich detektiert. Um eine einheitliche und effiziente Analyse von NGS-Daten durchzuführen war im Rahmen dieser Arbeit die Entwicklung einer benutzerfreundlichen und einheitlichen Pipeline vorgesehen. Hierfür wurden zunächst die essentiellen Analysen wie die Identifizierung der Basen, die Alignierung und die Identifizierung der Mutationen untersucht. Des Weiteren wurden unter Berücksichtigung von Effizienz und Performance diverse verfügbare Softwaretools getestet, ausgewertet und sowohl mögliche Verbesserungen als auch Erleichterungen der bisherigen Analysen vorgestellt und diskutiert. Durch Mitwirken in Konsortien wie der klinischen Forschergruppe 216 (KFO 216) und International Cancer Genome Consortium (ICGC) oder auch bei Haus-internen Projekten wurden Datensätze zu den Entitäten Multiples Myelom (MM), Burkitt Lymphom (BL) und Follikuläres Lymphom (FL) erstellt und analysiert. Die Selektion geeigneter Softwaretools und die Generierung der Pipeline basieren auf komparativen Analysen dieser Daten, sowie auf geteilte Ergebnisse und Erfahrungen in der Literatur und auch in Foren. Durch die gezielte Entwicklung von Skripten konnten biologische und klinische Fragestellungen bearbeitet werden. Hierzu zählten eine einheitliche Annotation der Gennamen, sowie die Erstellung von Genmutations-Heatmaps mit nicht Variant-Calling-File (VCF)-Syntax konformen Dateien. Des Weiteren konnten nicht abgedeckte Regionen des Genoms in den NGS-Daten identifiziert und analysiert werden. Neue Projekte zur detaillierten Untersuchung der Verteilung von wiederkehrender Mutationen und Funktionsassays zu einzelnen Mutationskandidaten konnten basierend auf den Ergebnissen initiiert werden. Durch eigens erstellte Python-Skripte konnte somit die Funktionalität der Pipeline erweitert werden und zu wichtigen Erkenntnissen bei der biologischen Interpretation der Sequenzierungsdaten führen, wie beispielsweise zu der Detektion von drei neuen molekularen Subgruppen im MM. Die Erweiterungen, der in dieser Arbeit entwickelten Pipeline verbesserte somit die Effizienz der Analyse und die Vergleichbarkeit unserer Daten. Des Weiteren konnte durch die Erstellung eines eigenen Skripts die Analyse von unbeachteten Regionen in den NGS-Daten erfolgen. N2 - The sequencing technologies, while still being under further development, render it possible to develop novel experiments and allow the generation of larger amounts of utilizable data. At the same time novel software tools, databases and algorithms are developed to analyze these larger amounts of data. The analysis of somatic mutations in hematological malignancies showed that a high variety of alternative software tools can be used for different analysis steps. Furthermore there is currently no standardized procedure for the efficient identification and analysis of mutations in NGS data. The different pipeline and methods are, for the most part, able to identify the same mutation candidates, however there are software specific candidates which are not called by all pipelines. The scope of this dissertation was therefore to develop a user-friendly pipeline which is able to call candidate mutations uniformly and efficiently. For this purpose necessary analysis steps including base calling, alignment generation and variant calling were investigated. Furthermore available software tools were tested and evaluated regarding their efficiency and performance. Possible improvements of these software tools and previously performed analysis are explained and discussed in this work. NGS data sets of the different cancer entities multiple myeloma (MM), Burkitt lymphoma (BL) and follicular lymphoma (FL) were generated and analyzed within the framework of cooperate projects like the International Cancer Genome Consortium (ICGC) and the Clinical Research Group 216 (KFO) as well as for internal projects. The development of the pipeline and selection of suitable software tools is based on the comparative analysis of the generated data sets, as well as previously described results and