TY - JOUR A1 - Yang, Manli A1 - Rajeeve, Karthika A1 - Rudel, Thomas A1 - Dandekar, Thomas T1 - Comprehensive Flux Modeling of Chlamydia trachomatis Proteome and qRT-PCR Data Indicate Biphasic Metabolic Differences Between Elementary Bodies and Reticulate Bodies During Infection JF - Frontiers in Microbiology N2 - Metabolic adaptation to the host cell is important for obligate intracellular pathogens such as Chlamydia trachomatis (Ct). Here we infer the flux differences for Ct from proteome and qRT-PCR data by comprehensive pathway modeling. We compare the comparatively inert infectious elementary body (EB) and the active replicative reticulate body (RB) systematically using a genome-scale metabolic model with 321 metabolites and 277 reactions. This did yield 84 extreme pathways based on a published proteomics dataset at three different time points of infection. Validation of predictions was done by quantitative RT-PCR of enzyme mRNA expression at three time points. Ct’s major active pathways are glycolysis, gluconeogenesis, glycerol-phospholipid (GPL) biosynthesis (support from host acetyl-CoA) and pentose phosphate pathway (PPP), while its incomplete TCA and fatty acid biosynthesis are less active. The modeled metabolic pathways are much more active in RB than in EB. Our in silico model suggests that EB and RB utilize folate to generate NAD(P)H using independent pathways. The only low metabolic flux inferred for EB involves mainly carbohydrate metabolism. RB utilizes energy -rich compounds to generate ATP in nucleic acid metabolism. Validation data for the modeling include proteomics experiments (model basis) as well as qRT-PCR confirmation of selected metabolic enzyme mRNA expression differences. The metabolic modeling is made fully available here. Its detailed insights and models on Ct metabolic adaptations during infection are a useful modeling basis for future studies. KW - metabolic modeling KW - metabolic flux KW - infection biology KW - elementary body KW - reticulate body KW - Chlamydia trachomatis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189434 SN - 1664-302X VL - 10 IS - 2350 ER - TY - THES A1 - Wilde, Sabrina T1 - Einsatz von mechanistischen Biomarkern zur Charakterisierung und Bewertung von \(in\) \(vitro\) Genotoxinen T1 - Use of mechanistic biomarkers for the characterization and evaluation of \(in\) \(vitro\) genotoxins N2 - Die verfügbaren in vitro Genotoxizitätstests weisen hinsichtlich ihrer Spezifität und ihres Informationsgehalts zum vorliegenden Wirkmechanismus (Mode of Action, MoA) Einschränkungen auf. Um diese Mängel zu überwinden, wurden in dieser Arbeit zwei Ziele verfolgt, die zu der Entwicklung und Etablierung neuer in vitro Methoden zur Prüfung auf Genotoxizität in der Arzneimittelentwicklung beitragen. 1. Etablierung und Bewertung einer neuen in vitro Genotoxizitätsmethode (MultiFlow Methode) Die MultiFlow Methode basiert auf DNA-schadensassoziierten Proteinantworten von γH2AX (DNA-Doppelstrangbrüche), phosphorylierten H3 (S10) (mitotische Zellen), nukleären Protein p53 (Genotoxizität) und cleaved PARP1 (Apoptose) in TK6-Zellen. Insgesamt wurden 31 Modellsubstanzen mit dem MultiFlow Assay und ergänzend mit dem etablierten Mikrokerntest (MicroFlow MNT), auf ihre Fähigkeit verschiedene MoA-Gruppen (Aneugene/Klastogene/Nicht-Genotoxine) zu differenzieren, untersucht. Die Performance der „neuen“ gegenüber der „alten“ Methode führte zu einer verbesserten Sensitivität von 95% gegenüber 90%, Spezifität von 90% gegenüber 72% und einer MoA-Klassifizierungsrate von 85% gegenüber 45% (Aneugen vs. Klastogen). 2. Identifizierung mechanistischer Biomarker zur Klassifizierung genotoxischer Substanzen Die Analyse 67 ausgewählter DNA-schadensassoziierter Gene in der QuantiGene Plex Methode zeigte, dass mehrere Gene gleichzeitig zur MoA-Klassifizierung beitragen können. Die Kombination der höchstrangierten Marker BIK, KIF20A, TP53I3, DDB2 und OGG1 ermöglichte die beste Identifizierungsrate der Modellsubstanzen. Das synergetische Modell kategorisierte 16 von 16 Substanzen korrekt in Aneugene, Klastogene und Nicht-Genotoxine. Unter Verwendung der Leave-One-Out-Kreuzvalidierung wurde das Modell evaluiert und erreichte eine Sensitivität, Spezifität und Prädiktivität von 86%, 83% und 85%. Ergebnisse der traditionellen qPCR Methode zeigten, dass Genotoxizität mit TP53I3, Klastogenität mit ATR und RAD17 und oxidativer Stress mit NFE2L2 detektiert werden kann. Durch die Untersuchungen von posttranslationalen Modifikationen unter Verwendung der High-Content-Imaging-Technologie wurden mechanistische Assoziationen für BubR1 (S670) und pH3 (S28) mit Aneugenität, 53BP1 (S1778) und FANCD2 (S1404) mit Klastogenität, p53 (K373) mit Genotoxizität und Nrf2 (S40) mit oxidativem Stress identifiziert. Diese Arbeit zeigt, dass (Geno)toxine unterschiedliche Gen- und Proteinveränderungen in TK6-Zellen induzieren, die zur Erfassung mechanistischer Aktivitäten und Einteilung (geno)toxischer MoA-Gruppen (Aneugen/Klastogen/ Reaktive Sauerstoffspezies) eingesetzt werden können und daher eine bessere Risikobewertung von Wirkstoffkandidaten ermöglichen. N2 - Available in vitro genotoxicity tests have limitations regarding their specificity and mode of action (MoA) information. To overcome these shortages, two objectives were pursued in this work to develop and establish new in vitro tools for genotoxicity testing. 1. Establishment and evaluation of a novel in vitro genotoxicity method (MultiFlow method) The MultiFlow method is based on DNA damage-related protein responses of γH2AX (DNA double-strand breaks), phosphorylated H3 (S10) (mitotic cells), nuclear protein p53 (genotoxicity) and cleaved PARP1 (apoptosis) in TK6 cells. In total, 31 model substances were studied flow cytometrically in the MultiFlow assay - and also with the well-established micronucleus test (MicroFlow MNT) - for their ability to classify across MoA groups: aneugens, clastogens and non-genotoxicants. The performance of the new method resulted in an improved sensitivity of 95% to 90%, specificity of 90% to 72% and a MoA classification rate of 85% to 45% (aneugen vs. clastogen). 2. Identification of mechanistic biomarkers for the characterization of genotoxicants The analysis of 67 selected DNA-damage associated genes using the QuantiGene Plex method showed that a combinaten of genes can contribute to MoA classification. The combination of the highest-ranked markers (BIK, KIF20A, TP53I3, DDB2 and OGG1) highlighted the best identification rate of model substances. The synergistic statistic tool correctly categorized 16 of 16 substances into aneugens, clastogens and non-genotoxicants. By using leave-one out cross validation, the model was evaluated and achieved a sensitivity, specificity and predictivity of 86%, 83%, 85% respectively. Follow-up with qPCR was conducted and revealed associations with TP53I3 for genotoxicity, ATR and RAD17 for clastogenicity and NFE2L2 for oxidative stress. By investigating posttranslational modifications using high-content imaging, associations for BubR1 (S670) and pH3 (S28) with aneugenicity, 53BP1 (S1778) and FANCD2 (S1404) with clastogenicity, p53 (K373) with genotoxicity and Nrf2 (S40) with oxidative stress were found to be further useful for MoA identification. This work demonstrates that genotoxicants and non-genotoxicants induce different gene- and protein expression changes in the TK6 cells that can be used to classify the MoA groups (aneugen/clastogen/non-genotoxicant/reactive oxygen species), thus enabling better risk assessment of potential drug candidates. KW - Genotoxizität KW - Genotoxicitiy KW - Klastogene KW - Aneugene KW - Biomarker KW - Klassifizierung KW - clastogens KW - aneugens KW - biomarker KW - classification Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-182782 ER - TY - JOUR A1 - Wagner, Johanna A1 - Eiken, Barbara A1 - Haubitz, Imme A1 - Lichthardt, Sven A1 - Matthes, Niels A1 - Löb, Stefan A1 - Klein, Ingo A1 - Germer, Christoph-Thomas A1 - Wiegering, Armin T1 - Suprapubic bladder drainage and epidural catheters following abdominal surgery—a risk for urinary tract infections? JF - PLoS ONE N2 - Background Epidural catheters are state of the art for postoperative analgesic in abdominal surgery. Due to neurolysis it can lead to postoperative urinary tract retention (POUR), which leads to prolonged bladder catheterization, which has an increased risk for urinary tract infections (UTI). Our aim was to identify the current perioperative management of urinary catheters and, second, to identify the optimal time of suprapubic bladder catheter removal in regard to the removal of the epidural catheter. Methods We sent a questionnaire to 102 German hospitals and analyzed the 83 received answers to evaluate the current handling of bladder drainage and epidural catheters. Then, we conducted a retrospective study including 501 patients, who received an epidural and suprapubic catheter after abdominal surgery at the University Hospital Würzburg. We divided the patients into three groups according to the point in time of suprapubic bladder drainage removal in regard to the removal of the epidural catheter and analyzed the onset of a UTI. Results Our survey showed that in almost all hospitals (98.8%), patients received an epidural catheter and a bladder drainage after abdominal surgery. The point in time of urinary catheter removal was equally distributed between before, simultaneously and after the removal of the epidural catheter (respectively: ~28–29%). The retrospective study showed a catheter-associated UTI in 6.7%. Women were affected significantly more often than men (10,7% versus 2,5%, p<0.001). There was a non-significant trend to more UTIs when the suprapubic catheter was removed after the epidural catheter (before: 5.7%, after: 8.4%). Conclusion The point in time of suprapubic bladder drainage removal in relation to the removal of the epidural catheter does not seem to correlate with the rate of UTIs. The current handling in Germany is inhomogeneous, so further studies to standardize treatment are recommended. KW - catheters KW - epidural block KW - bladder KW - urinary tract infections KW - abdominal surgery KW - catheterization KW - surgical and invasive medical procedures KW - rectum Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177731 VL - 14 IS - 1 ER - TY - JOUR A1 - Wagner, Fabienne A1 - Kunz, Tobias C. A1 - Chowdhury, Suvagata R. A1 - Thiede, Bernd A1 - Fraunholz, Martin A1 - Eger, Debora A1 - Kozjak-Pavlovic, Vera T1 - Armadillo repeat-containing protein 1 is a dual localization protein associated with mitochondrial intermembrane space bridging complex JF - PLoS ONE N2 - Cristae architecture is important for the function of mitochondria, the organelles that play the central role in many cellular processes. The mitochondrial contact site and cristae organizing system (MICOS) together with the sorting and assembly machinery (SAM) forms the mitochondrial intermembrane space bridging complex (MIB), a large protein complex present in mammalian mitochondria that partakes in the formation and maintenance of cristae. We report here a new subunit of the mammalian MICOS/MIB complex, an armadillo repeat-containing protein 1 (ArmC1). ArmC1 localizes both to cytosol and mitochondria, where it associates with the outer mitochondrial membrane through its carboxy-terminus. ArmC1 interacts with other constituents of the MICOS/MIB complex and its amounts are reduced upon MICOS/MIB complex depletion. Mitochondria lacking ArmC1 do not show defects in cristae structure, respiration or protein content, but appear fragmented and with reduced motility. ArmC1 represents therefore a peripheral MICOS/MIB component that appears to play a role in mitochondrial distribution in the cell. KW - Mitochondria KW - Outer membrane proteins KW - HeLa cells KW - Immunoprecipitation KW - Cytosol KW - Small interfering RNAs KW - Confocal microscopy KW - Cell stainin Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202670 VL - 14 IS - 10 ER - TY - JOUR A1 - Voulgari‐Kokota, Anna A1 - Ankenbrand, Markus J. A1 - Grimmer, Gudrun A1 - Steffan‐Dewenter, Ingolf A1 - Keller, Alexander T1 - Linking pollen foraging of megachilid bees to their nest bacterial microbiota JF - Ecology and Evolution N2 - Solitary bees build their nests by modifying the interior of natural cavities, and they provision them with food by importing collected pollen. As a result, the microbiota of the solitary bee nests may be highly dependent on introduced materials. In order to investigate how the collected pollen is associated with the nest microbiota, we used metabarcoding of the ITS2 rDNA and the 16S rDNA to simultaneously characterize the pollen composition and the bacterial communities of 100 solitary bee nest chambers belonging to seven megachilid species. We found a weak correlation between bacterial and pollen alpha diversity and significant associations between the composition of pollen and that of the nest microbiota, contributing to the understanding of the link between foraging and bacteria acquisition for solitary bees. Since solitary bees cannot establish bacterial transmission routes through eusociality, this link could be essential for obtaining bacterial symbionts for this group of valuable pollinators. KW - foraging patterns KW - nest microbiota KW - plant–microbe–pollinator triangle KW - pollination network KW - solitary bees KW - wild bees Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201749 SN - 00 VL - 2019 IS - 9 ER - TY - JOUR A1 - Villalobos, Alvaro S. A1 - Wiese, Jutta A1 - Imhoff, Johannes F. A1 - Dorador, Cristina A1 - Keller, Alexander A1 - Hentschel, Ute T1 - Systematic affiliation and genome analysis of Subtercola vilae DB165T with particular emphasis on cold adaptation of an isolate from a high-altitude cold volcano lake JF - Microorganisms N2 - Among the Microbacteriaceae the species of Subtercola and Agreia form closely associated clusters. Phylogenetic analysis demonstrated three major phylogenetic branches of these species. One of these branches contains the two psychrophilic species Subtercola frigoramans and Subtercola vilae, together with a larger number of isolates from various cold environments. Genomic evidence supports the separation of Agreia and Subtercola species. In order to gain insight into the ability of S. vilae to adapt to life in this extreme environment, we analyzed the genome with a particular focus on properties related to possible adaptation to a cold environment. General properties of the genome are presented, including carbon and energy metabolism, as well as secondary metabolite production. The repertoire of genes in the genome of S. vilae DB165\(^T\) linked to adaptations to the harsh conditions found in Llullaillaco Volcano Lake includes several mechanisms to transcribe proteins under low temperatures, such as a high number of tRNAs and cold shock proteins. In addition, S. vilae DB165\(^T\) is capable of producing a number of proteins to cope with oxidative stress, which is of particular relevance at low temperature environments, in which reactive oxygen species are more abundant. Most important, it obtains capacities to produce cryo-protectants, and to combat against ice crystal formation, it produces ice-binding proteins. Two new ice-binding proteins were identified which are unique to S. vilae DB165\(^T\). These results indicate that S. vilae has the capacity to employ different mechanisms to live under the extreme and cold conditions prevalent in Llullaillaco Volcano Lake. KW - cold adaptation KW - Subtercola vilae KW - genome analysis KW - systematic affiliation KW - Llullaillaco Volcano Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197394 SN - 2076-2607 VL - 7 IS - 4 ER - TY - JOUR A1 - Vey, Johannes A1 - Kapsner, Lorenz A. A1 - Fuchs, Maximilian A1 - Unberath, Philipp A1 - Veronesi, Giulia A1 - Kunz, Meik T1 - A toolbox for functional analysis and the systematic identification of diagnostic and prognostic gene expression signatures combining meta-analysis and machine learning JF - Cancers N2 - The identification of biomarker signatures is important for cancer diagnosis and prognosis. However, the detection of clinical reliable signatures is influenced by limited data availability, which may restrict statistical power. Moreover, methods for integration of large sample cohorts and signature identification are limited. We present a step-by-step computational protocol for functional gene expression analysis and the identification of diagnostic and prognostic signatures by combining meta-analysis with machine learning and survival analysis. The novelty of the toolbox lies in its all-in-one functionality, generic design, and modularity. It is exemplified for lung cancer, including a comprehensive evaluation using different validation strategies. However, the protocol is not restricted to specific disease types and can therefore be used by a broad community. The accompanying R package vignette runs in ~1 h and describes the workflow in detail for use by researchers with limited bioinformatics training. KW - bioinformatics tool KW - R package KW - machine learning KW - meta-analysis KW - biomarker signature KW - gene expression analysis KW - survival analysis KW - functional analysis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193240 SN - 2072-6694 VL - 11 IS - 10 ER - TY - JOUR A1 - Thölken, Clemens A1 - Thamm, Markus A1 - Erbacher, Christoph A1 - Lechner, Marcus T1 - Sequence and structural properties of circular RNAs in the brain of nurse and forager honeybees (Apis mellifera) JF - BMC Genomics N2 - Background The honeybee (Apis mellifera) represents a model organism for social insects displaying behavioral plasticity. This is reflected by an age-dependent task allocation. The most protruding tasks are performed by young nurse bees and older forager bees that take care of the brood inside the hive and collect food from outside the hive, respectively. The molecular mechanism leading to the transition from nurse bees to foragers is currently under intense research. Circular RNAs, however, were not considered in this context so far. As of today, this group of non-coding RNAs was only known to exist in two other insects, Drosophila melanogaster and Bombyx mori. Here we complement the state of circular RNA research with the first characterization in a social insect. Results We identified numerous circular RNAs in the brain of A. mellifera nurse bees and forager bees using RNA-Seq with exonuclease enrichment. Presence and circularity were verified for the most abundant representatives. Back-splicing in honeybee occurs further towards the end of transcripts and in transcripts with a high number of exons. The occurrence of circularized exons is correlated with length and CpG-content of their flanking introns. The latter coincides with increased DNA-methylation in the respective loci. For two prominent circular RNAs the abundance in worker bee brains was quantified in TaqMan assays. In line with previous findings of circular RNAs in Drosophila, circAmrsmep2 accumulates with increasing age of the insect. In contrast, the levels of circAmrad appear age-independent and correlate with the bee's task. Its parental gene is related to amnesia-resistant memory. Conclusions We provide the first characterization of circRNAs in a social insect. Many of the RNAs identified here show homologies to circular RNAs found in Drosophila and Bombyx, indicating that circular RNAs are a common feature among insects. We find that exon circularization is correlated to DNA-methylation at the flanking introns. The levels of circAmrad suggest a task-dependent abundance that is decoupled from age. Moreover, a GO term analysis shows an enrichment of task-related functions. We conclude that circular RNAs could be relevant for task allocation in honeybee and should be investigated further in this context. KW - circRNA KW - circular transcriptome sequencing KW - honeybee KW - brain KW - neuronal KW - Methylation KW - CpG KW - alternative splicing KW - behavioral plasticity Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241302 VL - 20 ER - TY - JOUR A1 - Thiem, Alexander A1 - Hesbacher, Sonja A1 - Kneitz, Hermann A1 - di Primio, Teresa A1 - Heppt, Markus V. A1 - Hermanns, Heike M. A1 - Goebeler, Matthias A1 - Meierjohann, Svenja A1 - Houben, Roland A1 - Schrama, David T1 - IFN-gamma-induced PD-L1 expression in melanoma depends on p53 expression JF - Journal of Experimental & Clinical Cancer Research N2 - Background Immune checkpoint inhibition and in particular anti-PD-1 immunotherapy have revolutionized the treatment of advanced melanoma. In this regard, higher tumoral PD-L1 protein (gene name: CD274) expression is associated with better clinical response and increased survival to anti-PD-1 therapy. Moreover, there is increasing evidence that tumor suppressor proteins are involved in immune regulation and are