TY - JOUR A1 - Wolf, Beat A1 - Kuonen, Pierre A1 - Dandekar, Thomas A1 - Atlan, David T1 - DNAseq workflow in a diagnostic context and an example of a user friendly implementation JF - BioMed Research International N2 - Over recent years next generation sequencing (NGS) technologies evolved from costly tools used by very few, to a much more accessible and economically viable technology. Through this recently gained popularity, its use-cases expanded from research environments into clinical settings. But the technical know-how and infrastructure required to analyze the data remain an obstacle for a wider adoption of this technology, especially in smaller laboratories. We present GensearchNGS, a commercial DNAseq software suite distributed by Phenosystems SA. The focus of GensearchNGS is the optimal usage of already existing infrastructure, while keeping its use simple. This is achieved through the integration of existing tools in a comprehensive software environment, as well as custom algorithms developed with the restrictions of limited infrastructures in mind. This includes the possibility to connect multiple computers to speed up computing intensive parts of the analysis such as sequence alignments. We present a typical DNAseq workflow for NGS data analysis and the approach GensearchNGS takes to implement it. The presented workflow goes from raw data quality control to the final variant report. This includes features such as gene panels and the integration of online databases, like Ensembl for annotations or Cafe Variome for variant sharing. KW - next generation sequencing KW - genome browser KW - mutation KW - algorithm KW - database KW - format KW - discovery KW - exome KW - variants KW - alignment Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144527 IS - 403497 ER - TY - JOUR A1 - Weisschuh, Nicole A1 - Mayer, Anja K. A1 - Strom, Tim M. A1 - Kohl, Susanne A1 - Glöckle, Nicola A1 - Schubach, Max A1 - Andreasson, Sten A1 - Bernd, Antje A1 - Birch, David G. A1 - Hamel, Christian P. A1 - Heckenlively, John R. A1 - Jacobson, Samuel G. A1 - Kamme, Christina A1 - Kellner, Ulrich A1 - Kunstmann, Erdmute A1 - Maffei, Pietro A1 - Reiff, Charlotte M. A1 - Rohrschneider, Klaus A1 - Rosenberg, Thomas A1 - Rudolph, Günther A1 - Vámos, Rita A1 - Varsányi, Balázs A1 - Weleber, Richard G. A1 - Wissinger, Bernd T1 - Mutation Detection in Patients with Retinal Dystrophies Using Targeted Next Generation Sequencing JF - PLoS ONE N2 - Retinal dystrophies (RD) constitute a group of blinding diseases that are characterized by clinical variability and pronounced genetic heterogeneity. The different nonsyndromic and syndromic forms of RD can be attributed to mutations in more than 200 genes. Consequently, next generation sequencing (NGS) technologies are among the most promising approaches to identify mutations in RD. We screened a large cohort of patients comprising 89 independent cases and families with various subforms of RD applying different NGS platforms. While mutation screening in 50 cases was performed using a RD gene capture panel, 47 cases were analyzed using whole exome sequencing. One family was analyzed using whole genome sequencing. A detection rate of 61% was achieved including mutations in 34 known and two novel RD genes. A total of 69 distinct mutations were identified, including 39 novel mutations. Notably, genetic findings in several families were not consistent with the initial clinical diagnosis. Clinical reassessment resulted in refinement of the clinical diagnosis in some of these families and confirmed the broad clinical spectrum associated with mutations in RD genes. KW - mutation detection KW - retinal dystrophies KW - next generation sequencing Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-167398 VL - 11 IS - 1 ER - TY - THES A1 - Terhoeven, Niklas T1 - Genomics of carnivorous Droseraceae and Transcriptomics of Tobacco pollination as case studies for neofunctionalisation of plant defence mechanisms T1 - Genomik karnivorer Droseraceae und Transkriptomik der Befruchtung