experiences in literature and forums. The selective development of certain python scripts enabled the evaluation of novel biological and clinical questions by standardizing gene names in the annotation step, generating heat- maps of non-standardized VCF-files as well as the identification and analysis of uncovered regions in NGS data sets. This work and the obtained results thereby provide the groundwork for further projects e.g. the analysis of the distribution of recurrent mutations or the functional analysis of specific mutation candidates. This extensions of the developed pipeline with python scripts helped to improve the efficiency and comparability of the NGS data. The interpretation of the NGS data with the extended script for example led to the discovery of three distinct molecular subgroups in MM. Furthermore the generation of the novel python scripts helped to analyze uncovered regions in the NGS data sets.  KW - Pipeline-Rechner KW - somatische Mutationen KW - Sequenzierung KW - Bioinformatik KW - Identifizierungspipeline KW - Next Generation Sequencing KW - Variantcalling KW - Bioinformatic KW - somatic mutations KW - DNS-Sequenz KW - Somatische Mutation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147773 ER - TY - THES A1 - Bertho, Sylvain T1 - Biochemical and molecular characterization of an original master sex determining gene in Salmonids T1 - Biochemische und molekulare Charakterisierung des Mastergens bei der Sex-bestimmung in Salmoniden N2 - Sexual development is a fundamental and versatile process that shapes animal morphology, physiology and behavior. The underlying developmental process is composed of the sex determination and the sex differentiation. Sex determination mechanisms are extremely labile among taxa. The initial triggers of the sex determination process are often genetics called sex determining genes. These genes are expressed in the bipotential gonad and tilt the balance to a developmental program allowing the differentiation of either a testis or an ovary. Fish represent a large and fascinating vertebrate group to study both sex determination and sex differentiation mechanisms. To date, among the known sex determining genes, three gene families namely sox, dmrt and TGF-β factors govern this developmental program. As exception to this rule, sdY “sexually dimorphic on the Y” does not belong to one of these families as it comes from the duplication / evolution of an ancestor gene related to immunity, i.e., the interferon related factor 9, irf9. sdY is the master sex determining gene in salmonids, a group of fishes that include species such as rainbow trout and Atlantic salmon. The present study was aimed to firstly characterize the features of SdY protein. Results indicate that SdY is predominantly localized in the cytoplasm tested in various fish and mammalian cell lines and confirmed by different methods. Predictive in silico analysis revealed that SdY is composed of a β-sandwich core surrounded by three α-helices as well specific characteristics conferring a putative protein-protein interaction site. Secondly, the study was aimed to understand how SdY could trigger testicular differentiation. SdY is a truncated divergent version of Irf9 that has a conserved protein-protein domain but lost the DNA interaction domain of its ancestor gene. It was then hypothesized that SdY could initiate testicular differentiation by protein-protein interactions. To evaluate this we first conducted a yeast-two-hybrid screen that revealed a high proportion of transcription factors including fox proteins. Using various biochemical and cellular methods we confirm an interaction between SdY and Foxl2, a major transcription factor involved in ovarian differentiation and identity maintenance. Interestingly, the interaction of SdY with Foxl2 leads to nuclear translocation of SdY from the cytoplasm. Furthermore, this SdY translocation mechanism was found to be specific to fish Foxl2 and to a lesser extend Foxl3 and not other Fox proteins or mammalian FoxL2. In