capable of modulating the expression of immune checkpoint proteins. Here, we determined the role of p53 protein (gene name: TP53) in the regulation of PD-L1 expression in melanoma. Methods We analyzed publicly available mRNA and protein expression data from the cancer genome/proteome atlas and performed immunohistochemistry on tumors with known TP53 status. Constitutive and IFN-ɣ-induced PD-L1 expression upon p53 knockdown in wildtype, TP53-mutated or JAK2-overexpressing melanoma cells or in cells, in which p53 was rendered transcriptionally inactive by CRISPR/Cas9, was determined by immunoblot or flow cytometry. Similarly, PD-L1 expression was investigated after overexpression of a transcriptionally-impaired p53 (L22Q, W23S) in TP53-wt or a TP53-knockout melanoma cell line. Immunoblot was applied to analyze the IFN-ɣ signaling pathway. Results For TP53-mutated tumors, an increased CD274 mRNA expression and a higher frequency of PD-L1 positivity was observed. Interestingly, positive correlations of IFNG mRNA and PD-L1 protein in both TP53-wt and -mutated samples and of p53 and PD-L1 protein suggest a non-transcriptional mode of action of p53. Indeed, cell line experiments revealed a diminished IFN-ɣ-induced PD-L1 expression upon p53 knockdown in both wildtype and TP53-mutated melanoma cells, which was not the case when p53 wildtype protein was rendered transcriptionally inactive or by ectopic expression of p53\(^{L22Q,W23S}\), a transcriptionally-impaired variant, in TP53-wt cells. Accordingly, expression of p53\(^{L22Q,W23S}\) in a TP53-knockout melanoma cell line boosted IFN-ɣ-induced PD-L1 expression. The impaired PD-L1-inducibility after p53 knockdown was associated with a reduced JAK2 expression in the cells and was almost abrogated by JAK2 overexpression. Conclusions While having only a small impact on basal PD-L1 expression, both wildtype and mutated p53 play an important positive role for IFN-ɣ-induced PD-L1 expression in melanoma cells by supporting JAK2 expression. Future studies should address, whether p53 expression levels might influence response to anti-PD-1 immunotherapy. KW - Melanoma KW - PD-L1 KW - CD274 KW - p53 KW - TP53 KW - JAK2 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201016 VL - 38 ER - TY - JOUR A1 - Streinzer, Martin A1 - Chakravorty, Jharna A1 - Neumayer, Johann A1 - Megu, Karsing A1 - Narah, Jaya A1 - Schmitt, Thomas A1 - Bharti, Himender A1 - Spaethe, Johannes A1 - Brockmann, Axel T1 - Species composition and elevational distribution of bumble bees (Hymenoptera, Apidae, Bombus Latreille) in the East Himalaya, Arunachal Pradesh, India JF - ZooKeys N2 - The East Himalaya is one of the world’s most biodiverse ecosystems. However, very little is known about the abundance and distribution of many plant and animal taxa in this region. Bumble bees are a group of cold-adapted and high elevation insects that fulfil an important ecological and economical function as pollinators of wild and agricultural flowering plants and crops. The Himalayan mountain range provides ample suitable habitats for bumble bees. Systematic study of Himalayan bumble bees began a few decades ago and the main focus has centred on the western region, while the eastern part of the mountain range has received little attention and only a few species have been verified. During a three-year survey, more than 700 bumble bee specimens of 21 species were collected in Arunachal Pradesh, the largest of the north-eastern states of India. The material included a range of species that were previously known from a limited number of collected specimens, which highlights the unique character of the East Himalayan ecosystem. Our results are an important first step towards a future assessment of species distribution, threat, and conservation. Clear elevation patterns of species diversity were observed, which raise important questions about the functional adaptations that allow bumble bees to thrive in this particularly moist region in the East Himalaya. KW - Alpine habitats KW - Apidae KW - conservation KW - global change KW - insect collection KW - pollination Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201937 VL - 851 ER - TY - JOUR A1 - Srivastava, Mugdha A1 - Bencurova, Elena A1 - Gupta, Shishir K. A1 - Weiss, Esther A1 - Löffler, Jürgen A1 - Dandekar, Thomas T1 - Aspergillus fumigatus challenged by human dendritic cells: metabolic and regulatory pathway responses testify a tight battle JF - Frontiers in Cellular and Infection Microbiology N2 - Dendritic cells (DCs) are antigen presenting cells which serve as a passage between the innate and the acquired immunity. Aspergillosis is a major lethal condition in immunocompromised patients caused by the adaptable saprophytic fungus Aspergillus fumigatus. The healthy human immune system is capable to ward off A. fumigatus infections however immune-deficient patients are highly vulnerable to invasive aspergillosis. A. fumigatus can persist during infection due to its ability to survive the immune response of human DCs. Therefore, the study of the metabolism specific to the context of infection may allow us to gain insight into the adaptation strategies of both the pathogen and the immune cells. We established a metabolic model of A. fumigatus central metabolism during infection of DCs and calculated the metabolic pathway (elementary modes; EMs). Transcriptome data were used to identify pathways activated when A. fumigatus is challenged with DCs. In particular, amino acid metabolic pathways, alternative carbon metabolic pathways and stress regulating enzymes were found to be active. Metabolic flux modeling identified further active enzymes such as alcohol dehydrogenase, inositol oxygenase and GTP cyclohydrolase participating in different stress responses in A. fumigatus. These were further validated by qRT-PCR from RNA extracted under these different conditions. For DCs, we outlined the activation of metabolic pathways in response to the confrontation with A. fumigatus. We found the fatty acid metabolism plays a crucial role, along with other metabolic changes. The gene expression data and their analysis illuminate additional regulatory pathways activated in the DCs apart from interleukin regulation. In particular, Toll-like receptor signaling, NOD-like receptor signaling and RIG-I-like receptor signaling were active pathways. Moreover, we identified subnetworks and several novel key regulators such as UBC, EGFR, and CUL3 of DCs to be activated in response to A. fumigatus. In conclusion, we analyze the metabolic and regulatory responses of A. fumigatus and DCs when confronted with each other. KW - infection KW - dendritic cells KW - Aspergillus fumigalus KW - metabolic modelling KW - signalling Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201368 VL - 9 ER - TY - THES A1 - Simon, Katja T1 - Identifying the role of Myb-MuvB in gene expression and proliferation of lung cancer cells T1 - Identifizierung der Rolle des Myb-MuvB in der Genexpression und der Proliferation von Lungenkrebszellen N2 - The evolutionary conserved Myb-MuvB (MMB) multiprotein complex is a transcriptional master regulator of mitotic gene expression. The MMB subunits B-MYB, FOXM1 as well as target genes of MMB are often overexpressed in different cancer types. Elevated expression of these genes correlates with an advanced tumor state and a poor prognosis for patients. Furthermore, it has been reported that pathways, which are involved in regulating the mitotic machinery are attractive for a potential treatment of cancers harbouring Ras mutations (Luo et al., 2009). This suggest that the MMB complex could be required for tumorigenesis by mediating overactivity of mitotic genes and that the MMB could be a useful target for lung cancer treatment. However, although MMB has been characterized biochemically, the contribution of MMB to tumorigenesis is largely unknown in particular in vivo. In this thesis, it was demonstrated that the MMB complex is required for lung tumorigenesis in vivo in a mouse model of non small cell lung cancer. Elevated levels of B-MYB, NUSAP1 or CENPF in advanced tumors as opposed to low levels of these proteins levels in grade 1 or 2 tumors support the possible contribution of MMB to lung tumorigenesis and the oncogenic potential of B-MYB.The tumor growth promoting function of B-MYB was illustrated by a lower fraction of KI-67 positive cells in vivo and a significantly high impairment in proliferation after loss of B-Myb in vitro. Defects in cytokinesis and an abnormal cell cycle profile after loss of B-Myb underscore the impact of B-MYB on proliferation of lung cancer cell lines. The incomplete recombination of B-Myb in murine lung tumors and in the tumor derived primary cell lines illustrates the selection pressure against the complete loss of B-Myb and further demonstrats that B-Myb is a tumor-essential gene. In the last part of this thesis, the contribution of MMB to the proliferation of human lung cancer cells was demonstrated by the RNAi-mediated depletion of B-Myb. Detection of elevated B-MYB levels in human adenocarcinoma and a reduced proliferation, cytokinesis defects and abnormal cell cycle profile after loss of B-MYB in human lung cancer cell lines underlines the potential of B-MYB to serve as a clinical marker. N2 - Der evolutionär konservierte Myb-MuvB (MMB) Multiproteinkomplex ist ein transkriptionaler Meisterregulator der mitotischen Genexpression. Die MMB Untereinheiten B-MYB, FOXM1 und ihre Zielgene sind oft überexprimiert in verschiedenen Krebsarten. Die erhöhte Expression dieser Gene korreliert mit einem fortgeschrittenen Tumorstadium und einer schlechten Prognose für Patienten. Außerdem wurde berichtet, dass Signalwege, die die Mitosemaschinerie betreffen, reizvoll sind als mögliches Target für die Behandlung von Ras mutierten Krebsarten (Lao et al., 2009). Dies weißt auf darauf hin, dass der MMB Komplex an der Tumorentstehung beteiligt sein könnte, indem er die Überexpression mitotischer Gene fördert und damit ein geeignetes Target zur Behandlung von Krebs darstellen könnte. Obwohl der MMB biochemisch eingehend untersucht wurde, ist die Beteiligung des MMB an der Tumorgenese weitestgehend unbekannt speziell in vivo. In dieser Doktorarbeit wurde anhand eines NSCLC Mausmodells gezeigt, dass der MMB für die Lungentumorgenese in vivo erforderlich ist. Erhöhte Level von B-MYB, NUSAP1 oder CENPF in fortgeschrittenen Tumoren und im Gegenzug niedrigen Leveln in Grad 1 und 2 Tumoren unterstreichen die mögliche Beteiligung des MMB an der Lungentumorgenese und das onkogene Potential von B-MYB. Die Tumorwachstum-fördernde Funktion von B-MYB wurde veranschaulicht durch eine geringere Anzahl an KI-67 positiven Zellen in vivo und einem signifikant hohen Beeinträchtigung der Proliferation nach dem Verlust von B-MYB in vitro. Defekte in der Zytokinese und ein abnormales Zellzyklusprofil nach dem Verlust von B-MYB heben den Einfluss von B-Myb auf die Proliferation von Lungenkrebszelllinien hervor. Die unvollständige Rekombination von B-Myb in murinen Lungentumoren und den daraus hergestellten primären Tumorzelllinien veranschaulichen den Selektionsdruck auf den kompletten Verlust von B-MYB und zeigen zusätzlich, dass B-MYB ein für den Tumor essentielles Gen ist. Im letzten Teil der Doktorarbeit konnte die Beteiligung des MMB auf die Proliferation auf Lungenkrebszellen gezeigt werden durch den Verlust von B-MYB durch RNAi-Interferenz (RNAi). Detektion erhöhter B-Myb Level in humanen Adenokarzinomen und eine verminderte Proliferation, Zytokinese-Defekte und ein abnormales Zellzyklusprofil nach B-MYB Verlust in humanen Lungenkrebszelllinien unterstreichen das Potential von B-MYB als klinischer Marker zu fungieren. KW - Lungenkrebs KW - MMB KW - B-MYB KW - K-RAS KW - lung cancer KW - Mitose KW - Nicht-kleinzelliges Bronchialkarzinom Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-161814 ER - TY - THES A1 - Schubert, Frank Klaus T1 - The circadian clock network of \(Drosophila\) \(melanogaster\) T1 - Das Uhrneuronennetzwerk von \(Drosophila\) \(melanogaster\) N2 - All living organisms need timekeeping mechanisms to track and anticipate cyclic changes in their environment. The ability to prepare for and respond to daily and seasonal changes is endowed by circadian clocks. The systemic features and molecular mechanisms that drive circadian rhythmicity are highly conserved across kingdoms. Therefore, Drosophila melanogaster with its relatively small brain (ca. 135.000 neurons) and the outstanding genetic tools that are available, is a perfect model to investigate the properties and relevance of the circadian system in a complex, but yet comprehensible organism. The last 50 years of chronobiological research in the fruit fly resulted in a deep understanding of the molecular machinery that drives circadian rhythmicity, and various histological studies revealed the neural substrate of the circadian system. However, a detailed neuroanatomical and physiological description on the single-cell level has still to be acquired. Thus, I employed a multicolor labeling approach to characterize the clock network of Drosophila melanogaster with single-cell resolution and additionally investigated the putative in- and output sites of selected neurons. To further study the functional hierarchy within the clock network and to monitor the “ticking clock“ over the course of several circadian cycles, I established a method, which allows us to follow the accumulation and degradation of the core clock genes in living brain explants by the means of bioluminescence imaging of single-cells. N2 - Alle lebenden Organismen benötigen Mechanismen zur Zeitmessung, um sich auf periodisch wiederkehrende Umweltveränderungen einstellen zu können. Zirkadiane Uhren verleihen die Fähigkeit, tages- und jahreszeitliche Veränderungen vorauszuahnen und sich an diese anzupassen. Die Eigenschaften des zirkadianen Systems, als auch dessen molekularer Mechanismus scheinen über sämtliche Taxa konserviert zu sein. Daher bietet es sich an, die leicht handhabbare Taufliege Drosophila melanogaster als Modellorganismus zu benutzen. Das relativ kleine Gehirn (ca. 135.000 Neurone) und die herausragende genetische Zugänglichkeit der Fliege prädestinieren sie dazu, das zirkadiane System in einem komplexen, aber dennoch überschaubaren Kontext zu untersuchen. Die vergangenen 50 Jahre chronobiologischer Forschung an Drosophila führten zu einem tiefgreifenden Verständnis der molekularen Mechanismen, die für tageszeitliche Rhythmizität verantwortlich sind. Anhand zahlreicher histologischer Untersuchungen wurde die neuronale Grundlage, das Uhrneuronennetzwerk im zentralen Nervensystem, beschrieben. Nichtsdestotrotz, gibt es noch immer keine detaillierte neuroanatomische und physiologische Charakterisierung der Uhrneurone auf Einzelzellebene. Daher war das Ziel der vorliegenden Arbeit die umfangreiche Beschreibung der Einzelzellanatomie ausgewählter Uhrneurone sowie die Identifikation mutmaßlicher post- und präsynaptischer Verzweigungen. Darüber hinaus war es mir möglich, eine Methode zur Messung von Biolumineszenzrhythmen in explantierten lebenden Gehirnen zu etablieren. Mit einem Lumineszenzmikroskop können die Proteinoszillationen einzelner Uhrneurone über die Dauer mehrerer zirkadianer Zyklen aufgezeichnet werden, wodurch neue funktionale Studien ermöglicht werden. KW - Taufliege KW - Chronobiologie KW - Tagesrhythmus KW - Neuroanatomie KW - Drosophila melanogaster KW - circadian rhythms KW - single cell anatomy Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-157136 ER - TY - JOUR A1 - Schmidt, Thomas S. B. A1 - Hayward, Matthew R. A1 - Coelho, Luiis P. A1 - Li, Simone S. A1 - Costea, Paul I. A1 - Voigt, Anita Y. A1 - Wirbel, Jakob A1 - Maistrenko, Oleksandr M. A1 - Alves, Renato J. C. A1 - Bergsten, Emma A1 - de Beaufort, Carine A1 - Sobhani, Iradj A1 - Heintz-Buschart, Anna A1 - Sunagawa, Shinichi A1 - Zeller, Georg A1 - Wilmes, Paul A1 - Bork, Peer T1 - Extensive transmission of microbes along the gastrointestinal tract JF - eLife N2 - The gastrointestinal tract is abundantly colonized by microbes, yet the translocation of oral species to the intestine is considered a rare aberrant event, and a hallmark of disease. By studying salivary and fecal microbial strain populations of 310 species in 470 individuals from five countries, we found that transmission to, and subsequent colonization of, the large intestine by oral microbes is common and extensive among healthy individuals. We found evidence for a vast majority of oral species to be transferable, with increased levels of transmission in colorectal cancer and rheumatoid arthritis patients and, more generally, for species described as opportunistic pathogens. This establishes the oral cavity as an endogenous reservoir for gut microbial strains, and oral-fecal transmission as an important process that shapes the gastrointestinal microbiome in health and disease. KW - Colonization KW - Annotation KW - Dynamics KW - Accurate KW - Strains KW - Barrier KW - Health KW - Acids KW - Research Article KW - Computational and Systems Biology KW - Microbiology and Infectious Disease KW - microbiome KW - gastrointestinal tract KW - colorectal cancer KW - rheumatoid arthritis KW - metagenomics Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228954 VL - 8 ER - TY - JOUR A1 - Schlegel, Jan A1 - Peters, Simon A1 - Doose, Sören A1 - Schubert-Unkmeir, Alexandra A1 - Sauer, Markus T1 - Super-resolution microscopy reveals local accumulation of plasma membrane gangliosides at Neisseria meningitidis Invasion Sites JF - Frontiers in Cell and Developmental Biology N2 - Neisseria meningitidis (meningococcus) is a Gram-negative bacterium responsible for epidemic meningitis and sepsis worldwide. A critical step in the development of meningitis is the interaction of bacteria with cells forming the blood-cerebrospinal fluid barrier, which requires tight adhesion of the pathogen to highly specialized brain endothelial cells. Two endothelial receptors, CD147 and the β2-adrenergic receptor, have been found to be sequentially recruited by meningococci involving the interaction with type IV pilus. Despite the identification of cellular key players in bacterial adhesion the detailed mechanism of invasion is still poorly understood. Here, we investigated cellular dynamics and mobility of the type IV pilus receptor CD147 upon treatment with pili enriched fractions and specific antibodies directed against two extracellular Ig-like domains in living human brain microvascular endothelial cells. Modulation of CD147 mobility after ligand binding revealed by single-molecule tracking experiments demonstrates receptor activation and indicates plasma membrane rearrangements. Exploiting the binding of Shiga (STxB) and Cholera toxin B (CTxB) subunits to the two native plasma membrane sphingolipids globotriaosylceramide (Gb3) and raft-associated monosialotetrahexosylganglioside GM1, respectively, we investigated their involvement in bacterial invasion by super-resolution microscopy. Structured illumination microscopy (SIM) and direct stochastic optical reconstruction microscopy (dSTORM) unraveled accumulation and coating of meningococci with GM1 upon cellular uptake. Blocking of CTxB binding sites did not impair bacterial adhesion but dramatically reduced bacterial invasion efficiency. In addition, cell cycle arrest in G1 phase induced by serum starvation led to an overall increase of GM1 molecules in the plasma membrane and consequently also in bacterial invasion efficiency. Our results will help to understand downstream signaling events after initial type IV pilus-host cell interactions and thus have general impact on the development of new therapeutics targeting key molecules involved in infection. KW - Neisseria meningitidis KW - sphingolipids KW - gangliosides and lipid rafts KW - super-resolution microscopy KW - single-molecule tracking Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201639 VL - 7 IS - 194 ER - TY - JOUR A1 - Schartl, Manfred A1 - Kneitz, Susanne A1 - Volkoff, Helene A1 - Adolfi, Mateus A1 - Schmidt, Cornelia A1 - Fischer, Petra A1 - Minx, Patrick A1 - Tomlinson, Chad A1 - Meyer, Axel A1 - Warren, Wesley C. T1 - The piranha genome provides molecular insight associated to its unique feeding behavior JF - Genome Biology and Evolution N2 - The piranha enjoys notoriety due to its infamous predatory behavior but much is still not understood about its evolutionary origins and the underlying molecular mechanisms for its unusual feeding biology. We sequenced and assembled the red-bellied piranha (Pygocentrus nattereri) genome to aid future phenotypic and genetic investigations. The assembled draft genome is similar to other related fishes in repeat composition and gene count. Our evaluation of genes under positive selection suggests candidates for adaptations of piranhas’ feeding behavior in neural functions, behavior, and