von Tabak als Fallstudien zur Umfunktionierung pflanzlicher Verteidigungsmechanismen N2 - Plants have evolved many mechanisms to defend against herbivores and pathogens. In many cases, these mechanisms took other duties. One example of such a neofunction- alisation would be carnivory. Carnivory evolved from the defence against herbivores. Instead of repelling the predator with a bitter taste, the plant kills it and absorbs its nutrients. A second example can be found in the pollination process. Many of the genes involved here were originally part of defence mechanisms against pathogens. In this thesis, I study these two examples on a genomic and transcriptomic level. The first project, Genomics of carnivorous Droseraceae, aims at obtaining annotated genome sequences of three carnivorous plants. I assembled the genome of Aldrovanda vesiculosa, annotated those of A. vesiculosa, Drosera spatulata and Dionaea muscipula and com- pared their genomic contents. Because of the high repetitiveness of the D. muscipula genome, I also developed reper, an assembly free method for detection, classification and quantification of repeats. With that method, we were able to study the repeats without the need of incorporating them into a genome assembly. The second large project investigates the role of DEFL (defensin-like) genes in pollen tube guidance in tobacco flowers. We sequenced the transcriptome of the SR1 strain in different stages of the pollination process. I assembled and annotated the transcriptome and searched for differentially expressed genes. We also used a method based on Hidden- Markov-Models (HMM) to find DEFLs, which I then analysed regarding their expression during the different stages of fertilisation. In total, this thesis results in annotated genome assemblies of three carnivorous Droser- aceae, which are used as a foundation for various analyses investigating the roots of car- nivory, insights into the role of DEFLs on a transcriptomic level in tobacco pollination and a new method for repeat identification in complex genomes. N2 - Im Laufe der Evolution haben Pflanzen viele Methoden entwickelt, um sich gegen Fress- feinde und Pathogene zu verteidgen. Viele dieser Methoden wurden im Laufe der Zeit umfunktioniert. Ein Beispiel hierfür ist die Karnivorie, welche aus der Verteidigung ge- gen Fressfeinde entstanden ist. Anstelle einen Angreifer durch bitteren Geschmack zu vertreiben, tötet die Pflanze das Tier und nimmt seine Nährstoffe auf. Ein weiteres Bei- spiel ist der Bestäubungs- und Befruchtungsprozess. Viele der Gene, die hier involviert sind, stammen ursprünglich aus Mechanismen zur Verteidigung gegen Pathogene. In dieser Arbeit untersuche ich diese beiden Beispiele auf genomischer und transkrip- tomischer Ebene. Die Zielsetzung des ersten Projekts, Genomik von karnivoren Dro- seraceaen, ist es, assemblierte und annotierte Genome von drei karnivoren Pflanzen zu generieren. Ich habe dazu das Genom von Aldrovanda vesiculosa assembliert und dieses, sowie die Genome von Drosera spatulata und Dionaea muscipula annotiert und mit- einander verglichen. Aufgrund des hohen Anteils repetitiver Elemente im D. muscipula Genom habe ich reper, eine Methode zum Detektieren, Klassifizieren und Quantifizieren von Repeats, entwickelt. Mit dieser Methode ist es nun möglich, repetitive Elemente zu untersuchen, ohne diese in einem Genomassembly integrieren zu müssen. Das zweite große Projekt untersucht die Rolle von DEFL (defensin-like) Genen im Pollenschlauchwachstum in Tabakblüten. Dazu haben wir das Transkriptom der SR1 Variante zu verschiedenen Zeitpunkten im Befruchtungsprozess sequenziert. Ich habe dieses Transkriptom assembliert und annotiert und darin nach differentiell exprimierten Genen gesucht. Zudem haben wir mit einer auf Hidden Markov Modellen (HMM) ba- sierten Methode nach DEFL Genen gesucht und ich habe die Expression dieser in den verschiedenen Stadien untersucht. Zusammenfassend beinhalten die Ergebnisse dieser Thesis annotierte Genomassemb- lies von drei karnivoren