addition, we found that this interaction allows the stabilization of SdY and prevents its degradation. Finally, to better decipher SdY action we used as a model a mutated version of SdY that was identified in XY females of Chinook salmon natural population. Results show that this mutation induces a local conformation defect obviously leading to a misfolded protein and a quick degradation. Moreover, the mutated version compromised the interaction with Foxl2 defining a minimal threshold to induce testicular differentiation. Altogether results from my thesis propose that SdY would trigger testicular differentiation in salmonids by preventing Foxl2 to promote ovarian differentiation. Further research should be now carried out on how this interaction of SdY and Foxl2 acts in-vivo. N2 - Le développement du sexe est un processus fondamental et versatile qui forme la morphologie, la physiologie et le comportement des animaux. Le processus de développement sous-jacent est composé de la détermination et de la différentiation du sexe. Les mécanismes de détermination du sexe sont extrêment labile parmi les taxons. Les signaux initiaux du processus de détermination du sexe sont souvent génétiques et nommés gènes de détermination du sexe. Ces gènes sont exprimés dans la gonade bipotente et font pencher l’équilibre vers un programme de développement permettant la formation soit d’un testicule soit d’un ovaire. Les poissons représentent un large et fascinant groupe de vertébrés pour étudier les processus de détermination et de différentiation du sexe. A l’heure actuelle, parmi les gènes de détermination connus, trois familles de gènes nommément sox, dmrt and les facteurs TGF-β gouvernent ce processus de développement. Comme exception à cette règle, sdY « sexually dimorphic on the Y » n’appartient à aucune de ces familles puisqu’il provient d’une duplication/évolution d’un gène ancestral de l’immunité, c’est-à-dire d’un facteur lié à l’interféron, irf9. sdY est le gène maître de la détermination du sexe chez les salmonidés, un groupe de poissons incluant des espèces tel que la truite arc-en-ciel et le saumon Altantique. L’étude présentée avait pour but de premièrement caractériser les propriétés de la protéine SdY. Les résultats indiquent que SdY est localisée de façon prédominante dans le cytoplasme testés dans diverses cellules de poissons et de mammifères et confirmé par des différentes méthodes. Une analyse in silico prédictive a révélé que SdY est composé d’un core β-sandwich entouré par trois hélices-α ainsi que des caractéristiques lui conférant un site d’interaction protéine-protéine. Deuxièment, l’étude avait pour but de comprendre comment SdY pouvait entraîner la différentiation testiculaire. SdY est une version tronquée divergente de Irf9 qui a conservé le domaine protéine-protéine mais a perdu le domaine d’interaction à l’ADN présent dans le gène ancestral. Il a été proposé que SdY entraîne la différentiation testiculaire par interaction(s) protéine-protéine. Afin d’évaluer cette hypothèse, un crible double-hybride en système levure a révélé une forte proportion de facteurs de transcription incluant les protéines fox. En utilisant de nombreuses méthodes au niveau cellulaire et biochimique, nous avons confirmé une interaction entre SdY et Foxl2, un facteur majeur impliqué dans la différentiation ovarienne et gardien de son identité. De façon intéressante, l’interaction de SdY avec Foxl2 conduit à une translocation nucléaire de SdY à partir du cytoplasme. De plus, le mécanisme de translocation de SdY est spécifique à la protéine Foxl2 et dans une moindre mesure à Foxl3 parmi les protéines Fox de poissons ou bien des protéines FoxL2 de mammifères. Puis, nous avons montré que cette interaction permet la stabilisation de SdY et empêche sa dégradation. Enfin, pour mieux décrypter l’action de SdY, nous avons utilisé comme modèle une version mutée qui a été identifiée dans une population naturelle de saumon Chinook avec des individus XY femelles. Les résultats montrent que la mutation induit