regulation of energy metabolism. In the fasted brain, we find genes differentially expressed that are involved in lipid metabolism and appetite regulation as well as genes that may control the aggression/boldness behavior of hungry piranhas. Our first analysis of the piranha genome offers new insight and resources for the study of piranha biology and for feeding motivation and starvation in other organisms. KW - whole-genome sequencing KW - genome annotation KW - comparative genomics KW - RNA-seq transcriptome KW - energy homeostasis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202218 VL - 11 IS - 8 ER - TY - JOUR A1 - Sbiera, Silviu A1 - Kunz, Meik A1 - Weigand, Isabel A1 - Deutschbein, Timo A1 - Dandekar, Thomas A1 - Fassnacht, Martin T1 - The new genetic landscape of Cushing’s disease: deubiquitinases in the spotlight JF - Cancers N2 - Cushing’s disease (CD) is a rare condition caused by adrenocorticotropic hormone (ACTH)-producing adenomas of the pituitary, which lead to hypercortisolism that is associated with high morbidity and mortality. Treatment options in case of persistent or recurrent disease are limited, but new insights into the pathogenesis of CD are raising hope for new therapeutic avenues. Here, we have performed a meta-analysis of the available sequencing data in CD to create a comprehensive picture of CD’s genetics. Our analyses clearly indicate that somatic mutations in the deubiquitinases are the key drivers in CD, namely USP8 (36.5%) and USP48 (13.3%). While in USP48 only Met415 is affected by mutations, in USP8 there are 26 different mutations described. However, these different mutations are clustering in the same hotspot region (affecting in 94.5% of cases Ser718 and Pro720). In contrast, pathogenic variants classically associated with tumorigenesis in genes like TP53 and BRAF are also present in CD but with low incidence (12.5% and 7%). Importantly, several of these mutations might have therapeutic potential as there are drugs already investigated in preclinical and clinical setting for other diseases. Furthermore, network and pathway analyses of all somatic mutations in CD suggest a rather unified picture hinting towards converging oncogenic pathways. KW - Cushing’s disease KW - pathogenesis KW - somatic mutations KW - deubiquitinases Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193194 SN - 2072-6694 VL - 11 IS - 11 ER - TY - JOUR A1 - Sauer, Markus A1 - Juranek, Stefan A. A1 - Marks, James A1 - De Magis, Alessio A1 - Kazemier, Hinke G A1 - Hilbig, Daniel A1 - Benhalevy, Daniel A1 - Wang, Xiantao A1 - Hafner, Markus A1 - Paeschke, Katrin T1 - DHX36 prevents the accumulation of translationally inactive mRNAs with G4-structures in untranslated regions JF - Nature Communications N2 - Translation efficiency can be affected by mRNA stability and secondary structures, including G-quadruplex structures (G4s). The highly conserved DEAH-box helicase DHX36/RHAU resolves G4s on DNA and RNA in vitro, however a systems-wide analysis of DHX36 targets and function is lacking. We map globally DHX36 binding to RNA in human cell lines and find it preferentially interacting with G-rich and G4-forming sequences on more than 4500 mRNAs. While DHX36 knockout (KO) results in a significant increase in target mRNA abundance, ribosome occupancy and protein output from these targets decrease, suggesting that they were rendered translationally incompetent. Considering that DHX36 targets, harboring G4s, preferentially localize in stress granules, and that DHX36 KO results in increased SG formation and protein kinase R (PKR/EIF2AK2) phosphorylation, we speculate that DHX36 is involved in resolution of rG4 induced cellular stress. KW - RNA metabolism KW - Translation Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227486 VL - 10 IS - 2421 ER - TY - THES A1 - Sauer, Mark T1 - Die microRNA-26 Familie kontrolliert über den REST-Komplex ein für die Neurogenese essentielles regulatorisches RNA Netzwerk T1 - The microRNA-26 family controls a regulatory RNA network which is essential for neurogenesis via the REST-complex N2 - In einem sich entwickelnden multizellulären Organismus ist die räumlich-zeitliche Regulation der Genexpression von entscheidender Bedeutung für die Bildung, Identität und Funktion von Zellen. Der REST (repressor element silencing transcription factor) Komplex spielt bei der neuronalen Differenzierung und bei der Aufrechterhaltung des neuronalen Status eine essentielle Rolle, indem er in nicht neuronalen Zellen und neuralen Vorläufern die Expression neuronaler Gene unterdrückt, in deren Promotorregion eine RE1 (repressor element 1) Erkennungssequenz vorhanden ist. Während der neuronalen Differenzierung wird der REST-Komplex schrittweise inaktiviert, was zur Einleitung eines neuronalen Genexpression-Programms führt. Es wird daher angenommen, dass die Inhibierung des REST-Komplexes ein essentieller Vorgang der Neurogenese ist. Wichtige Bestandteile für die transkriptionell repressive Funktion des REST-Komplexes sind kleine Phosphatasen (CTDSP = C-terminal domain small phosphatases), welche die Polymerase-II-Aktivität an Zielgenen inhibieren. Im Zebrafisch wurde gezeigt, dass ctdsp2 durch die miR-26b negativ reguliert wird. Alle miR-26 Familienmitglieder sind in Vertebraten evolutionär konserviert und in Introns von Ctdsp Genen kodiert. Sie sind in der Lage, die Expression ihres eigenen Wirtsgens mittels einer autoregulatorischen Rückkopplungsschleife zu regulieren. Im Rahmen dieser Dissertation wurde als Modellsystem für die Neurogenese ein neurales Differenzierungssystem, welches auf murinen, embryonalen Stammzellen (ESCs) aufbaut, eingesetzt. Zur funktionellen Analyse der miR-26 Familie wurden mit Hilfe der CRISPR/Cas9-Methode verschiedene miR-26 Knockout (KO) ESC-Linien hergestellt. Hierbei wurden die Sequenzen der einzelnen Familienmitglieder und der gesamten miR-26 Familie im Genom von Wildtyp (Wt) ESCs deletiert. Diese miR-26-defizienten ESCLinien behielten ihre Pluripotenz und zeigten keinen Phänotyp hinsichtlich Proliferation, Morphologie und Identität der Zellen während der Differenzierung bis zum neuralen Vorläuferzellstadium (NPCs, engl.: neural progenitor cells). Jedoch führte die Deletion sowohl der gesamten miR-26 Familie als auch einzelner Mitglieder bei der terminalen Differenzierung zu einem spezifischen Entwicklungsstillstand im NPC Stadium und infolgedessen zu einer starken Reduktion der Anzahl von Neuronen und Astroglia. Die Transkriptom-Analyse der differenzierten miR-26-KO ESCs mittels RNA-Seq zeigte, dass die Expression von Genen die mit der Neurogenese und der neuronalen Differenzierung, aber auch der Gliogenese assoziert sind, herunterreguliert war. Die Abwesenheit der miR-26 Familie führte außerdem zu einer selektiven Reduzierung bestimmter miRNAs (REST-miRs), die einerseits die Expression von REST-Komplex Komponenten unterdrücken können, und andererseits selbst unter dessen transkriptioneller Kontrolle stehen. Zu diesem REST-miR Netzwerk gehören einige miRNAs (miR-9, miR-124, miR-132 und miR-218), die wichtige Funktionen bei verschiedenen Prozessen der neuronalen Entwicklung haben. Weiterhin führte der miR-26-KO zu einer Derepression der Proteinlevel von REST und CTDSP2 während der terminalen Differenzierung. Funktionelle Analysen mit miRNA mimics zeigten, dass erhöhte miR-26 Level zu einer Hochregulation von REST-miRs führen. Weitere Experimente, die darauf zielten, die Hierarchie des REST-miR Netwerks aufzuklären zeigten, dass die miR-26 Familie stromaufwärts die REST-miR Expression reguliert. Zusammengefasst weisen die in dieser Arbeit gezeigten Daten darauf hin, dass die miR-26 Familie als Initiator der schrittweisen Inaktivierung des REST-Komplexes eine zentrale Rolle bei der Differenzierung von neuralen Vorläuferzellen zu postmitotischen Neuronen spielt. N2 - The spatio-temporal control of gene expression in a developing multicellular organism is a key determinant for the formation, cellular identity and function of cells. The REST (repressor element silencing transcription factor) complex plays a crucial role in the process of neuronal differentiation and the maintenance of the neuronal status by suppressing neuronal genes which contain a RE1 (repressor element 1) recognition sequence within their promotor region in non-neuronal cells or in neural progenitors. During neuronal differentiation, the REST complex is gradually inactivated, leading to the initiation of a neuronal gene expression program. It is therefore assumed that the regulation of the REST complex is an essential component for the initiation of neurogenesis. Critical effector proteins of the REST complex are small phosphatases (CTDSPs = C-terminal domain small phosphatases), which reduces the polymerase II activity on target genes. In zebrafish it was shown that the REST complex-associated phosphatase ctdsp2 is negatively regulated by miR-26b. All miR-26 family members are evolutionarily conserved in vertebrates and located in introns of Ctdsp genes. Furthermore the miR-26 family members repress their own host genes through an intrinsic autoregulatory negative feedback loop. In this study, a murine embryonic stem cell (ESC) -based neural differentiation paradigm was used as a model system for neurogenesis. To analyze the function of the miR-26 family, the CRISPR/Cas9 technology was employed to generate various miR-26 knockout (KO) ESC lines, with deletions of individual family members and the entire miR-26 family in the genome of ESCs. These miR-26-deficient ESCs retained their pluripotency and did not show altered proliferation, morphology, or cell identity during neural differentiation up to the neural progenitor cell (NPC) stage. However, deletion of the entire miR-26 family as well as of single members disrupted the terminal differentiation and led to a specific developmental arrest at the NPC stage and consequently a strong reduction of neuron and astroglia cell frequencies. Global gene expression analyses in differentiated miR-26-KO ESCs further revealed that genes, which are associated with neurogenesis, neuronal differentiation, but also gliogenesis, were downregulated. The absence of the miR-26 familiy resulted in the selective reduction of a specific set of miRNAs (REST-miRs), which on the one hand suppress the expression of REST complex components and on the other hand are themselves under the transcriptional control of the REST complex. Among others, several miRNAs (miR-9, miR-124, miR-132 and miR-218), which play an important role in various processes of neuronal development, belong to this REST-miR network. Moreover, the miR-26-KO led to the derepression of REST and CTDSP2 protein levels during terminal differentiation. Functional analyses with miRNA mimics showed that increased miR-26 levels resulted in an upregulation of REST-miRs. Further experiments aimed at elucidating the hierarchy of REST-miR regulation revealed that the miR-26 family act upstream to regulate RESTmiR expression and presumably has an initial function in the regulation of this network. Taken together, the data presented in this work suggest that the miR-26 family act as an initiator for the stepwise inactivation of the REST complex during neural differentiation. Therefore, these findings are consistent with the notion that the miR-26 family represents a central regulator for neural progenitor cell differentiation into postmitotic neurons. KW - Neurogenese KW - miR-26 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184008 ER - TY - JOUR A1 - Ruiz, E. Josue A1 - Diefenbacher, Markus E. A1 - Nelson, Jessica K. A1 - Sancho, Rocio A1 - Pucci, Fabio A1 - Chakraborty, Atanu A1 - Moreno, Paula A1 - Annibaldi, Alessandro A1 - Liccardi, Gianmaria A1 - Encheva, Vesela A1 - Mitter, Richard A1 - Rosenfeldt, Mathias A1 - Snijders, Ambrosius P. A1 - Meier, Pascal A1 - Calzado, Marco A. A1 - Behrens, Axel T1 - LUBAC determines chemotherapy resistance in squamous cell lung cancer JF - Journal of Experimental Medicine N2 - Lung squamous cell carcinoma (LSCC) and adenocarcinoma (LADC) are the most common lung cancer subtypes. Molecular targeted treatments have improved LADC patient survival but are largely ineffective in LSCC. The tumor suppressor FBW7 is commonly mutated or down-regulated in human LSCC, and oncogenic KRasG12D activation combined with Fbxw7 inactivation in mice (KF model) caused both LSCC and LADC. Lineage-tracing experiments showed that CC10(+), but not basal, cells are the cells of origin of LSCC in KF mice. KF LSCC tumors recapitulated human LSCC resistance to cisplatin-based chemotherapy, and we identified LUBAC-mediated NF-kappa B signaling as a determinant of chemotherapy resistance in human and mouse. Inhibition of NF-kappa B activation using TAK1 or LUBAC inhibitors resensitized LSCC tumors to cisplatin, suggesting a future avenue for LSCC patient treatment. KW - Solid tumors Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227146 VL - 216 IS - 2 ER - TY - JOUR A1 - Roth, Nicolas A1 - Doerfler, Inken A1 - Bässler, Claus A1 - Blaschke, Markus A1 - Bussler, Heinz A1 - Gossner, Martin M. A1 - Heideroth, Antje A1 - Thorn, Simon A1 - Weisser, Wolfgang W. A1 - Müller, Jörg T1 - Decadal effects of landscape-wide enrichment of dead wood on saproxylic organisms in beech forests of different historic management intensity JF - Diversity and Distributions N2 - Aim: European temperate forests have lost dead wood and the associated biodiversity owing to intensive management over centuries. Nowadays, some of these forests are being restored by enrichment with dead wood, but mostly only at stand scales. Here, we investigated effects of a seminal dead-wood enrichment strategy on saproxylic organisms at the landscape scale. Location: Temperate European beech forest in southern Germany. Methods: In a before-after control-impact design, we compared assemblages and gamma diversities of saproxylic organisms in strictly protected old-growth forest areas (reserves) and historically moderately and intensively managed forest areas before and a decade after starting a landscape-wide strategy of dead-wood enrichment. Results: Before enrichment with dead wood, the gamma diversity of saproxylic organisms in historically intensively managed forest stands was significantly lower than in reserves and historically moderately managed forest stands; this difference disappeared after 10 years of dead-wood enrichment. The species composition of beetles in forest stands of the three historical management intensities differed before the enrichment strategy, but a decade thereafter, the species compositions of previously intensively logged and forest reserve plots were similar. However, the differences in fungal species composition between historical management categories before and after 10 years of enrichment persisted. Main conclusions: Our results demonstrate that intentional enrichment of dead wood at the landscape scale is a powerful tool for rapidly restoring saproxylic beetle communities and for restoring wood-inhabiting fungal communities, which need longer than a decade for complete restoration. We propose that a strategy of area-wide active restoration combined with some permanent strict refuges is a promising means of promoting the biodiversity of age-long intensively managed Central European beech forests. KW - dead-wood enrichment KW - integrative management strategy KW - land sharing KW - lowland beech forests KW - saproxylic organisms Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227061 VL - 25 IS - 3 ER - TY - THES A1 - Romanov, Natalie T1 - Characterizing Variation of Protein Complexes and Functional Modules on a Temporal Scale and across Individuals T1 - Charakterisierung der Variation von Proteinkomplexen und funktionellen Modulen im zeitlichen Kontext und zwischen Individuen N2 - A fundamental question in current biology concerns the translational mechanisms leading from genetic variability to phenotypes. Technologies have evolved to the extent that they can efficiently and economically determine an individual’s genomic composition, while at the same time big data on clinical profiles and diagnostics have substantially accumulated. Genome-wide association studies linking genomic loci to certain traits, however, remain limited in their capacity to explain the cellular mechanisms that underlie the given association. For most associations, gene expression has been blamed; yet given that transcript and protein abundance oftentimes do not correlate, that finding does not necessarily decrypt the underlying mechanism. Thus, the integration of further information is crucial to establish a model that could prove more accurate in predicting genotypic effects on the human organism. In this work we describe the so-called proteotype as a feature of the cell that could provide a substantial link between genotype and phenotype. Rather than looking at the proteome as a set of independent molecules, we demonstrate a consistent modular architecture of the proteome that is driven by molecular cooperativity. Functional modules, especially protein complexes, can be further interrogated for differences between individuals and tackled as imprints of genetic and environmental variability. We also show that subtle stoichiometric changes of protein modules could have broader effects on the cellular system, such as the transport of specific molecular cargos. The presented work also delineates to what extent temporal events and processes influence the stoichiometry of protein complexes and functional modules. The re-wiring of the glycolytic pathway for example is illustrated as a potential cause for an increased Warburg effect during the ageing of the human bone marrow. On top of analyzing protein abundances we also interrogate proteome dynamics in terms of stability and solubility transitions during the short temporal progression of the cell cycle. One of our main observations in the thesis encompass the delineation of protein complexes into respective sub-complexes according to distinct stability patterns during the cell cycle. This has never been demonstrated before, and is functionally relevant for our understanding of the dis- and assembly of large protein modules. The insights presented in this work imply that the proteome is more than the sum of its parts, and primarily driven by variability in entire protein ensembles and their cooperative nature. Analyzing protein complexes and functional modules as molecular reflections of genetic and environmental variations could indeed prove to be a stepping stone in closing the gap between genotype and phenotype and customizing clinical treatments in the future. N2 - Eine fundamentale Frage in der heutigen biologischen Forschung ist durch welche Mechanismen eine gebenene genetische Variation sich in einem Phänotyp äußert. Etliche Technologien können heutzutage effizient und ökonomisch die genomische Komposition eines Individuals mit beispielloser Genaugikeit aufschlüsseln. Gleichzeitig gibt es wesentliche Erfolge und Bemühungen, große Datenmengen von Patienten zu sammeln, sowohl klinische Profile, als auch Diagnosen. Es gibt bereits mehrere genomweite Assoziationsstudien, die auf spezifische genomische Loci hinweisen, die womöglich einem bestimmenten phänotypischen Merkmalen zugrunde liegen. Obwohl für die meisten genetischen Assoziationen, eine veränderte Genexpression oftmals als Ursache diskutiert wird, ist dies wahrscheinlich nur ein Teil des zugrundeliegenden Mechanismus. Wir können dies annehmen, da RNA-Transkripte nicht unbedingt mit ihrem Protein-Produkt korrelieren aufgrund von post-transkriptioneller und translationeller Regulation. Um dementsprechend ein Modell zu etablieren, das die genotypischen Effekte auf den human Organismus akkurat vorhersagen kann, ist eine Integration von mehreren zellulären Informationsschichten notwendig. In der folgenden Arbeit beschreiben wir den sogenannten Proteotyp als ein zelluläres Merkmal, das eine substanzielle Verknüpfung zwischen dem Genotyp und dem Phänotyp eines Individuums schaffen könnte. Statt das Proteom als ein Set unabhängiger Moleküle zu betrachten, zeigen wir eine konsistent moduläre Architektur des Proteoms auf, das durch die molekulare Kooperativität zustande kommt. Funktionelle Module, v.a. Proteinkomplexe, können weiters auf Unterschiede zwischen Individuen untersucht werden, sowie deren Variabilität aufgrund genetischer oder umweltbedingter Ursachen. Wir demonstrieren u.a. auch, dass leichte stöchiometrische Veränderungen in solchen Modulen zu weitläufigen Effekten im zellulären Haushalt führen können, z.B. im Transport von spezifischen Molekülen. Die vorgestellte Arbeit beschreibt allerdings auch inwieweit temporäre Ereignisse und Prozesse die Stöchiometrie von Proteinkomplexen und funktionellen Modulen beeinflussen. Wir zeigen z.B. auf, dass eine Veränderung in der glycolytischen Enzym-Stöchiometrie die Ursache für den