Droseraceaen, Erkenntnisse über die Rolle von DEFL Genen bei der Befruchtung auf einer transkriptomischen Ebene und eine neue Software zur Analyse von repetitiven Elementen in komplexen Genomen. KW - Droseraceae KW - Genom KW - Nicotiana tabacum KW - Transkriptomanalyse KW - Repeats KW - genomics KW - carnivorous plants KW - next generation sequencing Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189712 ER - TY - JOUR A1 - Sickel, Wiebke A1 - Ankenbrand, Markus J. A1 - Grimmer, Gudrun A1 - Holzschuh, Andrea A1 - Härtel, Stephan A1 - Lanzen, Jonathan A1 - Steffan-Dewenter, Ingolf A1 - Keller, Alexander T1 - Increased efficiency in identifying mixed pollen samples by meta-barcoding with a dual-indexing approach JF - BMC Ecology N2 - Background Meta-barcoding of mixed pollen samples constitutes a suitable alternative to conventional pollen identification via light microscopy. Current approaches however have limitations in practicability due to low sample throughput and/or inefficient processing methods, e.g. separate steps for amplification and sample indexing. Results We thus developed a new primer-adapter design for high throughput sequencing with the Illumina technology that remedies these issues. It uses a dual-indexing strategy, where sample-specific combinations of forward and reverse identifiers attached to the barcode marker allow high sample throughput with a single sequencing run. It does not require further adapter ligation steps after amplification. We applied this protocol to 384 pollen samples collected by solitary bees and sequenced all samples together on a single Illumina MiSeq v2 flow cell. According to rarefaction curves, 2,000–3,000 high quality reads per sample were sufficient to assess the complete diversity of 95% of the samples. We were able to detect 650 different plant taxa in total, of which 95% were classified at the species level. Together with the laboratory protocol, we also present an update of the reference database used by the classifier software, which increases the total number of covered global plant species included in the database from 37,403 to 72,325 (93% increase). Conclusions This study thus offers improvements for the laboratory and bioinformatical workflow to existing approaches regarding data quantity and quality as well as processing effort and cost-effectiveness. Although only tested for pollen samples, it is furthermore applicable to other research questions requiring plant identification in mixed and challenging samples. KW - pollination ecology KW - next generation sequencing KW - ITS2 KW - illumina MiSeq platform KW - high throughput sequencing KW - DNA barcoding KW - NGS KW - osmia KW - palynolog Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125730 VL - 15 IS - 20 ER - TY - JOUR A1 - Semmler, Anna-Lena A1 - Sacconi, Sabrina A1 - Bach, J. Elisa A1 - Liebe, Claus A1 - Bürmann, Jan A1 - Kley, Rudolf A. A1 - Ferbert, Andreas A1 - Anderheiden, Roland A1 - Van den Bergh, Peter A1 - Martin, Jean-Jacques A1 - De Jonghe, Peter A1 - Neuen-Jacob, Eva A1 - Müller, Oliver A1 - Deschauer, Marcus A1 - Bergmann, Markus A1 - Schröder, J. Michael A1 - Vorgerd, Matthias A1 - Schulz, Jörg B. A1 - Weis, Joachim A1 - Kress, Wolfram A1 - Claeys, Kristl G. T1 - Unusual multisystemic involvement and a novel BAG3 mutation revealed by NGS screening in a large cohort of myofibrillar myopathies JF - Orphanet Journal of Rare Diseases N2 - Background: Myofibrillar myopathies (MFM) are a group of phenotypically and genetically heterogeneous neuromuscular disorders, which are characterized by protein aggregations in muscle fibres and can be associated with multisystemic involvement. Methods: We screened a large cohort of 38 index patients with MFM for mutations in the nine thus far known causative genes using Sanger and next generation sequencing (NGS). We studied the clinical and histopathological characteristics in 38 index patients and five additional relatives (n = 43) and particularly focused on the associated multisystemic symptoms. Results: We identified 14 heterozygous