un défaut de conformation local menant à une protéine mal-repliée et à sa dégradation. De plus, la version mutée compromet l’interaction avec Foxl2 définissant un seuil minimal d’induction de la différentiation testiculaire. Les résultats de ma thèse pris dans leur ensemble proposent que SdY pourrait entraîner la différentiation testiculaire chez les salmonidés en empêchant Foxl2 d’induire la différentiation ovarienne. Les recherches doivent se poursuivre dans le but de comprendre comment l’interaction SdY avec Foxl2 fonctionne in vivo. N2 - Sexuelle Entwicklung ist ein grundlegender und vielfältiger Prozess, der die Morphologie, Physiologie und das Verhalten von Tieren gestaltet. Der zugrundeliegende Entwicklungsprozess besteht aus der Geschlechtsbestimmung und der Geschlechtsdifferenzierung. Die Mechanismen der Geschlechtsbestimmung sind sehr instabil zwischen verschiedenen Arten. Die Auslöser des Prozesses der Geschlechtsbestimmung sind oft genetischen Ursprungs wie geschlechtsbestimmende Gene. Diese Gene werden in den bipotentialen Gonaden exprimiert und steuern die Balance eines entwicklungsgemäßen Programms, das die Differenzierung zum Testis oder Ovar erlaubt. Fische repräsentieren eine umfangreiche und faszinierende Gruppe von Vertebraten, um die Mechanismen der Geschlechtsbestimmung und –differenzierung zu untersuchen. Bislang ist bekannt, dass –unter den bekannten geschlechtsbestimmenden Genen- die drei Gen-Familien sox, dmrt und die TGFß-Faktoren dieses Entwicklungsprogramm steuern. Als Ausnahme von dieser Regel ist sdY „sexually dimorphic on the Y“ keiner dieser Familien zugehörig da es von der Duplikation / Evolution eines Vorgänger-Gens, das mit Immunität wie z.B. interferon related factor9, irf9, in Verbindung steht, herrührt. sdY ist das Mastergen der Geschlechtsbestimmung in Salmoniden, die als Gruppe von Fischen Arten wie die Regenbogenforelle und den Atlantischen Lachs umfassen. Das Ziel der vorliegenden Arbeit war es zunächst die Eigenschaften des SdY Proteins zu charakterisieren. Die Ergebnisse zeigen, dass SdY vor allem im Zytoplasma lokalisiert ist. Dies wurde in verschiedenen Fischen und Säugetier Zelllinien untersucht und mit Hilfe verschiedener Methoden bestätigt. Prädiktive in silico Analysen zeigten, dass SdY aus einem ß-sandwich Kern besteht, der von drei α-Helices umgeben ist sowie spezifischen Eigenschaften für eine putative Protein-Protein Interaktion Stelle. Das zweite Ziel der vorliegenden Arbeit war es, zu verstehen, wie SdY die testikuläre Differenzierung auslösen könnte. SdY ist eine verkürzte, divergente Version von Irf9, das eine konservierte Protein-Protein Domäne aufweist, jedoch seine DNA Interaktion Domäne a seines Vorläufer Gens verloren hat. Daher wurde angenommen, dass SdY die testikuläre Differenzierung durch Protein-Protein Interaktion initiieren könnte. Um diese Hypothese zu bestätigen führten wir zuerst einen Yeast Two-Hybrid Screen durch, der einen hohen Anteil an Transkriptionsfaktoren darunter fox Proteine zeigte. Unter Einsatz verschiedener biochemischer und zellulärer Methoden bestätigten wir eine Interaktion zwischen SdY und Foxl2, einem wesentlichen Transkriptionsfaktor, der in die Differenzierung und die Erhaltung der Identität der Ovarien involviert ist. Interessanterweise führt die Interaktion von SdY mit Foxl2 zu einer nukleären Translokation von SdY aus dem Zytoplasma. Außerdem wurde festgestellt, dass dieser SdY Translokations-Mechanismus für das Fisch Foxl2 und in einem geringerem Maße für Foxl3 spezifisch ist aber nicht für andere Fox Proteine oder Säuger FoxL2. Des Weiteren haben wir herausgefunden, dass diese Interaktion die Stabilisierung von SdY ermöglicht und sein Abbau verhindert. Zuletzt haben wir ein Modell einer mutierten Version von SdY benutzt, die in XY Weibchen der natürlichen Population der Königslachse identifiziert wurde, um die Wirkung von SdY besser zu entschlüsseln. Die Ergebnisse zeigen, dass diese Mutation einen lokalen Konformationsdefekt verursacht, der zu fehlgefalteten Proteinen und