Warburgeffekt in gealterten Zellen des humanen Knochenmarks darstellen könnte. Neben der Analyse von Protein-Abundanzen untersucht die vorliegende Arbeit Proteomdynamik auch in Hinblick auf Stabilitäts- und Löslichkeitsveränderungen von Proteine in kürzeren Zeitabläufen wie den Zellzyklus. Wir können dabei feststellen, dass Untereinheiten von größeren Proteinkomplexen verschiedene Stabilitätsmuster aufweisen. Dies ist durchaus eine neue Erkennis, die weittragende Folgen für unser Verständnis des Ab- und Aufbauprozesses von Proteinkomplexen haben könnte. Die Einblicke, die aus dieser Arbeit gewonnen werden können, implizieren in jedem Falle, dass das Proteom mehr als die Summe der Einzelteile darstellt, und hauptsächlich durch die Variabilität von gesamten Proteinensembls und deren Kooperativität bestimmt wird. Proteinkomplexe und funktionelle Module sollten daher als molekulare Reflektionen von genetisch- und umweltbedingter Variation betrachtet werden. Solch ein Perspektivenwechsel könnte damit die Möglichkeit bieten eine mechanistische Verknüpfung von Genotyp und Phänotyp zu gewährleisten, und ein Fundament für zukünftige individuell angepasste klinische Behandlungen darstellen. KW - Proteotype KW - Proteomics Analysis of Complexes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-168139 ER - TY - JOUR A1 - Reuter, Isabel A1 - Jäckels, Jana A1 - Kneitz, Susanne A1 - Kuper, Jochen A1 - Lesch, Klaus-Peter A1 - Lillesaar, Christina T1 - Fgf3 is crucial for the generation of monoaminergic cerebrospinal fluid contacting cells in zebrafish JF - Biology Open N2 - In most vertebrates, including zebrafish, the hypothalamic serotonergic cerebrospinal fluid-contacting (CSF-c) cells constitute a prominent population. In contrast to the hindbrain serotonergic neurons, little is known about the development and function of these cells. Here, we identify fibroblast growth factor (Fgf)3 as the main Fgf ligand controlling the ontogeny of serotonergic CSF-c cells. We show that fgf3 positively regulates the number of serotonergic CSF-c cells, as well as a subset of dopaminergic and neuroendocrine cells in the posterior hypothalamus via control of proliferation and cell survival. Further, expression of the ETS-domain transcription factor etv5b is downregulated after fgf3 impairment. Previous findings identified etv5b as critical for the proliferation of serotonergic progenitors in the hypothalamus, and therefore we now suggest that Fgf3 acts via etv5b during early development to ultimately control the number of mature serotonergic CSF-c cells. Moreover, our analysis of the developing hypothalamic transcriptome shows that the expression of fgf3 is upregulated upon fgf3 loss-of-function, suggesting activation of a self-compensatory mechanism. Together, these results highlight Fgf3 in a novel context as part of a signalling pathway of critical importance for hypothalamic development. KW - Fgf-signalling KW - Serotonin KW - Dopamine KW - Hypothalamus KW - Central nervous system Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200749 VL - 8 ER - TY - JOUR A1 - Requier, Fabrice A1 - Paillet, Yoan A1 - Laroche, Fabienne A1 - Rutschmann, Benjamin A1 - Zhang, Jie A1 - Lombardi, Fabio A1 - Svoboda, Miroslav A1 - Steffan-Dewenter, Ingolf T1 - Contribution of European forests to safeguard wild honeybee populations JF - Conservation Letters N2 - Abstract Recent studies reveal the use of tree cavities by wild honeybee colonies in European forests. This highlights the conservation potential of forests for a highly threatened component of the native entomofauna in Europe, but currently no estimate of potential wild honeybee population sizes exists. Here, we analyzed the tree cavity densities of 106 forest areas across Europe and inferred an expected population size of wild honeybees. Both forest and management types affected the density of tree cavities. Accordingly, we estimated that more than 80,000 wild honeybee colonies could be sustained in European forests. As expected, potential conservation hotspots were identified in unmanaged forests, and, surprisingly, also in other large forest areas across Europe. Our results contribute to the EU policy strategy to halt pollinator declines and reveal the potential of forest areas for the conservation of so far neglected wild honeybee populations in Europe. KW - Apis mellifera KW - Conservation KW - forest management KW - honeybees KW - native populations KW - protected forests KW - tree cavities KW - unmanaged broadleaved forests Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204407 VL - 13 IS - 2 ER - TY - JOUR A1 - Pauls, Dennis A1 - Hamarat, Yasmin A1 - Trufasu, Luisa A1 - Schendzielorz, Tim M. A1 - Gramlich, Gertrud A1 - Kahnt, Jörg A1 - Vanselow, Jens A1 - Schlosser, Andreas A1 - Wegener, Christian T1 - Drosophila carboxypeptidase D (SILVER) is a key enzyme in neuropeptide processing required to maintain locomotor activity levels and survival rate JF - European Journal of Neuroscience N2 - Neuropeptides are processed from larger preproproteins by a dedicated set of enzymes. The molecular and biochemical mechanisms underlying preproprotein processing and the functional importance of processing enzymes are well‐characterised in mammals, but little studied outside this group. In contrast to mammals, Drosophila melanogaster lacks a gene for carboxypeptidase E (CPE ), a key enzyme for mammalian peptide processing. By combining peptidomics and neurogenetics, we addressed the role of carboxypeptidase D (dCPD ) in global neuropeptide processing and selected peptide‐regulated behaviours in Drosophila . We found that a deficiency in dCPD results in C‐terminally extended peptides across the peptidome, suggesting that dCPD took over CPE function in the fruit fly. dCPD is widely expressed throughout the nervous system, including peptidergic neurons in the mushroom body and neuroendocrine cells expressing adipokinetic hormone. Conditional hypomorphic mutation in the dCPD ‐encoding gene silver in the larva causes lethality, and leads to deficits in starvation‐induced hyperactivity and appetitive gustatory preference, as well as to reduced viability and activity levels in adults. A phylogenomic analysis suggests that loss of CPE is not common to insects, but only occurred in Hymenoptera and Diptera. Our results show that dCPD is a key enzyme for neuropeptide processing and peptide‐regulated behaviour in Drosophila . dCPD thus appears as a suitable target to genetically shut down total neuropeptide production in peptidergic neurons. The persistent occurrence of CPD in insect genomes may point to important further CPD functions beyond neuropeptide processing which cannot be fulfilled by CPE. KW - direct muss spectrometric profiling KW - friut fly behaviour KW - M14 carboxypeptidasses KW - peptidomoics KW - protein processing Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204863 VL - 50 IS - 9 ER - TY - JOUR A1 - Pattschull, Grit A1 - Walz, Susanne A1 - Gründl, Marco A1 - Schwab, Melissa A1 - Rühl, Eva A1 - Baluapuri, Apoorva A1 - Cindric-Vranesic, Anita A1 - Kneitz, Susanne A1 - Wolf, Elmar A1 - Ade, Carsten P. A1 - Rosenwald, Andreas A1 - von Eyss, Björn A1 - Gaubatz, Stefan T1 - The Myb-MuvB complex is required for YAP-dependent transcription of mitotic genes JF - Cell Reports N2 - YAP and TAZ, downstream effectors of the Hippo pathway, are important regulators of proliferation. Here, we show that the ability of YAP to activate mitotic gene expression is dependent on the Myb-MuvB (MMB) complex, a master regulator of genes expressed in the G2/M phase of the cell cycle. By carrying out genome-wide expression and binding analyses, we found that YAP promotes binding of the MMB subunit B-MYB to the promoters of mitotic target genes. YAP binds to B-MYB and stimulates B-MYB chromatin association through distal enhancer elements that interact with MMB-regulated promoters through chromatin looping. The cooperation between YAP and B-MYB is critical for YAP-mediated entry into mitosis. Furthermore, the expression of genes coactivated by YAP and B-MYB is associated with poor survival of cancer patients. Our findings provide a molecular mechanism by which YAP and MMB regulate mitotic gene expression and suggest a link between two cancer-relevant signaling pathways. KW - YAP KW - B-MYB KW - Myb-MuvB KW - mitotic genes KW - enhancer KW - transcription Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202039 VL - 27 IS - 12 ER - TY - JOUR A1 - Paponov, Ivan A. A1 - Dindas , Julian A1 - Król , Elżbieta A1 - Friz, Tatyana A1 - Budnyk, Vadym A1 - Teale, William A1 - Paponov, Martina A1 - Hedrich , Rainer A1 - Palme, Klaus T1 - Auxin-Induced plasma membrane depolarization is regulated by Auxin transport and not by AUXIN BINDING PROTEIN1 JF - Frontiers in Plant Science N2 - Auxin is a molecule, which controls many aspects of plant development through both transcriptional and non-transcriptional signaling responses. AUXIN BINDING PROTEIN1 (ABP1) is a putative receptor for rapid non-transcriptional auxin-induced changes in plasma membrane depolarization and endocytosis rates. However, the mechanism of ABP1-mediated signaling is poorly understood. Here we show that membrane depolarization and endocytosis inhibition are ABP1-independent responses and that auxin-induced plasma membrane depolarization is instead dependent on the auxin influx carrier AUX1. AUX1 was itself not involved in the regulation of endocytosis. Auxin-dependent depolarization of the plasma membrane was also modulated by the auxin efflux carrier PIN2. These data establish a new connection between auxin transport and non-transcriptional auxin signaling. KW - auxin KW - ABP1 KW - plasma membrane depolarization KW - AUX1 KW - endocytosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195914 SN - 1664-462X VL - 9 ER - TY - JOUR A1 - Panzer, Sabine A1 - Brych, Annika A1 - Batschauer, Alfred A1 - Terpitz, Ulrich T1 - Opsin 1 and Opsin 2 of the corn smut fungus ustilago maydis are green light-driven proton pumps JF - Frontiers in Microbiology N2 - In fungi, green light is absorbed by rhodopsins, opsin proteins carrying a retinal molecule as chromophore. The basidiomycete Ustilago maydis, a fungal pathogen that infects corn plants, encodes three putative photoactive opsins, called ops1 (UMAG_02629), ops2 (UMAG_00371), and ops3 (UMAG_04125). UmOps1 and UmOps2 are expressed during the whole life cycle, in axenic cultures as well as in planta, whereas UmOps3 was recently shown to be absent in axenic cultures but highly expressed during plant infection. Here we show that expression of UmOps1 and UmOps2 is induced by blue light under control of white collar 1 (Wco1). UmOps1 is mainly localized in the plasma membrane, both when expressed in HEK cells and U. maydis sporidia. In contrast, UmOps2 was mostly found intracellularly in the membranes of vacuoles. Patch-clamp studies demonstrated that both rhodopsins are green light-driven outward rectifying proton pumps. UmOps1 revealed an extraordinary pH dependency with increased activity in more acidic environment. Also, UmOps1 showed a pronounced, concentration-dependent enhancement of pump current caused by weak organic acids (WOAs), especially by acetic acid and indole-3-acetic acid (IAA). In contrast, UmOps2 showed the typical behavior of light-driven, outwardly directed proton pumps, whereas UmOps3 did not exhibit any electrogenity. With this work, insights were gained into the localization and molecular function of two U. maydis rhodopsins, paving the way for further studies on the biological role of these rhodopsins in the life cycle of U. maydis. KW - Ustilago maydis KW - patch-clamp KW - fungal rhodopsins KW - microbial rhodopsins KW - acetate KW - indole-3-acetic acid KW - structured illumination microscopy KW - sporidia Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201453 VL - 10 ER - TY - THES A1 - Pahlavan, Pirasteh T1 - Integrated Systems Biology Analysis; Exemplified on Potyvirus and Geminivirus interaction with \(Nicotiana\) \(benthamiana\) T1 - Integrierte Systeme Biologie Analyse, Beispiel für Potyvirus und Geminivirus Interaktion mit \(Nicotiana\) \(benthamiana\) N2 - Viral infections induce a significant impact on various functional categories of biological processes in the host. The understanding of this complex modification of the infected host immune system requires a global and detailed overview on the infection process. Therefore it is essential to apply a powerful approach which identifies the involved components conferring the capacity to recognize and respond to specific pathogens, which in general are defeated in so-called compatible virus-plant infections. Comparative and integrated systems biology of plant-virus interaction progression may open a novel framework for a systemic picture on the modulation of plant immunity during different infections and understanding pathogenesis mechanisms. In this thesis these approaches were applied to study plant-virus infections during two main viral pathogens of cassava: Cassava brown streak virus and African cassava mosaic virus. Here, the infection process was reconstructed by a combination of omics data-based analyses and metabolic network modelling, to understand the major metabolic pathways and elements underlying viral infection responses in different time series, as well as the flux activity distribution to gain more insights into the metabolic flow and mechanism of regulation; this resulted in simultaneous investigations on a broad spectrum of changes in several levels including the gene expression, primary metabolites, and enzymatic flux associated with the characteristic disease development process induced in Nicotiana benthamiana plants due to infection with CBSV or ACMV. Firstly, the transcriptome dynamics of the infected plant was analysed by using mRNA-sequencing, in order to investigate the differential expression profile according the symptom developmental stage. The spreading pattern and different levels of biological functions of these genes were analysed associated with the infection stage and virus entity. A next step was the Real-Time expression modification of selected key pathway genes followed by their linear regression model. Subsequently, the functional loss of regulatory genes which trigger R-mediated resistance was observed. Substantial differences were observed between infected mutants/transgenic lines and wild-types and characterized in detail. In addition, we detected a massive localized accumulation of ROS and quantified the scavenging genes expression in the infected wild-type plants relative to mock infected controls. Moreover, we found coordinated regulated metabolites in response to viral infection measured by using LC-MS/MS and HPLC-UV-MS. This includes the profile of the phytohormones, carbohydrates, amino acids, and phenolics at different time points of infection with the RNA and DNA viruses. This was influenced by differentially regulated enzymatic activities along the salicylate, jasmonate, and chorismate biosynthesis, glycolysis, tricarboxylic acid cycle, and pentose phosphate pathways, as well as photosynthesis, photorespiration, transporting, amino acid and fatty acid biosynthesis. We calculated the flux redistribution considering a gradient of modulation for enzymes along different infection stages, ranging from pre-symptoms towards infection stability. Collectively, our reverse-engineering study consisting of the generation of experimental data and modelling supports the general insight with comparative and integrated systems biology into a model plant-virus interaction system. We refine the cross talk between transcriptome modification, metabolites modulation and enzymatic flux redistribution during compatible infection progression. The results highlight the global alteration in a susceptible host, correlation between symptoms severity and the alteration level. In addition we identify the detailed corresponding general and specific responses to RNA and DNA viruses at different stages of infection. To sum up, all the findings in this study strengthen the necessity of considering the timing of treatment, which greatly affects plant defence against viral infection, and might result in more efficient or combined targeting of a wider range of plant pathogens. N2 - Virale Infektionen haben einen signifikanten Einfluss auf verschiedene funktionelle Eigenschaften und biologische Prozesse im Wirt. Das Verständnis dieser komplexen Modifikation des infizierten Wirtsimmunsystems benötigt eine globale und detaillierte Einsicht in den Infektionsprozess. Diese erfordert einen leistungsfähigen Ansatz zur Identifizierung der beteiligten Komponenten, welche eine Pathogen-Erkennung und Antwort vermitteln bzw. eine kompatible Virus-Pflanze-Infektion voraussetzen. Die Anwendung der vergleichenden und integrierten Systembiologie zur Untersuchung dieser Pflanzen-Virus-Interaktionen im Infektionsverlauf kann eine neue Grundlage zum systematischen Verständnis der Modulation des Immunsystems der Pflanze und der Pathogen-Mechanismen während verschiedener Infektionen eröffnen. In dieser Arbeit wenden wir diese Ansätze an, um Pflanzen-Virus-Infektionen der zwei häufigsten viralen Pathogenen von Maniok zu untersuchen, den Cassava brown streak virus (CBSV) und den African cassava mosaic virus (ACMV). Dazu rekonstruieren wir den Infektionsprozess durch die Kombination von „omics“ basierten Datenanalysen und metabolischen Netzwerkmodellen um die wichtigen Elemente des viralen Infektionsprozesses zu verschieden Zeitpunkten aufzuklären. Metabolische Flussanalysen geben Einblick in metabolische Umsätze und deren Regulierung. Diese simultanen Untersuchungen erfassen ein breites Spektrum der Virus-vermittelten Veränderungen im Wirt über mehrere „omics“ Ebenen, einschließlich Geneexpression, Primärmetabolite und enzymatischer Aktivitäten, die mit dem charakteristischen Krankheitsentwicklungsprozess assoziiert sind, der in Nicotiana benthamiana Pflanzen aufgrund einer Infektion mit CBSV oder ACMV induziert wurde. Zuerst wurde die Dynamik des Transkriptoms infizierter Pflanzen mittels mRNA-Sequenzierung analysiert um das differentielle Expressionsprofil nach dem Symptomentwicklungsstadium zu untersuchen. Die Expressionsmuster und die biologischen Funktionen dieser Gene wurden im Hinblick auf die Infektionsstufe und den Virus Einheiten aufgelöst. Ein nächster Schritt war die Echtzeit-Expressionsmodifikation ausgewählter Schlüsselprozess-Gene, gefolgt von der Umsetzung im linearen Regressionsmodell. Anschließend wurde der funktionelle Verlust von regulatorischen Genen ermittelt, welche eine R-vermittelte Resistenz auslösen können. Es wurden erhebliche Unterschiede zwischen infizierten Mutanten / transgenen Linien und Wild-typen beobachtet und im Detail charakterisiert. Darüber hinaus entdeckten wir eine massive lokalisierte Akkumulation von reaktiven Sauerstoffspezies und quantifizierten die Expression von Abbauproteinen in den infizierten Wildtyp-Pflanzen relativ zu Mock-infizierten Kontrollen. Darüber hinaus fanden wir koordinierte regulierte Metaboliten als Reaktion auf eine virale Infektion, gemessen unter Verwendung von LC-MS / MS und HPLC-UV-MS Techniken. Dazu gehören die Analyse der Profile von Phytohormonen, Kohlenhydraten, Aminosäuren, und Phenolika zu verschiedenen Zeitpunkten der Infektion mit den RNA und DNA-Viren. Diese wurden beeinflusst durch die differentielle regulierten enzymatischen Aktivitäten entlang der Salicylat-, Jasmonat- und Chorismat-Biosynthese, der Glykolyse, Tricarbonsäure und Pentose-Phosphat-Umsetzung, der Photosynthese und Photorespiration, des Transportes und der Aminosäure sowie Fettsäure-Biosynthese. Wir berechneten die Umverteilung des metabolischen Flusses unter Berücksichtigung einer ansteigenden Beeinflussung von Enzymen in den verschiedeneren Infektionsstadien, die von Prä-Symptomen zur Infektionsstabilität reichen. Zusammengefasst beinhaltet unsere Reverse-Engineering-Studie die Generierung von experimentellen Daten und deren Modellierung mittels vergleichender und integrierter Systembiologie zum Einblick in das Modell-Pflanzen-Virus-Interaktionssystem. Wir lösten die Interaktion zwischen Transkriptom-Modifikation, Metabolitenmodulation und die Umverteilung des metabolischen Flusses während des kompatiblen Infektionsprozesses auf. Das Ergebnis zeigt die globalen Veränderungen in einem anfälligen Wirt auf, sowie die Korrelation zwischen Symptomschwere und der Stärke dieser Veränderungen. Darüber hinaus identifizieren wir im Detail die entsprechenden allgemeinen und spezifischen Reaktionen auf RNA und DNA-Viren in den verschiedenen Stadien der Infektion. Zusammenfassend lässt sich feststellen, dass die Erkenntnisse aus dieser Studie die Notwendigkeit aufzeigen, den zeitlichen Ablauf bei einer Pflanzenschutzbehandlung zu berücksichtigen, welche die pflanzliche Abwehr gegen eine Virusinfektion stark beeinflusst; und