mutations (diagnostic yield of 37%), among them the novel p. Pro209Gln mutation in the BAG3 gene, which was associated with onset in adulthood, a mild phenotype and an axonal sensorimotor polyneuropathy, in the absence of giant axons at the nerve biopsy. We revealed several novel clinical phenotypes and unusual multisystemic presentations with previously described mutations: hearing impairment with a FLNC mutation, dysphonia with a mutation in DES and the first patient with a FLNC mutation presenting respiratory insufficiency as the initial symptom. Moreover, we described for the first time respiratory insufficiency occurring in a patient with the p. Gly154Ser mutation in CRYAB. Interestingly, we detected a polyneuropathy in 28% of the MFM patients, including a BAG3 and a MYOT case, and hearing impairment in 13%, including one patient with a FLNC mutation and two with mutations in the DES gene. In four index patients with a mutation in one of the MFM genes, typical histological findings were only identified at the ultrastructural level (29%). Conclusions: We conclude that extraskeletal symptoms frequently occur in MFM, particularly cardiac and respiratory involvement, polyneuropathy and/or deafness. BAG3 mutations should be considered even in cases with a mild phenotype or an adult onset. We identified a genetic defect in one of the known genes in less than half of the MFM patients, indicating that more causative genes are still to be found. Next generation sequencing techniques should be helpful in achieving this aim. KW - polyneuropathy KW - MFM KW - next generation sequencing KW - bcl-2 associated athanogene protein 3 KW - protein aggregation KW - hearing impairment KW - early respiratory-failure KW - myopathy KW - muscular-dystrophy KW - skeletal myopathy Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115623 SN - 1750-1172 N1 - Additional files are available here: http://www.ojrd.com/content/9/1/121/additional VL - 9 IS - 121 ER - TY - JOUR A1 - Schümann, Franziska Lea A1 - Groß, Elisabeth A1 - Bauer, Marcus A1 - Rohde, Christian A1 - Sandmann, Sarah A1 - Terziev, Denis A1 - Müller, Lutz P. A1 - Posern, Guido A1 - Wienke, Andreas A1 - Fend, Falko A1 - Hansmann, Martin-Leo A1 - Klapper, Wolfram A1 - Rosenwald, Andreas A1 - Stein, Harald A1 - Dugas, Martin A1 - Müller-Tidow, Carsten A1 - Wickenhauser, Claudia A1 - Binder, Mascha A1 - Weber, Thomas T1 - Divergent effects of EZH1 and EZH2 protein expression on the prognosis of patients with T-cell lymphomas JF - Biomedicines N2 - T-cell lymphomas are highly heterogeneous and their prognosis is poor under the currently available therapies. Enhancers of zeste homologue 1 and 2 (EZH1/2) are histone H3 lysine-27 trimethyltransferases (H3K27me3). Despite the rapid development of new drugs inhibiting EZH2 and/or EZH1, the molecular interplay of these proteins and the impact on disease progression and prognosis of patients with T-cell lymphomas remains insufficiently understood. In this study, EZH1/2 mutation status was evaluated in 33 monomorphic epitheliotropic intestinal T-cell lymphomas by next generation sequencing and EZH1/2 and H3K27me3 protein expression levels were detected by immunohistochemistry in 46 T-cell lymphomas. Correlations with clinicopathologic features were analyzed and survival curves generated. No EZH1 mutations and one (3%) EZH2 missense mutation were identified. In univariable analysis, high EZH1 expression was associated with an improved overall survival (OS) and progression-free survival (PFS) whereas high EZH2 and H3K27me3 expression were associated with poorer OS and PFS. Multivariable analysis revealed EZH1 (hazard ratio (HR) = 0.183; 95% confidence interval (CI): 0.044–0.767; p = 0.020;) and EZH2 (HR = 8.245; 95% CI: 1.898–35.826; p = 0.005) to be independent, divergent prognostic markers for OS. In conclusion, EZH1/2 protein expression had opposing effects on the prognosis of T-cell lymphoma patients. KW - T-cell non-Hodgkin's lymphomas KW - PTCL KW - epigenetics KW - EZH1 KW - EZH2 KW - H3K27me3 KW - immunohistochemistry KW - next generation sequencing Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-252155 SN - 2227-9059 VL - 9 IS - 12 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 - Nanda, Indrajit A1 - Steinlein, Claus A1 - Haaf, Thomas A1 - Buhl, Eva M. A1 - Grimm, Domink G. A1 - Friedman, Scott L. A1 - Meurer, Steffen K. A1 - Schröder, Sarah K. A1 - Weiskirchen, Ralf T1 - Genetic characterization of rat hepatic stellate cell line HSC-T6 for in vitro cell line authentication JF - Cells N2 - Immortalized hepatic stellate cells (HSCs) established from mouse, rat, and humans are valuable in vitro models for the biomedical investigation of liver biology. These cell lines are homogenous, thereby providing consistent and reproducible results. They grow more robustly than primary HSCs and provide an unlimited supply of proteins or nucleic acids for biochemical studies. Moreover, they can overcome ethical concerns associated with the use of animal and human tissue and allow for fostering of the 3R principle of replacement, reduction, and refinement proposed in 1959 by William M. S. Russell and Rex L. Burch. Nevertheless, working with continuous cell lines also has some disadvantages. In particular, there are ample examples in which genetic drift and cell misidentification has led to invalid data. Therefore, many journals and granting agencies now recommend proper cell line authentication. We herein describe the genetic characterization of the rat HSC line HSC-T6, which was introduced as a new in vitro model for the study of retinoid metabolism. The consensus chromosome markers, outlined primarily through multicolor spectral karyotyping (SKY), demonstrate that apart from the large derivative chromosome 1 (RNO1), at least two additional chromosomes (RNO4 and RNO7) are found to be in three copies in all metaphases. Additionally, we have defined a short tandem repeat (STR) profile for HSC-T6, including 31 species-specific markers. The typical features of these cells have been further determined by electron microscopy, Western blotting, and Rhodamine-Phalloidin staining. Finally, we have analyzed the transcriptome of HSC-T6 cells by mRNA sequencing (mRNA-Seq) using next generation sequencing (NGS). KW - liver KW - extracellular matrix KW - hepatic stellate cell KW - myofibroblast KW - fibrosis KW - in vitro model KW - SKY analysis KW - phalloidin stain KW - next generation sequencing KW - STR profile Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-275178 SN - 2073-4409 VL - 11 IS - 11 ER - TY - THES A1 - Kolokotronis, Konstantinos T1 - Genetische Ursachen hereditärer Herzerkrankungen T1 - Genetic causes of inherited cardiac diseases N2 - Hereditäre Kardiomyopathien sind durch klinische und genetische Heterogenität gekennzeichnet, welche die Kardiogenetik vor Herausforderungen stellt. In dieser Arbeit wurden manche dieser Herausforderungen angegangen, indem anhand einer Kohorte von 61 Patienten mit Kardiomyopathie bzw. primärer Arrhythmie eine Exom-Diagnostik mit anschließender stufenweiser Datenanalyse vorgenommen wurde. Ein Ziel der Arbeit war, die aktuellen diagnostischen Detektionsraten zu prüfen sowie zu bewerten, ob eine erweiterte Exom-Diagnostik im Vergleich zur üblichen Genpanel-Analyse einen diagnostischen Zugewinn bringt. Zudem sollten potenzielle Krankheitsgene sowie komplexe Genotypen identifiziert werden. Die Ergebnisse zeigten, dass bei insgesamt 64% der Patienten eine Variante von Interesse gefunden wurde. Hervorzuheben ist die hohe Detektionsrate in der größten Subkohorte, die aus Patienten mit dilatativer bzw. linksventrikulärer Non-Compaction Kardiomyopathie bestand: 69% und damit höher im Vergleich zur in der Literatur berichteten Detektionsrate von bis zu 50%. Im Rahmen der stufenweisen Daten-Auswertung zeigte sich zwar, dass die meisten kausalen Varianten in den phänotypspezifischen Panels zu finden waren, die Analyse eines erweiterten Panels mit 79 Genen sowie der Gesamtexom-Daten aber zu einer zusätzlichen Aufklärungsquote von 13% bzw. 5% führte. Durch