einem raschen Abbau führt. Darüber hinaus beeinträchtigt die mutierte Version die Interaktion mit FoxL2 und definiert einen minimalen Grenzwert, um die testikuläre Differenzierung zu induzieren. Insgesamt deuten die Ergebnisse meiner Dissertation darauf hin, dass SdY die testikuläre Differenzierung in Salmoniden auslöst, indem es verhindert, dass Foxl2 die Differenzierung der Ovarien fördert. In Zukunft soll erforscht werden, wie sich die Interaktion von SdY und Foxl2 in-vivo auswirkt. KW - Fish Sex determination KW - gonad development KW - SdY KW - salmonids KW - Lachsartige KW - Geschlechtsdifferenzierung KW - Molekulargenetik Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-139130 ER - TY - JOUR A1 - Aurast, Anna A1 - Gradl, Tobias A1 - Pernes, Stefan A1 - Pielström, Steffen T1 - Big Data und Smart Data in den Geisteswissenschaften JF - Bibliothek Forschung und Praxis N2 - Kein Abstract verfügbar. KW - Textanalyse KW - unstrukturierte Daten KW - Natural Language Processing KW - Text analysis KW - unstructured data KW - natural language processing Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195237 SN - 1865-7648 SN - 0341-4183 N1 - Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich. VL - 40 IS - 2 ER - TY - THES A1 - Imes, Dennis T1 - Aufklärung der molekularen Struktur und Funktion des R-Typ Anionenkanals QUAC1 in Schließzellen T1 - Molecular structure and function analyses of the R-type anion channel QUAC1 in guard cells N2 - Zum Gasaustausch mit Ihrer Umgebung besitzen höhere Pflanzen stomatäre Komplexe. Die Turgor-getrieben Atmungsöffnungen in der Epidermis der Blätter werden von zwei Schließzellen umsäumt. Um bei Trockenheit einen exzessiven Verlust von Wasser zu verhindern, synthetisieren/importieren Schließzellen das Stresshormon ABA (Abszisinsäure), das über eine schnelle ABA-Signalkaskade plasmamembrangebundene Ionenkanäle steuert. Dabei wird der Stomaschluss durch die Aktivität von R-(rapid) und S-(slow)Typ Anionenkanälen initiiert. Obwohl die R- und S-Typ Anionenströme in Schließzellen seit Jahrzehnten bekannt waren, konnte erst kürzlich das Gen identifiziert werden, das für den S-Typ Anionenkanal (SLAC1, Slow activating Anion Channel 1) kodiert. Daraufhin wurde schnell der Zusammenhang zwischen dem Stresshormon ABA, der ABA-Signalkette und der Aktivität des SLAC1 Anionenkanals im heterologen Expressionssystem der X. laevis Oozyten als auch in Schließzellprotoplasten aufgeklärt. Es konnte gezeigt werden, dass ABA durch einen zytosolischen Rezeptor/Phosphatasekomplex (RCAR1/ABI1) erkannt wird und die Aktivität von kalziumabhängigen Kinasen (CPK-Familie) sowie kalziumunabhängigen Kinasen der SnRK2-Familie (OST1) steuert. In Anwesenheit von ABA phosphorylieren diese Kinasen SLAC1 und sorgen so für die Aktivierung von Anionenströmen und damit für die Initiierung des Stomaschlusses. Die genetische Herkunft der ABA-induzierten R-Typ Ströme in Schließzellen war zu Beginn der vorliegenden Arbeit noch nicht bekannt. R-Typ Ströme zeichnen sich durch eine strikte Spannungsabhängigkeit und sehr schnellen Aktivierungs- sowie Deaktivierungskinetiken aus. Die Charakterisierung von Verlustmutanten des Schließzell-exprimierten Gens ALMT12 (Aluminium-aktivierter Malattransporter 12) konnte in Zusammenarbeit mit der Arbeitsgruppe Martinoia (Zürich) erste Hinweise auf die Beteiligung dieses Gens an der Stomabewegung demonstrieren. Anschließende Patch-Clamp Untersuchungen an Schließzellprotoplasten aus Wildtyppflanzen und ALMT12-Verlustmutanten zeigten, dass ALMT12 für die Malat-aktivierte R-Typ Anionenstromkomponente verantwortlich ist. Deshalb wurde der Anionenkanal QUAC1 (Quickly activating Anion Channel 1) benannt - in Anlehnung an die Benennung des Anionenkanals SLAC1. Mit der Identifizierung von QUAC1 in planta war es nun meine Aufgabe, die elektrischen Eigenschaften von ALMT12/QUAC1 und dessen Aktivitätskontrolle durch die ABA-Signalkaskade im heterologen Expressionssystem der Xenopus Oozyten zu untersuchen. Protein-Protein Interaktionsstudien mit der Hilfe der