insgesamt zu einer effizienteren oder kombinierten Anwendung gegen ein breiteres Spektrum von Pflanzenpathogenen führen könnte. KW - RNA-seq KW - virus KW - next generation sequencing KW - transcriptome KW - fluxosome KW - metabolite profiling Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-153412 N1 - I also provided some supplementary data in digital version, which are available on-request from the dean's office. ER - TY - JOUR A1 - Otto, C. A1 - Schmidt, S. A1 - Kastner, C. A1 - Denk, S. A1 - Kettler, J. A1 - Müller, N. A1 - Germer, C.T. A1 - Wolf, E. A1 - Gallant, P. A1 - Wiegering, A. T1 - Targeting bromodomain-containing protein 4 (BRD4) inhibits MYC expression in colorectal cancer cells JF - Neoplasia N2 - The transcriptional regulator BRD4 has been shown to be important for the expression of several oncogenes including MYC. Inhibiting of BRD4 has broad antiproliferative activity in different cancer cell types. The small molecule JQ1 blocks the interaction of BRD4 with acetylated histones leading to transcriptional modulation. Depleting BRD4 via engineered bifunctional small molecules named PROTACs (proteolysis targeting chimeras) represents the next-generation approach to JQ1-mediated BRD4 inhibition. PROTACs trigger BRD4 for proteasomale degradation by recruiting E3 ligases. The aim of this study was therefore to validate the importance of BRD4 as a relevant target in colorectal cancer (CRC) cells and to compare the efficacy of BRD4 inhibition with BRD4 degradation on downregulating MYC expression. JQ1 induced a downregulation of both MYC mRNA and MYC protein associated with an antiproliferative phenotype in CRC cells. dBET1 and MZ1 induced degradation of BRD4 followed by a reduction in MYC expression and CRC cell proliferation. In SW480 cells, where dBET1 failed, we found significantly lower levels of the E3 ligase cereblon, which is essential for dBET1-induced BRD4 degradation. To gain mechanistic insight into the unresponsiveness to dBET1, we generated dBET1-resistant LS174t cells and found a strong downregulation of cereblon protein. These findings suggest that inhibition of BRD4 by JQ1 and degradation of BRD4 by dBET1 and MZ1 are powerful tools for reducing MYC expression and CRC cell proliferation. In addition, downregulation of cereblon may be an important mechanism for developing dBET1 resistance, which can be evaded by incubating dBET1-resistant cells with JQ1 or MZ1. KW - Cancer Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202451 VL - 21 IS - 11 ER - TY - THES A1 - Njovu, Henry Kenneth T1 - Patterns and drivers of herbivore diversity and invertebrate herbivory along elevational and land use gradients at Mt. Kilimanjaro, Tanzania T1 - Muster und Determinanten von Herbivorendiversität, von Herbivorieraten durch Invertebraten sowie die Diversität und Gesamtbiomasse von Säugetieren entlang von Höhen- und Landnutzungsgradienten am Kilimandscharo (Tansania) untersucht N2 - This thesis elucidates patterns and drivers of invertebrate herbivory, herbivore diversity, and community-level biomass along elevational and land use gradients at Mt. Kilimanjaro, Tanzania. Chapter I provides background information on the response and predictor variables, study system, and the study design. First, I give an overview of the elevational patterns of species diversity/richness and herbivory published in the literature. The overview illuminates existing debates on elevational patterns of species diversity/richness and herbivory. In connection to these patterns, I also introduce several hypotheses and mechanisms put forward to explain macroecological patterns of species richness. Furthermore, I explain the main variables used to test hypotheses. Finally, I describe the study system and the study design used. Chapter II explores the patterns of invertebrate herbivory and their underlying drivers along extensive elevational and land use gradients on the southern slopes of Mt. Kilimanjaro. I recorded standing leaf herbivory from leaf chewers, leaf miners and gall-inducing insects on 55 study sites located in natural and anthropogenic habitats distributed from 866 to 3060 meters above sea level (m asl) on Mt. Kilimanjaro. Standing leaf herbivory was related to climatic variables [mean annual temperature - (MAT) and mean annual precipitation - (MAP)], net primary productivity (NPP) and plant functional traits (leaf traits) [specific leaf area (SLA), carbon to nitrogen ratio (CN), and nitrogen to phosphorous ratio (NP)]. Results revealed an unimodal pattern of total leaf herbivory along the elevation gradient in natural habitats. Findings also revealed differences in the levels and patterns of herbivory among feeding guilds and between anthropogenic and natural habitats. Changes in NP and CN ratios which were closely linked to NPP were the strongest predictors of leaf herbivory. Our study uncovers the role of leaf nutrient stoichiometry and its linkages to climate in explaining the variation in leaf herbivory along climatic gradients. Chapter III presents patterns and unravels direct and indirect effects of resource (food) abundance (NPP), resource (food) diversity [Functional Dispersion (FDis)], resource quality (SLA, NP, and CN rations), and climate variables (MAT and MAP) on species diversity of phytophagous beetles. Data were collected from 65 study sites located in natural and anthropogenic habitats distributed from 866 to 4550 m asl on the southern slopes of Mt. Kilimanjaro. Sweep net and beating methods were used to collect a total of 3,186 phytophagous beetles representing 21 families and 304 morphospecies. Two groups, weevils (Curculionidae) and leaf beetles (Chrysomelidae) were the largest and most diverse families represented with 898 and 1566 individuals, respectively. Results revealed complex (bimodal) and dissimilar patterns of Chao1-estimated species richness (hereafter referred to as species diversity) along elevation and land use gradients. Results from path analysis showed that temperature and climate-mediated changes in NPP had a significant positive direct and indirect effect on species diversity of phytophagous beetles, respectively. The results also revealed that the effect of NPP (via beetles abundance and diversity of food resources) on species diversity is stronger than that of temperature. Since we found that factors affecting species diversity were intimately linked to climate, I concluded that predicted climatic changes over the coming decades will likely alter the species diversity patterns which we observe today. Chapter IV presents patterns and unravels the direct and indirect effects of climate, NPP and anthropogenic disturbances on species richness and community-level biomass of wild large mammals which represent endothermic organisms and the most important group of vertebrate herbivores. Data were collected from 66 study sites located in natural and anthropogenic habitats distributed from 870 to 4550 m asl on the southern slopes of Mt. Kilimanjaro. Mammals were collected using camera traps and used path analysis to disentangle the direct and indirect effects of climatic variables, NPP, land use, land area, levels of habitat protection and occurrence of domesticated mammals on the patterns of richness and community-level biomass of wild mammals, respectively. Results showed unimodal patterns for species richness and community-level biomass of wild mammals along elevation gradients and that the patterns differed depending on the type of feeding guild. Findings from path analysis showed that net primary productivity and levels of habitat protection had a strong direct effect on species richness and community-level biomass of wild mammals whereas temperature had an insignificant direct effect. Findings show the importance of climate-mediated food resources in determining patterns of species richness of large mammals. While temperature is among key predictors of species richness in several ectotherms, its direct influence in determining species richness of wild mammals was insignificant. Findings show the sensitivity of wild mammals to anthropogenic influences and underscore the importance of protected areas in conserving biodiversity. In conclusion, despite a multitude of data sets on species diversity and ecosystem functions along broad climatic gradients, there is little mechanistic understanding of the underlying causes. Findings obtained in the three studies illustrate their contribution to the scientific debates on the mechanisms underlying patterns of herbivory and diversity along elevation gradients. Results present strong evidence that plant functional traits play a key role in determining invertebrate herbivory and species diversity along elevation gradients and that, their strong interdependence with climate and anthropogenic activities will shape these patterns in future. Additionally, findings from path analysis demonstrated that herbivore diversity, community-level biomass, and herbivory are strongly influenced by climate (either directly or indirectly). Therefore, the predicted climatic changes are expected to dictate ecological patterns, biotic interactions, and energy and nutrient fluxes in terrestrial ecosystems in the coming decades with stronger impacts probably occurring in natural ecosystems. Furthermore, findings demonstrated the significance of land use effects in shaping ecological patterns. As anthropogenic pressure is advancing towards more pristine higher elevations, I advocate conservation measures which are responsive to and incorporate human dimensions to curb the situation. Although our findings emanate from observational studies which have to take several confounding factors into account, we have managed to demonstrate global change responses in real ecosystems and fully established organisms with a wide range of interactions which are unlikely to be captured in artificial experiments. Nonetheless, I recommend additional experimental studies addressing the effect of top-down control by natural enemies on herbivore diversity and invertebrate herbivory in order to deepen our understanding of the mechanisms driving macroecological patterns along elevation gradients.   N2 - In dieser Dissertation werden Muster und Determinanten von Herbivorendiversität, von Herbivorieraten durch Invertebraten sowie die Diversität und Gesamtbiomasse von Säugetieren entlang von Höhen- und Landnutzungsgradienten am Kilimandscharo (Tansania) untersucht. Kapitel I liefert Hintergrundinformationen zu den betrachteten Variablen, dem Untersuchungssystem und dem generellen Studiendesign: Zuerst fasse ich den aktuellen Kenntnisstand über die Muster des Artenreichtums und der Herbivorie entlang von Höhengradienten zusammen und erläutere in diesem Zusammenhang verschiedene Hypothesen, die zur Erklärung von Gradienten des Artenreichtum herangezogen werden. Ich erkläutere verschiedene Variablen, die zum Testen dieser Hypothesen erhoben wurden und stelle dar, wie diese den Artenreichtum, die Herbivorieraten und die Biomasse beeinflussen könnten. Anschließend beschreibe ich das Untersuchungssystem, sowie das generelle Design der Studie. In Kapitel II werden die Muster und Determinanten der Invertebratenherbivorie entlang von Höhen- und Landnutzungsgradienten an den südlichen Hängen des Kilimandscharos präsentiert. Auf insgesamt 55 Untersuchungsflächen, die sowohl natürliche als auch anthropogen genutzte Habitate am Kilimandscharo in Höhenlagen zwischen 866 und 3060 Meter über Normalnull (m ü. NN) umfassten, wurden die Herbivorieraten ektophager, minierender und gallbildener Insekten an Blättern erfasst. Die Blattherbivorie war sowohl mit klimatischen Variablen [Jahresmitteltemperatur und mittlere Jahresniederschlagsmenge], der Nettoprimärproduktivität (NPP) und mit funktionellen Blattmerkmalen von Pflanzen [spezifische Blattfläche (SLA), Kohlenstoff (C) / Stickstoff (N)-Verhältnis, sowie N / Phosphor (P)-Verhältnis] assoziiert. Die Gesamtherbivorie zeigte eine unimodale Verteilung über den Höhengradienten, wurde aber sowohl von der Herbivorengilde, als auch vom Habitattyp (natürlich versus anthropogen) beeinflusst. Das C/N-Verhältnis von Blättern war die stärkste Determinante der Blattherbivorie und wurde selbst stark durch die NPP bestimmt. Herbivorieraten sanken mit steigendem C/N-Verhältnis. Das C/N Verhältnis nahm mit steigender NPP zu.- Letztere konnte fast vollständig durch Änderungen der mittleren Jahrestemperatur (MAT) und des Jahresniederschlags (MAP) entlang des Höhengradienten erklärt werden. Damit zeigt unsere Studie, dass sich durch klimatische Faktoren und Energie, welche ihrerseits die Blattchemie beeinflussen und so Variationen in der Blattherbivorie entlang großer Klimagradienten ergeben. In Kapitel III werden die Muster im Artenreichtum phytophager Käfer entlang der Höhen- und Landnutzungsgradienten untersucht und die direkten und indirekten Effekte von klimatischen Faktoren (MAT, MAP), NPP und funktionellen Pflanzenmerkmalen (funktionelle Dispersion, SLA, C/N - und N/P - Verhältnisse) auf diese Muster analysiert. Die entsprechenden Daten wurden auf 65 Untersuchungsflächen, die sowohl natürliche als auch anthropogene Habitate entlang eines Höhengradienten am Kilimandscharo von 866 bis 4550 m ü. NN abdeckten, erhoben. Mittels Kescher wurden insgesamt 3186 phytophage Käfer aus 21 Familien gesammelt und in 304 Morphospezies eingeteilt. Der Artenreichtum phytophager Käfer zeigte eine komplexe, zweigipflige Verteilung entlang der Höhen- und Landnutzungsgradienten. Eine Pfadanalyse ergab, dass sowohl die MAT, als auch NPP positiven direkte bzw. indirekte Effekt auf die Artendiversität phytophager Käfer hatte. Die NPP war positiv mit der funktionellen Dispersion von Blattmerkmalen, ein Maß für die Diversität der Nahrungsressourcen, korreliert. Letztere hatte einen positiven Effekt auf die Diversität der Käfer. Die starken direkten und indirekten Effekte von Klima auf die Diversität und Abundanz von phytophagen Käfern, lassen vermuten dass der Klimawandel in den nächsten Dekaden großen Änderungen der Struktur von phytophagen Käfergemeinschaften bewirken wird. In Kapitel IV untersuchen wir den Effekt von Klima, NPP und anthropogener Störung auf den Artenreichtum und die Gesamtbiomasse von Großwild. Dazu wurden auf 66 Untersuchungsflächen, welche natürliche und anthropogene Habitate in Höhenstufen zwischen 870 und 4550m ü. NN umfassten, Daten zum Artenreichtum un der Abundanz von Großwild mittels Kamerafallen erfasst. Mittels einer Pfadanalyse wurden die direkten und indirekten Effekte von klimatischen Variablen, NPP, Landnutzung, Größe und Schutzstatus der Flächen, sowie der Präsenz von domestizierten Säugetieren auf den Artenreichtum und die Biomasse von Großwild untersucht. Artenreichtum und Gesamtbiomasse dieser endothermen Organismen zeigten eine unimodale Verteilung über den Höhengradienten. Verschiedene Nahrungsgilden zeigten unterschiedliche Muster. Es konnte gezeigt werden, dass NPP und der Schutzstatus der Fläche, aber nicht die Temperatur einen direkten, positiven Einfluss auf den Artenreichtum und die Gesamtbiomasse des Großwildes hatte. Die vom Klima abhängige Nahrungsressourcenverfügbarkeit ist also eine wichtige Determinante im Artenreichtum von Großwild. Die Temperatur hingegen, die den Artenreichtum verschiedener ektothermer Organismen entscheidend prägt, hatte keinen direkten Einfluss auf den Artenreichtum des Großwildes Dafür reagiert das Großwild besonders sensibel auf anthropogene Einflüsse, was wiederum die Wichtigkeit von Schutzgebieten unterstreicht. Obwohl die Muster im Artenreichtum und in Ökosystemfunktionen entlang großer klimatischer Gradienten bereits gut dokumentiert sind, ist das Wissen über die zu Grunde liegenden Prozesse nach wie vor unzureichend. Mit meinen drei Studien über die Muster und Determinanten der Herbivorendiversität, der Herbivorieraten und der Großwildbiomasse trage ich somit zur Verbesserung des mechanistischen Verständnisses solcher makroökologischer Muster bei. Wie die Pfadanalysen zeigten, wurden sowohl der Artenreichtum die Biomasse als auch ökologische Prozesse direkt oder indirekt vom Klima beeinflusst. Es ist somit zu erwarten, dass der vorhergesagte Klimawandel ökologische Muster, biotische Interaktionen, Energie- und Nährstoffkreisläufe in terrestrischen Ökosystemen wesentlich umstrukturieren wird, wobei natürliche Systeme wahrscheinlich besonders sensibel auf den Klimawandel reagieren werden. Meine Ergebnisse demonstrieren auch den Einfluss von Landnutzung auf Artenreichtum und ökologische Prozesse. Da der anthropogene Druck auf die natürlichen Ökosysteme des Kilimandscharos immer weiter zunimmt, sollten objektive Biodiversitätsmaße implementiert werden mit denen man Veränderungen in den Ökosystemen und in Ökosystemldienstleistungen schnell detektieren kann. Meine Ergebnisse basieren auf Beobachtungsdaten, die von bestimmten Nebenfaktoren im Feld beeinflusst werden können. Dennoch ist es mir gelungen mit korrelativen Methoden, Organismen in ihrem biotischen und abiotischen Interaktionsumfeld zu untersuchen – ein Szenario, welches in einem rein experimentellen Aufbau in dieser Form wahrscheinlich nicht geschaffen werden kann. Über weiterführende Experimente könnte jedoch zum Beispiel der Einfluss von Prädatoren auf die Herbivorendiversität und Herbivorieraten quantifiziert werden, welches unser Verständnis über die Determinanten makroökologischer Muster noch vertiefen würde.   KW - Species richness KW - Invertebrate herbivory KW - Leaf traits KW - drivers and patterns of diversity and herbivory KW - Patterns and drivers of invertebrate herbivory KW - Patterns and drivers of species diversity of phytophagous beetles KW - Patterns and drivers of species richness and community biomass of large mammals Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-172544 ER - TY - THES A1 - Neubert, Franziska T1 - Markierung postsynaptischer Proteine für die hochauflösende Fluoreszenzmikroskopie T1 - Labeling of postsynaptic proteins for super-resolution microscopy N2 - Das menschliche Gehirn ist ein Organ, das aufgrund seiner Komplexität und zellulären Diversität noch am wenigsten verstanden ist. Eine der Ursachen dafür sind zahlreiche Herausforderungen in diversen neurobiologischen Bild-gebungsverfahren. Erst seit der Erfindung der hochauflösenden Fluoreszenz-mikroskopie ist es möglich, Strukturen unterhalb der Beugungsgrenze zu visua-lisieren und somit eine maximale Auflösung von bis zu 20 nm zu erreichen. Zusätzlich hängt die Fähigkeit, biologische Strukturen aufzulösen, von der Markierungs-größe und -dichte ab. Derzeit ist die häufigste Methode zur Proteinfärbung die indirekte Antikörperfärbung, bei der ein Fluorophor-markierter Sekundärantikörper an einen Epitop-spezifischen Primärantikörper bindet. Dabei kann der Abstand von Zielstruktur und Fluorophor bis zu 30 nm betragen, was eine Auflösungs-verminderung zur Folge haben kann. Aufgrund dessen wurden in dieser Arbeit alternative Markierungsmethoden getestet, um postsynaptische Proteine sicht-bar zu machen. Zunächst wurde der postsynaptische N-Methyl-D-Aspartat (NMDA)-Rezeptor mit Hilfe konventioneller indirekter Antikörperfärbung markiert. Hier war die NR1-Untereinheit des NMDA-Rezeptors von besonderem Interesse, da diese in der Autoimmunerkrankung Anti-NMDA-Rezeptor-Enzephalitis invol-viert ist. Patienten dieser seltenen Krankheit bilden Autoantikörper gegen die NR1-Untereinheit, wodurch ein schneller reversibler Verlust der NMDA-Rezeptoren auf der Postsynapse induziert wird. Wichtige Informationen können nicht mehr ausreichend weitergegeben werden, was psychiatrische und neurologi-sche Störungen zur Folge hat. In dieser Arbeit wurden sowohl kommerzielle NR1-Antikörper, als auch rekombinante monoklonale NR1-Antikörper von Patien-ten mit Anti-NMDA-Rezeptor-Enzephalitis getestet. In konfokalen und in hochaufgelösten SIM- (engl. structured illumination microscopy) und dSTORM- (engl. direct stochastic optical reconstruction microscopy) Messun-gen konnten kommerzielle NR1-Antikörper keine erfolgreichen Färbungen erzielen. Dagegen erwiesen sich die rekombinanten monoklonalen NR1-Patientenantikörper als sehr spezifisch, sowohl in primären Neuronen als auch im Hippocampus von murinen Gehirnschnitten und lieferten gute Kolokalisati-onen mit dem postsynaptischen Markerprotein Homer. Um die optische Auflösung zu verbessern, wurde eine neue Markierungs-methode mit sog. „Super-Binde-Peptiden“ (SBPs) getestet. SBPs sind modifi-zierte Peptide, die erhöhte Affinitäten und Spezifitäten aufweisen und mit ei-ner Größe von ~ 2,5 nm wesentlich kleiner als Antikörper sind. In dieser Arbeit bestätigte sich ein kleines hochspezifisches SPB, das an den Fluoreszenzfarb-stoff Tetra- methylrhodamin (TMR) gekoppelt ist, als effektiver Marker für das Ankerpro-tein Gephyrin. Gephyrin ist für die Lokalisation und Verankerung einiger post-synaptischer Rezeptoren zuständig, indem es sie mit dem Cytoskelett der Zelle