die Erweiterung der Diagnostik konnten interessante, teilweise neue Assoziationen zwischen Genotyp und Phänotyp sowie neue Kandidatengene identifiziert werden. Das beste Beispiel dafür ist eine trunkierende Variante im STK38-Gen, das an der Phosphorylierung eines Regulators der Expression kardialer Gene beteiligt ist. Zusammenfassend konnte gezeigt werden, dass, obwohl die Detektionsrate von Genpanels für die Routine-Diagnostik akzeptabel ist, die Anwendung von Exom-Diagnostik einen diagnostischen Zugewinn, die Entdeckung von interessanten Genotyp-Phänotyp-Korrelationen sowie die Identifizierung von Kandidatengenen ermöglicht. N2 - Hereditary cardiomyopathies are characterized by clinical and genetic heterogeneity, which poses challenges to genetic diagnostics in cardiogenetics. In this study, some of these challenges were addressed on the basis of the genetic analysis of 61 cardiomyopathy and arrhythmia patients using exome sequencing with subsequent stepwise analysis of the genetic data. One objective of the study was to examine the current diagnostic yield of genetic analysis as well as to assess the diagnostic benefit of an extended exome analysis vs. targeted gene panel analysis. Another aim was to identify novel candidate genes and describe new genotype-phenotype correlations. Regarding the results, a variant of interest could be detected in 64% of the patients. Of note is the high detection rate in the main subcohort of patients with dilated cardiomyopathy and/or left ventricular noncompaction cardiomyopathy: 69% vs. the reported detection rate of max. 50% in the literature. To evaluate the additional diagnostic benefit of extensive exome testing, a stepwise analysis of the exome data was performed. It was shown here that most of the variants of interest were detected in the phenotype-specific core gene panels; however, the analysis of an extended gene set with 79 genes and subsequently of the complete exome data led to an additional diagnostic yield of 13% and 5% respectively. Through the expansion of the genetic analysis, interesting or new genotype-phenotype correlations could be documented and candidate genes could be identified. The best candidate was a truncating variant in STK38, a gene coding for a kinase that phosphorylates a transcription regulator of genes encoding for cardiac sarcomere proteins. In conclusion, although the detection rate of gene panels is acceptable for the clinical routine, the use of exome analysis enables the highest possible diagnostic yield, the detection of interesting genotype-phenotype correlations as well as the identification of new candidate genes. KW - Herzmuskelkrankheit KW - Massive parallele Sequenzierung KW - Kandidatengen KW - Genanalyse KW - Arrhythmie KW - whole exome sequencing KW - gene panel KW - cardiogenetics KW - next generation sequencing Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-231164 ER - TY - JOUR A1 - Horn, Hannes A1 - Keller, Alexander A1 - Hildebrandt, Ulrich A1 - Kämpfer, Peter A1 - Riederer, Markus A1 - Hentschel, Ute T1 - Draft genome of the \(Arabidopsis\) \(thaliana\) phyllosphere bacterium, \(Williamsia\) sp. ARP1 JF - Standards in Genomic Sciences N2 - The Gram-positive actinomycete \(Williamsia\) sp. ARP1 was originally isolated from the \(Arabidopsis\) \(thaliana\) phyllosphere. Here we describe the general physiological features of this microorganism together with the draft genome sequence and annotation. The 4,745,080 bp long genome contains 4434 protein-coding genes and 70 RNA genes. To our knowledge, this is only the second reported genome from the genus \(Williamsia\) and the first sequenced strain from the phyllosphere. The presented genomic information is interpreted in the context of an adaptation to the phyllosphere habitat. KW - arabidopsis thaliana KW - whole genome sequencing KW - adaption KW - Williamsia sp. ARP1 KW - phyllosphere KW - draft genome KW - next generation sequencing KW - assembly KW - annotation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146008 VL - 11 IS - 8 ER -