Bimolekularen Fluoreszenz-Technik, sowie die Beobachtung von markant erhöhten QUAC1 Anionenströmen in Anwesenheit der SnRK2 Kinase OST1 und den Calcium-abhängigen Kinasen CPK2 und CPK20, ließen den Schluss zu, dass QUAC1, ebenso wie SLAC1, unter der Kontrolle des schnellen ABA-Signalwegs steht. Eine zusätzliche Expression des negativen Regulators ABI1 unterdrückte die aktivierenden Eigenschaften der QUAC1-aktivierenden Kinasen, was die Hypothese der Koregulation von S- und R-Typ Anionenkanälen durch die gleiche ABA-Signalkaskade weiter unterstützt. Zur weiteren Aufklärung der elektrischen Eigenschaften von QUAC1 wurden tiefgreifende elektrophysiologische Untersuchungen mit der Zwei-Elektroden-Spannungsklemmen Technik durchgeführt. Durch die Wahl von geschickten Spannungsprotokollen konnte sowohl die schnelle Aktivierungskinetik als auch die schnelle Deaktivierungskinetik von QUAC1 bestimmt und quantifiziert werden. Diese Stromantworten waren sehr ähnlich zu den R-Typ Strömen, die man von Patch-Clamp Untersuchungen an Schließzellprotoplasten kannte, was ein weiteres Indiz dafür war, dass es sich bei QUAC1 tatsächlich um eine Komponente des R-Typ Kanals aus Schließzellen handelt. Weiterführende Untersuchungen bezüglich der Spannungsabhängigkeit und der Selektivität von QUAC1 charakterisierten das Protein als einen Depolarisations-aktivierten Anionenkanal mit einer starken Präferenz für Dicarbonsäuren wie Malat und Fumarat. Zudem konnte auch eine Leitfähigkeit für Sulfat und Chlorid nachgewiesen werden. Interessanterweise erwies sich Malat nicht nur als ein permeierendes Ion, sondern auch als ein regulierendes Ion, welches das spannungsabhängige Schalten von QUAC1 maßgeblich beeinflusst. Extrazelluläres Malat verschob die Offenwahrscheinlichkeit von QUAC1 sehr stark zu negativeren Membranspannungen, so dass der Anionenkanal bereits bei typischen Ruhespannungen von Schließzellen (ca. -150 mV) aktiviert werden konnte. Eine Beladung von QUAC1-exprimierender Oozyten mit Malat bewirkte zum einen höhere Anioneneffluxströme, aber auch eine Verschiebung der spannungsabhängigen Offenwahrscheinlichkeit zu negativeren Membranpotentialen. Struktur-Funktionsanalysen sollten die umstrittene Topologie von ALMT-ähnlichen Proteinen beleuchten und die molekulare Herkunft der Phosphorylierungsaktivierung aufzeigen, sowie die Malatabhängigkeit und die starke Spannungsabhängigkeit von QUAC1 aufklären. Es zeigte sich jedoch schnell, dass Punktmutationen und Deletionen im C-Terminus von QUAC1 sehr häufig zu nicht-funktionellen Mutanten führten. Diese Tatsache weist darauf hin, dass es sich um einen hoch-strukturierten und funktionell sehr wichtigen Bereich des Anionenkanals handelt. Auch die Topologie des Anionenkanalproteins wird in der Literatur kontrovers diskutiert. Sowohl die Lage des N- und C-Terminus (extrazellulär oder intrazellulär), als auch die Anzahl der membrandurchspannenden Domänen war nicht abschließend geklärt. Deshalb wurde in einem Fluoreszenz-basiertem Ansatz die Lage der Termini bestimmt. Im Rahmen meiner Arbeit konnte somit eindeutig gezeigt werden, dass sich beide Termini im Zytosol der Zelle befinden. Auf Grundlage von Modellen aus der Literatur und meiner Topologiebestimmungen konnte schließlich ein erweitertes Modell zur Struktur von QUAC1 entwickelt werden. Dieses Modell kann in Zukunft als Ausgangspunkt für weiterführende Struktur-Funktionsanalysen dienen. Diese Arbeit hat somit gezeigt, dass das Gen QUAC1 tatsächlich eine Komponente der R-Typ Ströme in Schließzellen kodiert. Ebenso wie SLAC1 steht der Malat-induzierte Anionenkanal QUAC1 unter der Kontrolle der schnellen ABA-Signalkaskade. In Zukunft bleibt zu klären, welche weiteren Gene für die R-Typ Kanalproteine in Schließzellen kodieren und welche strukturelle Grundlage für die besonderen Eigenschaften von QUAC1 hinsichtlich seiner schnellen Kinetiken, seiner Selektivität und Aktivierbarkeit durch Malat. N2 - Higher plants are able to exchange gases with their environment. This gas exchange is accomplished by the