verbindet. SIM-Messungen in primären Neuronen zeigten eine bessere Clus-terrepräsentation bei der Färbung von Gephyrin mit SBPs, als mit Antikörper-färbung. Zusätzlich wurden Kolokalisationsanalysen von Gephyrin zusammen mit dem inhibito-rischen präsynaptischen vesikulären GABA-Transporter VGAT durchgeführt. Eine weitere Färbemethode stellte die bioorthogonale Click-Färbung durch die Erweiterung des eukaryotischen genetischen Codes (engl. genetic code ex-pansion, GCE) dar. Dabei wurde eine unnatürliche, nicht-kanonische Amino-säure (engl. non-canonical amino acid, ncAA) ins Zielprotein eingebaut und in Kombination mit der Click-Chemie ortsspezifisch mit organischen Tetrazin-Farbstoff-Konjugaten angefärbt. Organische Fluorophore haben den Vorteil, dass sie mit einer Größe von 0,5 – 2 nm sehr klein sind und damit die natürli-chen Funktionen der Proteine in der Zelle kaum beeinflussen. In dieser Arbeit wurde zum ersten Mal gezeigt, dass der tetramere postsynaptische NMDA-Rezeptor durch die Amber-Supres-sionsmethode bioorthogonal angefärbt werden konnte. Aus sieben verschiede-nen Amber-Mutanten der NR1-Untereinheit stellte sich die Y392TAG-NR1-Mutante als diejenige mit der besten Proteinexpression, Färbeeffizienz und rezeptorfunktionalität heraus. Dies konnte durch Fluoreszenzmikroskopie- und Whole-Cell Patch-Clamp-Experimenten gezeigt werden. Die bioorthogo-nale Click-Färbung durch GCE eignete sich für die Färbung des NMDA-Rezeptors in verschiedenen Zelllinien, mit unterschiedlichen Tetrazin-Farbstoff-Konjugaten und für Lebendzellexperimente. In dSTORM-Messungen erwies sich das Tetrazin-Cy5-Farbstoff-Konjugat als ideal aufgrund seiner Grö-ße, Photostabilität, Helligkeit und seines geeigneten Blinkverhaltens, sodass eine homogene NMDA-Rezeptorverteilung auf der Zellmembran gezeigt wer-den konnte. NR1-Antikörperfärbungen wiesen dagegen starke Clusterbildun-gen auf. Die Ergebnisse konnten belegen, dass kleinere Farbstoffe eine deut-lich bessere Zugänglichkeit zu ihrem Zielprotein haben und somit besser für die hochauflösende Fluoreszenzmikroskopie geeignet sind. N2 - Due to its complexity and cellular diversity, the human brain is an organ which is poorly understood. In particular, there are numerous challenges in different neurobiological imaging processes. The advent of super-resolution fluorescence microscopy, where a maximal optical resolution of up to 20 nm is achievable, made it feasible to visualize structures beyond the diffraction limit. The ability to resolve biological structures is further dependent on the labeling size and density. Currently, indirect antibody staining is the most common method for protein labeling. Thereby, a fluorophore marked secondary anti-body binds an epitope specific primary antibody. Consequently, the off-distance between target structure and fluorophore can be up to 30 nm, which could provoke a decrease of resolution. As a result, alternative labeling methods were tested in this work to visualize postsynaptic proteins. Initially, labeling of the postsynaptic N-methyl-D-aspartate (NMDA) recep-tor was performed with conventional indirect antibody staining. Here, the NR1 subunit of the NMDA receptor was of special interest because it is involved in the autoimmune disease of Anti-NMDA receptor encephalitis. Patients of this rare disorder produce autoantibodies against the NR1 subunit, which induces a fast and reversible reduction of NMDA receptors on the postsynapse. Important synaptic information cannot be transferred sufficiently which results in psychiatrical and neurological deficiencies. In this work commercial NR1 antibodies as well as recombinant monoclonal NR1 antibodies from patients with Anti-NMDA receptor encephalitis were tested. In confocal and super-resolved SIM (structured illumination microscopy) and dSTORM (direct sto-chastic optical reconstruction microscopy) measurements the commercial NR1 antibodies could not obtain a successful staining. In contrast, recombinant monoclonal NR1 patient antibodies turn out to be very specific, both in primary neurons and in the hippocampus of murine brain slices. Additionally, they show perfect colocaliza-tion together with the postsynaptic marker protein Homer. To further improve the optical resolution, a new labeling method was tested with so called “super-binding peptides” (SBPs). SBPs are modified peptides with enhanced affinity and specificity. With a size of ~ 2.5 nm, they are much smaller than antibodies. In this work a small, highly specific SBP, coupled to the fluorescent dye tetramethylrhodamine (TMR), turned out to be an efficient marker for the postsynaptic anchor protein gephyrin. Gephyrin is responsible for the localization and anchoring of postsynaptic receptors by connecting them with the cytoskeleton of the cell. SIM measurements in primary neurons showed better cluster representation of gephyrin stained with SBPs than with antibody stain-ing. In addition, colocalization analysis of gephyrin together with the inhibitory presynaptic vesicular GABA transporter VGAT was performed. Another staining method was the bioorthogonal click chemistry by the eu-karyotic genetic code expansion (GCE). Thereby, an unnatural, non-canonical amino acid (ncAA) is incorporated into the target protein and click-labeled site- specifically with an organic tetrazine dye conjugate. Organic dyes are very small with a size of only 0.5 – 2 nm and barely influence the natural function of proteins within the cell, which is beneficial for super-resolution microscopy. In this work, tetrameric postsynaptic NMDA receptors were bioorthogonally la-beled via the amber suppression method for the first time. From a series of seven different amber mutants of the NR1 subunit, the Y392TAG mutant was the one with the best protein expression, labeling efficiency and receptor functionality, as shown by fluorescence microscopy and whole-cell patch clamp experiments. The bioortho-gonal click staining by GCE was suitable for the NMDA receptor stain-ing in different cell lines, with various tetrazine dye conjugates and for live-cell experiments. In dSTORM measurements the tetrazine-Cy5 dye conjugate was ideal because of its size, photostability, brightness and appropriate blinking be-havior. Accordingly, a homogenous NMDA receptor distribution on the cell membrane was observed. In contrast, NR1 antibody staining showed big cluster formation. The results show that small labels have a better accessibility to its target and are therefore much more suitable for super-resolution microscopy. KW - hochauflösende Fluoreszenzmikroskopie KW - Markierungen synaptischer Proteine Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192394 ER - TY - JOUR A1 - Molinas-González, Carlos R. A1 - Castro, Jorge A1 - González-Megías, Adela A1 - Leverkus, Alexandro B. T1 - Effects of post-fire deadwood management on soil macroarthropod communities JF - Forests N2 - Dead wood comprises a vast amount of biological legacies that set the scene for ecological regeneration after wildfires, yet its removal is the most frequent management strategy worldwide. Soil-dwelling organisms are conspicuous, and they provide essential ecosystem functions, but their possible affection by different post-fire management strategies has so far been neglected. We analyzed the abundance, richness, and composition of belowground macroarthropod communities under two contrasting dead-wood management regimes after a large wildfire in the Sierra Nevada Natural and National Park (Southeast Spain). Two plots at different elevation were established, each containing three replicates of two experimental treatments: partial cut, where trees were cut and their branches lopped off and left over the ground, and salvage logging, where all the trees were cut, logs were piled, branches were mechanically masticated, and slash was spread on the ground. Ten years after the application of the treatments, soil cores were extracted from two types of microhabitat created by these treatments: bare-soil (in both treatments) and under-logs (in the partial cut treatment only). Soil macroarthropod assemblages were dominated by Hemiptera and Hymenoptera (mostly ants) and were more abundant and richer in the lowest plot. The differences between dead-wood treatments were most evident at the scale of management interventions: abundance and richness were lowest after salvage logging, even under similar microhabitats (bare-soil). However, there were no significant differences between microhabitat types on abundance and richness within the partial cut treatment. Higher abundance and richness in the partial cut treatment likely resulted from higher resource availability and higher plant diversity after natural regeneration. Our results suggest that belowground macroarthropod communities are sensitive to the manipulation of dead-wood legacies and that management through salvage logging could reduce soil macroarthropod recuperation compared to other treatments with less intense management even a decade after application. KW - forest fire KW - burnt-wood KW - species richness KW - soil fauna KW - post-fire management Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193079 SN - 1999-4907 VL - 10 IS - 11 ER - TY - THES A1 - Memmel, Simon T1 - Automatisierte Algorithmen zur Analyse der Migration und der strahleninduzierten DNA-Schäden humaner Glioblastomzellen nach kombinierter PI3K/mTOR/Hsp90-Inhibierung T1 - Automated algorithms for the analysis of cell migration and radiation induced DNA-damage in human glioblastoma cells after combined PI3K/mTOR/Hsp90 inhibition N2 - Das hohe invasive Potential und die starke Resistenz gegen Radio-/Chemotherapie von Glioblastoma multiforme (GBM) Zellen machen sie zu dem tödlichsten Tumor ihrer Art. Es ist deshalb von großem Interesse die Grundlagen, welche der Migrationsfähigkeit und DNA Reparatur zu Grunde liegen, besser zu verstehen. Im ersten Teil dieser Arbeit wurden zwei Algorithmen zur automatischen Analyse der Migration in der Einzelzellverfolgung und im Wundheilungsassay modifiziert. Die Auswertung der Daten konnte automatisch und somit schnell, effektiv und mit geringerem Arbeitsaufwand durchgeführt werden. Mit Hilfe dieser automatischen Algorithmen wurde die Migrationsfähigkeit von zwei GBM-Zelllinien (DK-MG und SNB19) untersucht. Zusätzlich wurde die konfokale Laserscanning- sowie die hochauflösende dSTORM-Fluoreszenzmikroskopie verwendet um die, der Zellbewegung zu Grunde liegende, Struktur des F Aktin und der fokalen Adhäsionskinase (FAK) aufzulösen und darzustellen. Unter Anwendung dieser genannten Methoden sind die Effekte des dualen PI3K/mTOR Inhibitors PI-103 alleine und in Kombination mit dem Hsp90 Inhibitor NVP AUY922 mit und ohne Bestrahlung auf die Bewegung untersucht worden. Es konnte festgestellt werden, dass sich beide Zelllinien deutlich in ihrem migratorischem Potential in vitro unterscheiden und zudem auch markante Unterschiede in ihrer Morphologie aufweisen. Die weniger invasiven DK MG-Zellen besitzen eine polarisierte Zellstruktur, wohingegen SNB19-Zellen sich durch multipolare ungerichtete Bewegung auszeichneten. Zudem wurde die Migration, durch PI3K/mTOR Inhibition mit PI-103 bei den DK-MG-Zellen (p53 wt, PTEN wt), sehr effektiv unterdrückt. Wohingegen sich die SNB19-Zellen (p53 mut, PTEN mut) resistent gegen diesen Inhibitor zeigten. Hsp90 Inhibition offenbarte in beiden Zelllinien einen starken inhibitorischen Effekt auf die Migration der Zellen sowie die Reorganisierung des F Aktinskelettes. In der zweiten Hälfte dieser Arbeit wurde ein Augenmerk auf die DNA-DSB-Reparatur der GBM Zellen nach ionisierender Strahlung gelegt. Zunächst wurde eine automatische Analysesoftware „FocAn-3D“ entwickelt, mit dessen Hilfe die DNA Doppelstrangbruchreparaturkinetik untersucht werden sollte. Diese Software ermöglicht es die gesamten Zellkerne mit ihren γH2AX-Foci in 3D-cLSM-Aufnahmen zu untersuchen. Es konnte somit eine Verbesserung der Genauigkeit in der Auszählung der γH2AX-Foci erreicht werden, welche 2D beschränkter Software verwehrt bleibt. Mit FocAn-3D konnte der gesamte Verlauf der Induktions- und Abbauphase der γH2AX-Foci in DK MG- und SNB19-Zellen mit einem mathematischen Modell ausgewertet und dargestellt werden. Des Weiteren wurde die Nanometerstruktur von γH2AX- und pDNA-PKcs-Foci mittels hochauflösender dSTORM-Mikroskopie untersucht. Konventionelle Mikroskopiemethoden, begrenzt durch das Beugungslimit und einer Auflösung von ~200 nm, konnten die Nanometerstruktur (<100 nm) der Reparaturfoci bisher nicht darstellen. Mit Hilfe der beugungsunbegrenzten dSTORM-Mikroskopie war es möglich in DK MG- und SNB19-Zellen die Nanometerstruktur genannten Reparaturproteine in den Foci mit einer Auflösung von bis zu ~20 nm darzustellen. γH2AX-Foci zeigten sich als eine Verteilung aus einzelnen Untereinheiten („Nanofoci“) mit einem Durchmesser von ~45 nm. Dies lässt die Vermutung zu, dass es sich hier um die elementare Substruktur der Foci und somit der γH2AX enthaltenen Nukleosome handelt. DNA-PK-Foci wiesen hingegen eine diffusere Verteilung auf. Die in dieser Arbeit ermittelten Unterschiede im Migrationsverhalten der Zellen rechtfertigen eine weitere präklinische Untersuchung der verwendeten Inhibitoren als potentielle Zelltherapeutika für die Behandlung von GBM. Zudem konnte sich dSTORM als machtvolles Hilfsmittel, sowohl zur Analyse der Migration zugrundeliegenden Zytoskelettstruktur und der Effekte der Hsp90 Inhibierung, als auch, der Nanostruktur der DNA-DSB-Reparaturfoci herausstellen. Es ist anzunehmen, dass beugungsunbegrenzte Mikroskopiemethoden sich als bedeutende Werkzeuge in der medizinischen und biologischen Erforschung der DNA-Reparaturmechanismen herausstellen werden. Das in dieser Arbeit entwickelte ImageJ Plugin „FocAn-3D“ bewies sich ebenfalls als ein vielversprechendes Werkzeug für die Analyse der Reparaturkinetik. Mit Hilfe von „FocAn-3D“ sollte es somit möglich sein u.a. den Einfluss gezielter Inhibition auf den zeitlichen Verlauf der Induktion und des Abbaus der DNA-Reparaturmaschinerie genauer zu studieren. N2 - The high invasive Potential and increased resistance to radio- and chemotherapy of glioblastoma multiforme (GBM) tumor cells make it the most lethal of all primary brain tumors. It is therefore of great interest to gain a better understanding of the mechanisms facilitating the migration and DNA repair. In the first part of this study, two algorithms for single cell tracking and wound healing assays were modified to increase effectiveness and speed of the automatic data analysis. The migratory capacity of the two GBM cell lines, DK MG and SNB19, were analyzed using these automatic algorithms. In addition, employing confocal microscopy and high resolution dSTORM imaging, the underlying F actin/FAK structure was resolved and studied. Together, these automatic algorithms enabled me to elucidate the effects of the dual PI3K/mTOR inhibitor PI 103 alone and in combination with the Hsp90 inhibitor NVP-AUY922 and/or irradiation on the migration, focal adhesions and F-actin cytoskeleton of DK-MG and SNB19 cells. Both cell lines differ markedly in their migratory capacity in vitro and display distinctive differences in their morphology. The less invasive DK-MG cells retained their polarized structure, while SNB19 cells demonstrate multipolar morphology with random migration. The PI3K/mTOR Inhibition using PI-103 suppressed migration of the PTEN wt and p53 wt DK-MG cells but not of the PTEN mut and p53 mut SNB19 cells. In contrast, Hsp90 inhibition using NVP-AUY922 exerted a strong inhibitory effect on the migration in both cell lines as well as massive morphological changes and reorganization of the F-actin cytoskeleton. The second part of this study was designed to gain further insights in the DNA double strand break (DSB) repair of both GBM cell lines. The DNA DSB repair kinetics were analyzed using the novel software “FocAn-3D”. The software enables the 3D analysis of foci in entire nuclei using cLSM-imaging. This in turn results in increased accuracy of the foci counts, compared to approaches restricted to 2D. Using the new software approach, I was able to determine the whole γH2AX-foci induction and decay process and apply a well described mathematical model for the γH2AX-foci repair kinetics. Additionally, diffraction unlimited microscopy (dSTORM) was applied to resolve the nanometer scale of the foci forming repair proteins γH2AX and DNA-PK. Although conventional microscopy is able to reveal the repair foci as diffuse spots, the underlying protein distribution is well beyond the diffraction limit of ~200 nm. In this study, using the diffraction unlimited dSTORM microscopy with a lateral resolution of ~20 nm, it was possible to resolve the nanometer scale of both γH2AX and DNA-PK. γH2AX foci appeared not as diffuse spots, but rather as a distribution of distinct subunits (“nanofoci”). In contrast DNA-PK mostly showed a more diffuse distribution. The nanofoci diameter was about ~45 nm and it can be concluded that these clusters represent the elementary structural subunits of repair foci, the γH2AX-containing nucleosomes. Using the newly developed or modified algorithms for the analysis of cell migration, I was able to show a cell line specific response of the PI3K/mTOR inhibition on the cell migration. This warrants further preclinical trials for its potential as an anti-migratory agent in the treatment of GBM. In addition, dSTORM emerged as a powerful tool for the analysis of the cytoskeletal structure, underlying the cells migration capacity and the effects of Hsp90 inhibition. Also, dSTORM was able to unravel the elementary nanostructure of the DSB repair foci. This means diffraction unlimited single-molecule localization nanoscopy methods will likely emerge as powerful tools for the analysis of targeted inhibition on the DSB repair mechanisms. In addition, the newly developed software “FocAn-3D” showed promising results in the analysis of Foci kinetics. Consequently, it should enable the future study of targeted inhibition and its effects on foci induction and decay processes of the DNA repair. KW - Glioblastom KW - Zellmigration KW - DNS-Schädigung KW - Algorithmus KW - Automatisierung KW - PI3K/mTOR inhibierung KW - yH2AX-Foci KW - Dnaschaden KW - DNS-Doppelstrangbruch Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-185710 ER - TY - THES A1 - Mekala, SubbaRao T1 - Generation of cardiomyocytes from vessel wall-resident stem cells T1 - Erzeugung von Kardiomyozyten aus Gefäßwand-residenten Stammzellen N2 - Myocardial infarction (MI) is a major cause of health problems and is among the leading deadly ending diseases. Accordingly, regenerating functional myocardial tissue and/or cardiac repair by stem cells is one of the most desired aims worldwide. Indeed, the human heart serves as an ideal target for regenerative intervention, because the capacity of the adult myocardium to restore itself after injury or infarct is limited. Thus, identifying new sources of tissue resident adult stem or progenitor cells with cardiovascular potential would help to establish more sophisticated therapies in order to either prevent cardiac failure or to achieve a functional repair. Ongoing research worldwide in this field is focusing on a) induced pluripotent stem (iPS) cells, b) embryonic stem (ES) cells and c) adult stem cells (e. g. mesenchymal stem cells) as well as cardiac fibroblasts or myofibroblasts. However, thus far, these efforts did not result in therapeutic strategies that were transferable into the clinical management of MI and heart failure. Hence, identifying endogenous and more cardiac-related sources of stem cells capable of differentiating into mature cardiomyocytes would open promising new therapeutic opportunities. The working hypothesis of this thesis is that the vascular wall serves as a niche for cardiogenic stem cells. In recent years, various groups have identified different types of progenitors or mesenchymal stem cell-like cells in the adventitia and sub-endothelial zone of the adult vessel wall, the so called vessel wall-resident stem cells (VW-SCs). Considering the fact that heart muscle tissue contains blood vessels in very high density, the physiological relevance of VW-SCs for the myocardium can as yet only be assumed. The aim of the present work is to study whether a subset of VW-SCs might have the capacity to differentiate into cardiomyocyte-like cells. This assumption was challenged using adult mouse aorta-derived cells cultivated in different media and treated with selected factors. The presented results reveal the generation of spontaneously beating cardiomyocyte-like cells using specific media conditions without any genetic manipulation. The cells reproducibly started beating at culture days 8-10. Further analyses revealed that in contrast to several publications reporting the Sca-1+ cells as cardiac progenitors the Sca-1- fraction of aortic wall-derived