stomatal complex, which consist of two tugor-driven guard cells (GC) that surround a pore in the epidermis. Under drought conditions, guard cells produce and import the plant stress hormone abscisic acid (ABA). ABA is able to activate plasma membrane localized ion channels via the fast ABA-signal cascade, which leads to a closure of the stoma and thus minimizes the loss of water. The stomatal closure is initialized by the R-(rapid) and S-(slow) type anion channels. Although R- and S-type anion channels in guard cells have been known for over a decade, the gene which decodes the S-type anion channel SLAC1 (Slow activating Anion Channel 1) has only recently been identified. Consequently, the relationship between the plant hormone ABA, the ABA-signal-transduction-chain, and the activity of SLAC1 could be clarified in rapid succession in the heterologous expression system of X. laevis oocytes as well as in GC-protoplasts. It could be shown that ABA is recognized by a cytosolic receptor/phosphatase complex (RCAR/ABI1). This complex in turn regulates the activity of calcium dependent kinases of the CPK-family as well as the calcium independent kinases of the SnRK2-family (OST1). In the presence of ABA, these kinases activate SLAC1 by phosphorylation, and by this activate anion currents across the plasma membrane, ultimately leading to closure of the stomates. The genetic origin of the ABA induced R-type currents in guard cells was unknown at the beginning of this thesis. R-type currents are characterized by strong voltage-dependent behavior and fast activation- and deactivation-kinetics. In cooperation with the workgroup of Martinoia (Zürich), knock-out plants missing the guard cell gen ALMT12 (Aluminum activated Malate Transporter 12) were characterized. This work delivered the first hints that ALMT12 is involved in the stomatal movement. Subsequent patch-clamp studies on GC-protoplasts from WT and ALMT12 knock-out mutants revealed that ALMT12 is responsible for the malate-activated component of the R-type anion currents. Therefore, the anion-channel was named QUAC1 (Quick activating Anion Channel) in dependence on the naming of SLAC1. With the identification of QUAC1 in planta it was my duty to research the electrical properties of ALMT12/QUAC1 as well as the activation by the ABA-signal-transduction-chain in the heterologous expression system of X. laevis oocytes. Protein-protein interaction studies via bimolecular fluorescence complementation (BIFC) as well as significantly higher QUAC1 anion currents in the presence of the SnRK2 kinase OST1 and the calcium-dependent-kinases CPK2 and CPK20 led to the conclusion that QUAC1 is under the control of the fast ABA signaling pathway, as it was shown before for SLAC1. Furthermore expression of the negative regulator ABI1 inhibited the activating properties of the QUAC1-activating kinases. These findings support further the hypotheses of the simultaneous regulation of S- and R-type anion channels by the ABA-signaling pathway. To further elucidate the electrical properties of QUAC1, electrophysiological investigations were performed with the two-electrode-voltage-clamp technique (TEVC). In this way, the fast activation and deactivation of QUAC1 could be identified and quantified by carefully chosen voltage-clamp protocols. These current responses of QUAC1 closely resembled the R-type currents known from former patch-clamp studies from GC-protoplasts. This further supported the conclusion that QUAC1 is indeed a component of the R-type channels of guard cells. Additional investigations of the voltage-dependence and selectivity of QUAC1 characterized the protein as a depolarization-activated anion channel with strong preference for bicarbonate acids like malate and fumarate. Furthermore, a conductance for sulfate and chloride could also be shown. Interestingly, malate was not only able to permeate the channel, it was also able to alter the voltage-dependence of QUAC1. External malate strongly shifted the open probability of QUAC1 to negative membrane voltages. By this shift the anion channel could be activated at typical guard cell membrane potentials (approx. 150 mV). Loading of QUAC1 expressing oocytes with malate produced enhanced anion efflux currents and shift the voltage-dependent open probability to negative membrane potentials. Structure function analysis were performed to clarify the controversial topology of ALMT like proteins and the molecular origin of the phosphorylation activation. Furthermore, this should elucidate the origin of the malate dependence and the strong voltage dependence of QUAC1. It soon became evident that point mutations and deletions in the C-terminus of QUAC1 very often lead to nonfunctional mutants. This points toward a highly structured and functionally important region of the anion channel. In addition, the topology of the anion-channel-protein is controversially debated in literature. Neither the position of the C- and N-terminus (intra- or extracellular) nor the number of transmembrane domains has been conclusively established. Due to this, the position of the C- and N-termini were localized by a fluorescence based experiment. As part of this work, it could be shown explicitly that both termini reside in the cytosol of the cell. Based on models from the literature and my own topology studies, an enhanced structure model for QUAC1 could be generated. This model will serve as a starting point for future structure function analysis. This work has thus shown that the gene QUAC1 indeed encodes a component of the R-type currents in guard cells. Like SLAC1, the malate-induced anion channel QUAC1 is under the control of the fast ABA-signal-cascade. Future works must establish which further genes encode R-type channel proteins and which structural attributes are responsible for the special traits of QUAC1: its fast kinetics, its selectivity and its activation by malate. KW - Ackerschmalwand KW - Schließzelle KW - Anionentranslokator KW - Abscisinsäure KW - Struktur KW - Funktion KW - R-Typ KW - Anionenkanal KW - QUAC1 KW - TEVC Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136860 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 - 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 - JOUR A1 - Schwarz, Roland F. A1 - Tamuri, Asif U. A1 - Kultys, Marek A1 - King, James A1 - Godwin, James A1 - Florescu, Ana M. A1 - Schultz, Jörg A1 - Goldman, Nick T1 - ALVIS: interactive non-aggregative visualization and explorative analysis of multiple sequence alignments JF - Nucleic Acids Research N2 - Sequence Logos and its variants are the most commonly used method for visualization of multiple sequence alignments (MSAs) and sequence motifs. They provide consensus-based summaries of the sequences in the alignment. Consequently, individual sequences cannot be identified in the visualization and covariant sites are not easily discernible. We recently proposed Sequence Bundles, a motif visualization technique that maintains a one-to-one relationship between sequences and their graphical representation and visualizes covariant sites. We here present Alvis, an open-source platform for the joint explorative analysis of MSAs and phylogenetic trees, employing Sequence Bundles as its main visualization method. Alvis combines the power of the visualization method with an interactive toolkit allowing detection of covariant sites, annotation of trees with synapomorphies and homoplasies, and motif detection. It also offers numerical analysis functionality, such as dimension reduction and classification. Alvis is user-friendly, highly customizable and can export results in publication-quality figures. It is available as a full-featured standalone version (http://www.bitbucket.org/rfs/alvis) and its Sequence Bundles visualization module is further available as a web application (http://science-practice.com/projects/sequence-bundles). KW - visualization KW - multiple sequence alignments KW - phylogenetic trees KW - Alvis Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-166374 VL - 44 IS - 8 ER -