VW-SCs reproducibly delivered beating cells in culture. Similar to mature cardiomyocytes the beating cells developed sarcomeric structures indicated by the typical cross striated staining pattern upon immunofluorescence analysis detecting α-sarcomeric actinin (α-SRA) and electron microscopic analysis. These analyses also showed the formation of sarcoplasmic reticulum which serves as calcium store. Correspondingly, the aortic wall-derived beating cardiomyocyte-like cells (Ao-bCMs) exhibited calcium oscillations. This differentiation seems to be dependent on an inflammatory microenvironment since depletion of VW-SC-derived macrophages by treatment with clodronate liposomes in vitro stopped the generation of Ao bCMs. These locally generated F4/80+ macrophages exhibit high levels of VEGF (vascular endothelial growth factor). To a great majority, VW-SCs were found to be positive for VEGFR-2 and blocking this receptor also stopped the generation VW-SC-derived beating cells in vitro. Furthermore, the treatment of aortic wall-derived cells with the ß-receptor agonist isoproterenol or the antagonist propranolol resulted in a significant increase or decrease of beating frequency. Finally, fluorescently labeled aortic wall-derived cells were implanted into the developing chick embryo heart field where they became positive for α-SRA two days after implantation. The current data strongly suggest that VW-SCs resident in the vascular adventitia deliver both progenitors for an inflammatory microenvironment and beating cells. The present study identifies that the Sca-1- rather than Sca-1+ fraction of mouse aortic wall-derived cells harbors VW-SCs differentiating into cardiomyocyte-like cells and reveals an essential role of VW-SCs-derived inflammatory macrophages and VEGF-signaling in this process. Furthermore, this study demonstrates the cardiogenic capacity of aortic VW-SCs in vivo using a chimeric chick embryonic model. N2 - Der Myokardinfarkt (MI) ist einer der Hauptgründe für gesundheitliche Probleme und zählt zu einer der am häufigsten tödlich verlaufenden Krankheiten weltweit. Daher ist es nicht verwunderlich, dass die Regeneration von funktionellem Myokardgewebe und/oder die kardiale Reparatur durch Stammzellen eines der weltweit am meisten angestrebten Ziele darstellt. Das adulte menschliche Herz stellt aufgrund seiner äußerst eingeschränkten endogenen Regenerationskapazität, die bei weitem nicht ausreicht, das geschädigte Gewebe zu erneuern, ein ideales Zielorgan für regenerative Therapieverfahren dar. Folglich könnte die Identifizierung neuer Quellen adulter Stamm- oder Vorläuferzellen mit kardiovaskulärem Differenzierungspotential dabei helfen, verfeinerte Therapien zu entwickeln, um entweder kardiale Fehlfunktionen zu verhindern oder eine deutlich verbesserte myokardiale Reparatur zu erreichen. Die aktuelle weltweite Forschung auf diesem Gebiet fokussiert sich auf: a) induzierte pluripotente Stammzellen (iPS), b) embryonale Stammzellen (ES) und c) adulte Stammzellen, wie z. B. mesenchymale Stammzellen, kardiale Fibroblasten und Mesangioblasten sowie Myofibroblasten. Bisher haben jedoch alle Bemühungen noch zu keinem Durchbruch geführt, so dass die teilweise vielversprechenden experimentellen Ergebnisse nicht in die klinische Therapie des MI und der kardialen Defekte mittels Stammzellen transferiert werden können. Abgesehen davon, ob und wie stark so ein endogenes herzeigenes Potential wäre, würde die Identifizierung neuer endogener Stammzellen mit kardiogenem Potential, die genaue Charakterisierung ihrer Nischen und der Mechanismen ihrer Differenzierung einen Meilenstein in der kardioregenerativen Stammzelltherapie darstellen. Die Arbeitshypothese der hier vorgelegten Dissertation besagt, dass die Gefäßwand als Nische solcher Zellen dienen könnte. Innerhalb der letzten Jahre konnte die Adventitia und die subendotheliale Zone der adulten Gefäßwand als Nische für unterschiedliche Typen von Vorläuferzellen und multipotenten Stammzellen, die sogenannten Gefäßwand-residenten Stammzellen (VW-SCs) identifiziert werden. In Anbetracht der Tatsache, dass die Blutgefäße aufgrund ihrer hohen Dichte im Herzen eine essentielle stromale Komponente des Herzgewebes darstellen, kann die mögliche klinische Relevanz von VW-SCs für das Myokardium im Moment nur erahnt werden. Ausgehend von der Annahme, dass eine Subpopulation dieser VW-SCs die Fähigkeit besitzt, sich in Kardiomyozyten-ähnliche Zellen zu differenzieren, sollte im Rahmen dieser Dissertationsarbeit das myokardiale Potential der Gefäßwand-residenten Stammzellen aus der Aorta adulter Mäuse studiert werden, indem die Zellen unter unterschiedlichen definierten Bedingungen kultiviert und dann sowohl morphologisch als auch funktionell charakterisiert werden. Erstaunlicherweise zeigten die ersten Ergebnisse die Generierung spontan schlagender Kardiomyozyten-ähnlicher Zellen, nur durch Verwendung eines speziellen Nährmediums und ohne jegliche genetische Manipulation. Die im Rahmen dieser Arbeit durchgeführten Analysen belegen zudem, dass die Kardiomyozyten-ähnlichen Zellen reproduzierbar nach ca. 9-11 Tagen in der Kultur anfangen, spontan zu schlagen. In immunzytochemischen Analysen zeigten die schlagenden Zellen ein quergestreiftes Färbemuster für α sarkomeres Actinin. Passend dazu wiesen diese spontan schlagenden Zellen, wie reife Kardiomyozyten, Sarkomerstrukturen mit Komponenten des sarkoplasmatischen Retikulums in elektronenmikroskopischen Analysen auf. Sie zeigten dementsprechend eine mit dem spontanen Schlag assoziierte Kalzium-Oszillation. Erstaunlicherweise zeigten die hier vorgelegten Befunde erstmalig, dass es nicht die Sca-1+ (stem cell antigen-1) Zellen waren, denen seit Jahren eine kardiomyozytäre Kapazität zugeschrieben wird, sondern es waren die Sca-1- Zellen der Mausaorta, die sich zu den spontan schlagenden Zellen differenzierten. Des Weiteren scheint diese Differenzierung von einer endogen generierten inflammatorischen Mikroumgebung abhängig zu sein. Die hier vorgelegten Ergebnisse legen daher den Schluss nahe, dass die VW-SCs in der vaskulären Adventitia sowohl die inflammatorische Mikroumgebung als auch die spontan schlagenden Kardiomyozyten-ähnlichen Zellen bereitstellten. So entstanden in der Kultur aortaler Zellen unter anderem auch Makrophagen, die hohe Mengen des Gefäßwachstumsfaktors VEGF (Vascular Endothelial Growth Factor) aufweisen. Wurden die Makrophagen in der Zellkultur durch Zugabe von Clodtronat-Liposomen depletiert, so wurde damit auch die Generierung spontan schlagender Zellen aus den aortalen VW-SCs unterbunden. Um zu testen, ob und inwieweit dieser Einfluss der Makrophagen auf die Entstehung spontan schlagender Zellen aus den VW-SCs auf den VEGF zurückzuführen ist, wurden kultivierte Zellen der Mausaorta mit dem VEGF-Rezeptor-2-Blocker (E7080) behandelt. Auch diese Behandlung resultierte wie bei der Depletion von Makrophagen darin, dass keine spontan schlagenden Zellen entstanden. Um die von VW-SCs generierten spontan schlagenden Zellen funktionell zu charakterisieren, wurden die kultivierten Zellen der Mausaorta mit Isoproterenol (ß-Sympathomimetikum) und Propranolol (ß-Blocker) behandelt. Eine signifikante Steigerung der Schlagfrequenz unter Isoproterenol und eine Reduzierung bei Zugabe von Propranolol unterstreichen ebenfalls die Kardiomyozyten-ähnliche Eigenschaft der spontan schlagenden Zellen. Schließlich wurden die aus der Mausaorta isolierten Zellen Fluoreszenz-markiert und dann in das kardiale Feld des sich entwickelnden Hühnerembryos (am fünften Tag der Entwicklung) implantiert. Zwei Tage später wurden die Herzen entnommen. Immunfärbungen zeigten, dass ein Teil der implantierten Zellen auch unter diesen in vivo-Bedingungen für α-sarkomeres Actinin positiv wurde und somit einen kardiomyozytären Phänotyp aufwies. KW - vessel wall resident stem cells KW - cardiomyocytes KW - Herzmuskelzelle KW - Stammzelle Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146046 N1 - My PhD research work has been published in Circ Res. 2018 Aug 31;123(6):686-699. ER - TY - JOUR A1 - Mayer, Alexander E. A1 - Löffler, Mona C. A1 - Loza Valdés, Angel E. A1 - Schmitz, Werner A1 - El-Merahbi, Rabih A1 - Trujillo-Viera, Jonathan A1 - Erk, Manuela A1 - Zhang, Thianzhou A1 - Braun, Ursula A1 - Heikenwalder, Mathias A1 - Leitges, Michael A1 - Schulze, Almut A1 - Sumara, Grzegorz T1 - The kinase PKD3 provides negative feedback on cholesterol and triglyceride synthesis by suppressing insulin signaling JF - Science Signaling N2 - Hepatic activation of protein kinase C (PKC) isoforms by diacylglycerol (DAG) promotes insulin resistance and contributes to the development of type 2 diabetes (T2D). The closely related protein kinase D (PKD) isoforms act as effectors for DAG and PKC. Here, we showed that PKD3 was the predominant PKD isoform expressed in hepatocytes and was activated by lipid overload. PKD3 suppressed the activity of downstream insulin effectors including the kinase AKT and mechanistic target of rapamycin complex 1 and 2 (mTORC1 and mTORC2). Hepatic deletion of PKD3 in mice improved insulin-induced glucose tolerance. However, increased insulin signaling in the absence of PKD3 promoted lipogenesis mediated by SREBP (sterol regulatory element-binding protein) and consequently increased triglyceride and cholesterol content in the livers of PKD3-deficient mice fed a high-fat diet. Conversely, hepatic-specific overexpression of a constitutively active PKD3 mutant suppressed insulin-induced signaling and caused insulin resistance. Our results indicate that PKD3 provides feedback on hepatic lipid production and suppresses insulin signaling. Therefore, manipulation of PKD3 activity could be used to decrease hepatic lipid content or improve hepatic insulin sensitivity. KW - Protein kinase D3 (PKD3) KW - cholesterol KW - diacylglycerol (DAG) KW - liver KW - metabolism Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-250025 ET - accepted manuscript ER - TY - JOUR A1 - Matos, Isa A1 - Machado, Miguel P. A1 - Schartl, Manfred A1 - Coelho, Maria Manuela T1 - Allele-specific expression variation at different ploidy levels in Squalius alburnoides JF - Scientific Reports N2 - Allopolyploid plants are long known to be subject to a homoeolog expression bias of varying degree. The same phenomenon was only much later suspected to occur also in animals based on studies of single selected genes in an allopolyploid vertebrate, the Iberian fish Squalius alburnoides. Consequently, this species became a good model for understanding the evolution of gene expression regulation in polyploid vertebrates. Here, we analyzed for the first time genome-wide allele-specific expression data from diploid and triploid hybrids of S. alburnoides and compared homoeolog expression profiles of adult livers and of juveniles. Co-expression of alleles from both parental genomic types was observed for the majority of genes, but with marked homoeolog expression bias, suggesting homoeolog specific reshaping of expression level patterns in hybrids. Complete silencing of one allele was also observed irrespective of ploidy level, but not transcriptome wide as previously speculated. Instead, it was found only in a restricted number of genes, particularly ones with functions related to mitochondria and ribosomes. This leads us to hypothesize that allelic silencing may be a way to overcome intergenomic gene expression interaction conflicts, and that homoeolog expression bias may be an important mechanism in the achievement of sustainable genomic interactions, mandatory to the success of allopolyploid systems, as in S. alburnoides. KW - Gene expression analysis KW - Transcription KW - Transcriptomic Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200910 VL - 9 ER - TY - JOUR A1 - Mateos, Mariana A1 - Kang, Du A1 - Klopp, Christophe A1 - Parrinello, Hugues A1 - García-Olazábal, Mateo A1 - Schumer, Molly A1 - Jue, Nathaniel K. A1 - Guiguen, Yann A1 - Schartl, Manfred T1 - Draft genome assembly and annotation of the Gila Topminnow Poeciliopsis occidentalis JF - Frontiers in Ecology and Evolution N2 - No abstract available. KW - genome assembly KW - genome annotation KW - transposable elements KW - topminnow KW - mitochondrial genome Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-190339 SN - 2296-701X VL - 7 IS - 404 ER - TY - JOUR A1 - Maierhofer, Anna A1 - Flunkert, Julia A1 - Oshima, Junko A1 - Martin, George M. A1 - Poot, Martin A1 - Nanda, Indrajit A1 - Dittrich, Marcus A1 - Müller, Tobias A1 - Haaf, Thomas T1 - Epigenetic signatures of Werner syndrome occur early in life and are distinct from normal epigenetic aging processes JF - Aging Cell N2 - Werner Syndrome (WS) is an adult‐onset segmental progeroid syndrome. Bisulfite pyrosequencing of repetitive DNA families revealed comparable blood DNA methylation levels between classical (18 WRN‐mutant) or atypical WS (3 LMNA‐mutant and 3 POLD1‐mutant) patients and age‐ and sex‐matched controls. WS was not associated with either age‐related accelerated global losses of ALU, LINE1, and α‐satellite DNA methylations or gains of rDNA methylation. Single CpG methylation was analyzed with Infinium MethylationEPIC arrays. In a correspondence analysis, atypical WS samples clustered together with the controls and were clearly separated from classical WS, consistent with distinct epigenetic pathologies. In classical WS, we identified 659 differentially methylated regions (DMRs) comprising 3,656 CpG sites and 613 RefSeq genes. The top DMR was located in the HOXA4 promoter. Additional DMR genes included LMNA, POLD1, and 132 genes which have been reported to be differentially expressed in WRN‐mutant/depleted cells. DMRs were enriched in genes with molecular functions linked to transcription factor activity and sequence‐specific DNA binding to promoters transcribed by RNA polymerase II. We propose that transcriptional misregulation of downstream genes by the absence of WRN protein contributes to the variable premature aging phenotypes of WS. There were no CpG sites showing significant differences in DNA methylation changes with age between WS patients and controls. Genes with both WS‐ and age‐related methylation changes exhibited a constant offset of methylation between WRN‐mutant patients and controls across the entire analyzed age range. WS‐specific epigenetic signatures occur early in life and do not simply reflect an acceleration of normal epigenetic aging processes. KW - (classical and atypical) Werner syndrome KW - bisulfite pyrosequencing KW - methylation array KW - premature aging KW - segmental progeria KW - transcription deficiency Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202733 VL - 18 ER - TY - JOUR A1 - Lyutova, Radostina A1 - Selcho, Mareike A1 - Pfeuffer, Maximilian A1 - Segebarth, Dennis A1 - Habenstein, Jens A1 - Rohwedder, Astrid A1 - Frantzmann, Felix A1 - Wegener, Christian A1 - Thum, Andreas S. A1 - Pauls, Dennis T1 - Reward signaling in a recurrent circuit of dopaminergic neurons and peptidergic Kenyon cells JF - Nature Communications N2 - Dopaminergic neurons in the brain of the Drosophila larva play a key role in mediating reward information to the mushroom bodies during appetitive olfactory learning and memory. Using optogenetic activation of Kenyon cells we provide evidence that recurrent signaling exists between Kenyon cells and dopaminergic neurons of the primary protocerebral anterior (pPAM) cluster. Optogenetic activation of Kenyon cells paired with odor stimulation is sufficient to induce appetitive memory. Simultaneous impairment of the dopaminergic pPAM neurons abolishes appetitive memory expression. Thus, we argue that dopaminergic pPAM neurons mediate reward information to the Kenyon cells, and in turn receive feedback from Kenyon cells. We further show that this feedback signaling is dependent on short neuropeptide F, but not on acetylcholine known to be important for odor-shock memories in adult flies. Our data suggest that recurrent signaling routes within the larval mushroom body circuitry may represent a mechanism subserving memory stabilization. KW - Learning and memory KW - Neural circuits Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202161 VL - 10 ER - TY - JOUR A1 - Liu, Ruiqi A1 - Kinoshita, Masato A1 - Adolfi, Mateus C. A1 - Schartl, Manfred T1 - Analysis of the role of the Mc4r system in development, growth, and puberty of medaka JF - Frontiers in Endocrinology N2 - In mammals the melanocortin 4 receptor (Mc4r) signaling system has been mainly associated with the regulation of appetite and energy homeostasis. In fish of the genus Xiphophorus (platyfish and swordtails) puberty onset is genetically determined by a single locus, which encodes the mc4r. Wild populations of Xiphophorus are polymorphic for early and late-maturing individuals. Copy number variation of different mc4r alleles is responsible for the difference in puberty onset. To answer whether this is a special adaptation of the Mc4r signaling system in the lineage of Xiphophorus or a more widely conserved mechanism in teleosts, we studied the role of Mc4r in reproductive biology of medaka (Oryzias latipes), a close relative to Xiphophorus and a well-established model to study gonadal development. To understand the potential role of Mc4r in medaka, we characterized the major features of the Mc4r signaling system (mc4r, mrap2, pomc, agrp1). In medaka, all these genes are expressed before hatching. In adults, they are mainly expressed in the brain. The transcript of the receptor accessory protein mrap2 co-localizes with mc4r in the hypothalamus in adult brains indicating a conserved function of modulating Mc4r signaling. Comparing growth and puberty between wild-type and mc4r knockout medaka revealed that absence of Mc4r does not change puberty timing but significantly delays hatching. Embryonic development of knockout animals is retarded compared to wild-types. In conclusion, the Mc4r system in medaka is involved in regulation of growth rather than puberty. KW - medaka KW - Mc4r KW - knockout KW - puberty KW - growth Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201472 VL - 10 ER - TY - JOUR A1 - Liedtke, Daniel A1 - Orth, Melanie A1 - Meissler, Michelle A1 - Geuer, Sinje A1 - Knaup, Sabine A1 - Köblitz, Isabell A1 - Klopocki, Eva T1 - ECM alterations in fndc3a (fibronectin domain containing protein 3A) deficient zebrafish cause temporal fin development and regeneration defects JF - Scientific Reports N2 - Fin development and regeneration are complex biological processes that are highly relevant in teleost fish. They share genetic factors, signaling pathways and cellular properties to coordinate formation of regularly shaped extremities. Especially correct tissue structure defined by extracellular matrix (ECM) formation is essential. Gene expression and protein localization studies demonstrated expression of fndc3a (fibronectin domain containing protein 3a) in both developing and regenerating caudal fins of zebrafish (Danio rerio). We established a hypomorphic fndc3a mutant line (fndc3a\(^{wue1/wue1}\)) via CRISPR/Cas9, exhibiting phenotypic malformations and changed gene expression patterns during early stages of median fin fold development. These developmental effects are mostly temporary, but result in a fraction of adults with permanent tail fin deformations. In addition, caudal fin regeneration in adult fndc3a\(^{wue1/wue1}\) mutants is hampered by interference with actinotrichia formation and epidermal cell organization. Investigation of the ECM implies that loss of epidermal tissue structure is a common cause for both of the observed defects. Our results thereby provide a molecular link between these developmental processes and foreshadow Fndc3a as a novel temporal regulator of epidermal cell properties during extremity development and regeneration in zebrafish. KW - Extracellular matrix KW - Limb development KW - Self-renewal Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202141 VL - 9 ER - TY - THES A1 - Letschert, Sebastian T1 - Quantitative Analysis of Membrane Components using Super-Resolution Microscopy T1 - Quantitative Analyse von Membrankomponenten mittels hochauflösender Fluoreszenzmikroskopie N2 - The plasma membrane is one of the most thoroughly studied and at the same time most complex, diverse, and least understood cellular structures. Its function is determined by the molecular composition as well as the spatial arrangement of its components. Even after decades of extensive membrane research and the proposal of dozens of models and theories, the structural organization of plasma membranes remains largely unknown. Modern imaging tools such as super-resolution fluorescence microscopy are one of the most efficient techniques in life sciences and are widely used to study the spatial arrangement and quantitative behavior of biomolecules in fixed and living cells. In this work, direct stochastic optical reconstruction microscopy (dSTORM) was used to investigate the structural distribution of mem-brane components with virtually molecular resolution. Key issues are different preparation and staining strategies for membrane imaging as well as localization-based quantitative analyses of membrane molecules. An essential precondition for the spatial and quantitative analysis of membrane components is the prevention of photoswitching artifacts in reconstructed localization microscopy images. Therefore, the impact of irradiation intensity, label density and photoswitching behavior on the distribution of plasma membrane and mitochondrial membrane proteins in dSTORM images was investigated. It is demonstrated that the combination of densely labeled plasma membranes and inappropriate photoswitching rates induces artificial membrane clusters. Moreover, inhomogeneous localization distributions induced by projections of three-dimensional membrane structures such as microvilli and vesicles are prone to generate artifacts in images of biological membranes. Alternative imaging techniques and ways to prevent artifacts in single-molecule localization microscopy are presented and extensively discussed. Another central topic addresses the spatial organization of glycosylated components covering the cell membrane. It is shown that a bioorthogonal chemical reporter system consisting of modified monosaccharide precursors and organic fluorophores can be used for specific labeling of membrane-associated glycoproteins and –lipids. The distribution of glycans was visualized by dSTORM showing a homogeneous molecule distribution on different mammalian cell lines without the presence of clusters. An absolute number of around five million glycans per cell was estimated and the results show that the combination of metabolic labeling, click chemistry, and single-molecule localization microscopy can be efficiently used to study cell surface glycoconjugates. In a third project, dSTORM was performed to investigate low-expressing receptors on cancer cells which can act as targets in personalized immunotherapy. Primary multiple myeloma cells derived from the bone marrow of several patients were analyzed for CD19 expression as potential target for chimeric antigen receptor (CAR)-modified T cells. Depending on the patient, 60–1,600 CD19 molecules per cell were quantified and functional in vitro tests demonstrate that the threshold for CD19 CAR T recognition is below 100 CD19 molecules per target cell. Results are compared with flow cytometry data, and the important roles of efficient labeling and appropriate control experiments are discussed. N2 - Die Plasmamembran gehört zu den am meisten untersuchten, gleichzeitig aber auch zu den komplexesten, vielfältigsten und am wenigsten verstandenen biologischen Strukturen. Ihre Funktion wird nicht nur durch die molekulare Zusammensetzung bestimmt, sondern auch durch die räumliche Anordnung ihrer Bestandteile. Selbst nach Jahrzehnten intensiver Forschung und der Veröffentlichung dutzender Membranmodelle und Theorien bleibt die genaue strukturelle Organisation der Plasmamembran ein Rätsel. Moderne Bildgebungsverfahren wie etwa die hochauflösende Fluoreszenzmikroskopie gehören mittlerweile zu den effizientesten Techniken der Lebenswissenschaften und werden immer öfter verwendet, um die räumliche Anordnung als auch die Anzahl von Biomolekülen in fixierten und lebenden Zellen zu studieren. Im Rahmen dieser Arbeit wurde die hochauflösende Mikroskopie-Methode dSTORM (direct stochastic optical reconstruction microscopy) angewendet, um die räumliche Verteilung von Membranmolekülen mit annähernd molekularer Auflösung zu untersuchen. Schwerpunkte dieser Arbeit sind dabei verschiedene Präparations- und Färbemethoden für die mikroskopische Untersuchung von Zellmembranen sowie lokalisationsbasierte quantitative Analysemethoden von Membranmolekülen. Eine Voraussetzung für die räumliche als auch quantitative Analyse von Membranmolekülen ist die Vermeidung von Photoschalt-Artefakten in rekonstruierten Lokalisationsmikroskopie-Bildern. Um dies genauer zu demonstrieren, wurden die Auswirkungen von Anregungsintensität, Markierungsdichte und verändertem Photoschalten auf die räumliche Verteilung von Proteinen der Plasma- und Mitochondrienmembran in dSTORM-Bildern analysiert. Es wird gezeigt, dass eine dicht markierte Plasmamembran in Kombination mit ungeeigneten Photoschaltraten zu artifiziellen Clustern in der Membran führt. Es sind vor Allem oft die Projektionen dreidimensionaler Membranstrukturen wie etwa Mikrovilli und Vesikel dafür verantwortlich, dass lokale Unterschiede in der Lokalisationsdichte entstehen, wodurch unter Umständen Bildartefakte generiert werden können. Darüber hinaus werden alternative Mikroskopie-Methoden und Möglichkeiten, Artefakte in Einzelmolekül-Lokalisationsmikroskopie-Bildern zu verhindern, präsentiert und ausführlich diskutiert. Ein weiteres zentrales Thema dieser Arbeit ist die räumliche Anordnung von glykosylierten Membranmolekülen. Es wird demonstriert, wie ein bioorthogonales chemisches Reportersystem bestehend aus modifizierten Monosacchariden und organischen Fluorophoren für die spezifische Markierung von Membran-assoziierten Glykoproteinen und –lipiden eingesetzt werden kann. Mittels dSTORM wird gezeigt, dass die Verteilung von Glykanen in der Plasmamembran unterschiedlicher Zelllinien homogen und frei von Clustern ist. Des Weiteren zeigt eine quantitative Analyse, dass sich in etwa fünf Millionen Glykane auf einer einzigen Zelle befinden. Die Ergebnisse demonstrieren, dass die Kombination aus metabolisch markierten Zielmolekülen, Click-Chemie und Einzelmolekül-Lokalisationsmikroskopie effizient genutzt werden kann, um Glykokonjugate auf Zelloberflächen zu untersuchen. In einem dritten Projekt wurde dSTORM zur Untersuchung von Rezeptormolekülen auf Krebszellen verwendet. Die Expression dieser Oberflächenproteine ist so gering, dass sich nur wenige Moleküle auf einer Zelle befinden, die jedoch als Zielmoleküle in der personalisierten Immuntherapie dienen könnten. Dafür wurden primäre Tumorzellen aus dem Knochenmark von Patienten, die am Multiplen Myelom erkrankt sind, auf die Expression des CD19-Oberflächenproteins als potentielles Ziel für CAR-modifizierte T-Zellen (chimeric antigen receptor) untersucht. Es wird gezeigt, dass sich, abhängig vom untersuchten Patienten, auf einer Zelle 60 bis 1600 CD19-Moleküle befinden. Funktionale in-vitro-Experimente demonstrieren, dass weniger als 100 CD19 Moleküle ausreichen, um CD19-CAR-T-Zellen zu aktivieren. Diese Ergebnisse werden mit Durchflusszytometrie-Daten verglichen und die wichtige Rolle von Lebendzellfärbung und geeigneten Kontrollexperimenten wird diskutiert. KW - Fluoreszenzmikroskopie KW - Quantifizierung KW - Polysaccharide KW - Immuntherapie KW - Antigen CD19 KW - super-resolution fluorescence microscopy KW - dSTORM KW - click chemistry KW - plasma membrane organization KW - localization microscopy KW - artifacts KW - Hochauflösende Fluoreszenzmikroskopie KW - Plasmamembranorganisation KW - Click Chemie KW - Glykane Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-162139 ER - TY - JOUR A1 - Lechermeier, Carina G. A1 - Zimmer, Frederic A1 - Lüffe, Teresa M. A1 - Lesch, Klaus-Peter A1 - Romanos, Marcel A1 - Lillesaar, Christina A1 - Drepper, Carsten T1 - Transcript analysis of zebrafish GLUT3 genes, slc2a3a and slc2a3b, define overlapping as well as distinct expression domains in the zebrafish (Danio rerio) central nervous system JF - Frontiers in Molecular Neuroscience N2 - The transport of glucose across the cell plasma membrane is vital to most mammalian cells. The glucose transporter (GLUT; also called SLC2A) family of transmembrane solute carriers is responsible for this function in vivo. GLUT proteins encompass 14 different isoforms in humans with different cell type-specific expression patterns and activities. Central to glucose utilization and delivery in the brain is the neuronally expressed GLUT3. Recent research has shown an involvement of GLUT3 genetic variation or altered expression in several different brain disorders, including Huntington’s and Alzheimer’s diseases. Furthermore, GLUT3 was identified as a potential risk gene for multiple psychiatric disorders. To study the role of GLUT3 in brain function and disease a more detailed knowledge of its expression in model organisms is needed. Zebrafish (Danio rerio) has in recent years gained popularity as a model organism for brain research and is now well-established for modeling psychiatric disorders. Here, we have analyzed the sequence of GLUT3 orthologs and identified two paralogous genes in the zebrafish, slc2a3a and slc2a3b. Interestingly, the Glut3b protein sequence contains a unique stretch of amino acids, which may be important for functional regulation. The slc2a3a transcript is detectable in the central nervous system including distinct cellular populations in telencephalon, diencephalon, mesencephalon and rhombencephalon at embryonic and larval stages. Conversely, the slc2a3b transcript shows a rather diffuse expression pattern at different embryonic stages and brain regions. Expression of slc2a3a is maintained in the adult brain and is found in the telencephalon, diencephalon, mesencephalon, cerebellum and medulla oblongata. The slc2a3b transcripts are present in overlapping as well as distinct regions compared to slc2a3a. Double in situ hybridizations were used to demonstrate that slc2a3a is expressed by some GABAergic neurons at embryonic stages. This detailed description of zebrafish slc2a3a and slc2a3b expression at developmental and adult stages paves the way for further investigations of normal GLUT3 function and its role in brain disorders. KW - glucose transporter KW - nervous system KW - brain disorders KW - psychiatric disorders KW - brain development KW - GABA KW - GAD1 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201797 VL - 12 IS - 199 ER - TY - JOUR A1 - Kühnisch, Jirko A1 - Herbst, Christopher A1 - Al‐Wakeel‐Marquard, Nadya A1 - Dartsch, Josephine A1 - Holtgrewe, Manuel A1 - Baban, Anwar A1 - Mearini, Giulia A1 - Hardt, Juliane A1 - Kolokotronis, Konstantinos A1 - Gerull, Brenda A1 - Carrier, Lucie A1 - Beule, Dieter A1 - Schubert, Stephan A1 - Messroghli, Daniel A1 - Degener, Franziska A1 - Berger, Felix A1 - Klaassen, Sabine T1 - Targeted panel sequencing in pediatric primary cardiomyopathy supports a critical role of TNNI3 JF - Clinical Genetics N2 - The underlying genetic mechanisms and early pathological events of children with primary cardiomyopathy (CMP) are insufficiently characterized. In this study, we aimed to characterize the mutational spectrum of primary CMP in a large cohort of patients ≤18 years referred to a tertiary center. Eighty unrelated index patients with pediatric primary CMP underwent genetic testing with a panel‐based next‐generation sequencing approach of 89 genes. At least one pathogenic or probably pathogenic variant was identified in 30/80 (38%) index patients. In all CMP subgroups, patients carried most frequently variants of interest in sarcomere genes suggesting them as a major contributor in pediatric primary CMP. In MYH7, MYBPC3, and TNNI3, we identified 18 pathogenic/probably pathogenic variants (MYH7 n = 7, MYBPC3 n = 6, TNNI3 n = 5, including one homozygous (TNNI3 c.24+2T>A) truncating variant. Protein and transcript level analysis on heart biopsies from individuals with homozygous mutation of TNNI3 revealed that the TNNI3 protein is absent and associated with upregulation of the fetal isoform TNNI1. The present study further supports the clinical importance of sarcomeric mutation—not only in adult—but also in pediatric primary CMP. TNNI3 is the third most important disease gene in this cohort and complete loss of TNNI3 leads to severe pediatric CMP. KW - cardiomyopathy KW - genetics KW - pediatrics KW - sarcomere KW - TNNI3 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-213958 VL - 96 IS - 6 SP - 549 EP - 559 ER - TY - JOUR A1 - Kunz, Tobias C. A1 - Kozjak-Pavlovic, Vera T1 - Diverse facets of sphingolipid involvement in bacterial infections JF - Frontiers in Cell and Developmental Biology N2 - Sphingolipids are constituents of the cell membrane that perform various tasks as structural elements and signaling molecules, in addition to regulating many important cellular processes, such as apoptosis and autophagy. In recent years, it has become increasingly clear that sphingolipids and sphingolipid signaling play a vital role in infection processes. In many cases the attachment and uptake of pathogenic bacteria, as well as bacterial development and survival within the host cell depend on sphingolipids. In addition, sphingolipids can serve as antimicrobials, inhibiting bacterial growth and formation of biofilms. This review will give an overview of our current information about these various aspects of sphingolipid involvement in bacterial infections. KW - infection KW - pathogenic bacteria KW - sphingolipids KW - ceramide KW - autophagy Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201757 VL - 7 IS - 203 ER - TY - JOUR A1 - Kunz, Tobias C. A1 - Götz, Ralph A1 - Sauer, Markus A1 - Rudel, Thomas T1 - Detection of chlamydia developmental forms and secreted effectors by expansion microscopy JF - Frontiers in Cellular and Infection Microbiology N2 - Expansion microscopy (ExM) is a novel tool to improve the resolution of fluorescence-based microscopy that has not yet been used to visualize intracellular pathogens. Here we show the expansion of the intracellular pathogen Chlamydia trachomatis, enabling to differentiate its two distinct forms, catabolic active reticulate bodies (RB) and infectious elementary bodies (EB), on a conventional confocal microscope. We show that ExM enables the possibility to precisely locate chlamydial effector proteins, such as CPAF or Cdu1, within and outside of the chlamydial inclusion. Thus, we claim that ExM offers the possibility to address a broad range of questions and may be useful for further research on various intracellular pathogens. KW - expansion microscopy KW - chlamydia KW - secreted effectors KW - developmental forms KW - superresolution KW - imaging Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195716 SN - 2235-2988 VL - 9 IS - 276 ER - TY - JOUR A1 - Krebs, Markus A1 - Behrmann, Christoph A1 - Kalogirou, Charis A1 - Sokolakis, Ioannis A1 - Kneitz, Susanne A1 - Kruithof-de Julio, Marianna A1 - Zoni, Eugenio A1 - Rech, Anne A1 - Schilling, Bastian A1 - Kübler, Hubert A1 - Spahn, Martin A1 - Kneitz, Burkhard T1 - miR-221 Augments TRAIL-mediated apoptosis in prostate cancer cells by inducing endogenous TRAIL expression and targeting the functional repressors SOCS3 and PIK3R1 JF - BioMed Research International N2 - miR-221 is regarded as an oncogene in many malignancies, and miR-221-mediated resistance towards TRAIL was one of the first oncogenic roles shown for this small noncoding RNA. In contrast, miR-221 is downregulated in prostate cancer (PCa), thereby implying a tumour suppressive function. By using proliferation and apoptosis assays, we show a novel feature of miR-221 in PCa cells: instead of inducing TRAIL resistance, miR-221 sensitized cells towards TRAIL-induced proliferation inhibition and apoptosis induction. Partially responsible for this effect was the interferon-mediated gene signature, which among other things contained an endogenous overexpression of the TRAIL encoding gene TNFSF10. This TRAIL-friendly environment was provoked by downregulation of the established miR-221 target gene SOCS3. Moreover, we introduced PIK3R1 as a target gene of miR-221 in PCa cells. Proliferation assays showed that siRNA-mediated downregulation of SOCS3 and PIK3R1 mimicked the effect of miR-221 on TRAIL sensitivity. Finally, Western blotting experiments confirmed lower amounts of phospho-Akt after siRNA-mediated downregulation of PIK3R1 in PC3 cells. Our results further support the tumour suppressing role of miR-221 in PCa, since it sensitises PCa cells towards TRAIL by regulating the expression of the oncogenes SOCS3 and PIK3R1. Given the TRAIL-inhibiting effect of miR-221 in various cancer entities, our results suggest that the influence of miR-221 on TRAIL-mediated apoptosis is highly context- and entity-dependent. KW - Cancer Cell Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202480 VL - 2019 ER - TY - JOUR A1 - Khayenko, Vladimir A1 - Maric, Hans Michael T1 - Targeting GABA\(_A\)R-associated proteins: new modulators, labels and concepts JF - Frontiers in Molecular Neuroscience N2 - γ-aminobutyric acid type A receptors (GABA\(_A\)Rs) are the major mediators of synaptic inhibition in the brain. Aberrant GABA\(_A\)R activity or regulation is observed in various neurodevelopmental disorders, neurodegenerative diseases and mental illnesses, including epilepsy, Alzheimer’s and schizophrenia. Benzodiazepines, anesthetics and other pharmaceutics targeting these receptors find broad clinical use, but their inherent lack of receptor subtype specificity causes unavoidable side effects, raising a need for new or adjuvant medications. In this review article, we introduce a new strategy to modulate GABAeric signaling: targeting the intracellular protein interactors of GABA\(_A\)Rs. Of special interest are scaffolding, anchoring and supporting proteins that display high GABA\(_A\)R subtype specificity. Recent efforts to target gephyrin, the major intracellular integrator of GABAergic signaling, confirm that GABA\(_A\)R-associated proteins can be successfully targeted through diverse molecules, including recombinant proteins, intrabodies, peptide-based probes and small molecules. Small-molecule artemisinins and peptides derived from endogenous interactors, that specifically target the universal receptor binding site of gephyrin, acutely affect synaptic GABA\(_A\)R numbers and clustering, modifying neuronal transmission. Interference with GABA\(_A\)R trafficking provides another way to modulate inhibitory signaling. Peptides blocking the binding site of GABA\(_A\)R to AP2 increase the surface concentration of GABA\(_A\)R clusters and enhance GABAergic signaling. Engineering of gephyrin binding peptides delivered superior means to interrogate neuronal structure and function. Fluorescent peptides, designed from gephyrin binders, enable live neuronal staining and visualization of gephyrin in the post synaptic sites with submicron resolution. We anticipate that in the future, novel fluorescent probes, with improved size and binding efficiency, may find wide application in super resolution microscopy studies, enlightening the nanoscale architecture of the inhibitory synapse. Broader studies on GABA\(_A\)R accessory proteins and the identification of the exact molecular binding interfaces and affinities will advance the development of novel GABA\(_A\)R modulators and following in vivo studies will reveal their clinical potential as adjuvant or stand-alone drugs. KW - GABAA receptors KW - gephyrin KW - collybistin KW - protein-protein interaction (PPI) KW - super resolution microscopy KW - fluorescent probes KW - dimeric peptide KW - peptide inhibitor design Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201876 VL - 12 IS - 162 ER - TY - JOUR A1 - Kehrberger, Sandra A1 - Holzschuh, Andrea T1 - How does timing of flowering affect competition for pollinators, flower visitation and seed set in an early spring grassland plant? JF - Scientific Reports N2 - Knowledge on how the timing of flowering is related to plant fitness and species interactions is crucial to understand consequences of phenological shifts as they occur under climate change. Early flowering plants may face advantages of low competition for pollinators and disadvantages of low pollinator abundances and unfavourable weather conditions. However, it is unknown how this trade-off changes over the season and how the timing affects reproductive success. On eight grasslands we recorded intra-seasonal changes in pollinators, co-flowering plants, weather conditions, flower visitation rates, floral longevity and seed set of Pulsatilla vulgaris. Although bee abundances and the number of pollinator-suitable hours were low at the beginning of the season, early flowers of P. vulgaris received higher flower visitation rates and estimated total number of bee visits than later flowers, which was positively related to seed set. Flower visitation rates decreased over time and with increasing number of co-flowering plants, which competed with P. vulgaris for pollinators. Low interspecific competition for pollinators seems to be a major driver for early flowering dates. Thus, non-synchronous temporal shifts of co-flowering plants as they may occur under climate warming can be expected to strongly affect plant-pollinator interactions and the fitness of the involved plants. KW - ecology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202549 VL - 9 ER -