TY - JOUR A1 - Hickl, Oskar A1 - Heintz-Buschart, Anna A1 - Trautwein-Schult, Anke A1 - Hercog, Rajna A1 - Bork, Peer A1 - Wilmes, Paul A1 - Becher, Dörte T1 - Sample preservation and storage significantly impact taxonomic and functional profiles in metaproteomics studies of the human gut microbiome JF - Microorganisms N2 - With the technological advances of the last decade, it is now feasible to analyze microbiome samples, such as human stool specimens, using multi-omic techniques. Given the inherent sample complexity, there exists a need for sample methods which preserve as much information as possible about the biological system at the time of sampling. Here, we analyzed human stool samples preserved and stored using different methods, applying metagenomics as well as metaproteomics. Our results demonstrate that sample preservation and storage have a significant effect on the taxonomic composition of identified proteins. The overall identification rates, as well as the proportion of proteins from Actinobacteria were much higher when samples were flash frozen. Preservation in RNAlater overall led to fewer protein identifications and a considerable increase in the share of Bacteroidetes, as well as Proteobacteria. Additionally, a decrease in the share of metabolism-related proteins and an increase of the relative amount of proteins involved in the processing of genetic information was observed for RNAlater-stored samples. This suggests that great care should be taken in choosing methods for the preservation and storage of microbiome samples, as well as in comparing the results of analyses using different sampling and storage methods. Flash freezing and subsequent storage at −80 °C should be chosen wherever possible. KW - proteomics KW - metaproteomics KW - metagenomics KW - microbiome KW - microbiota KW - flash freezing KW - RNAlater KW - sample storage Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195976 SN - 2076-2607 VL - 7 IS - 9 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 - Dechaud, Corentin A1 - Volff, Jean-Nicolas A1 - Schartl, Manfred A1 - Naville, Magali T1 - Sex and the TEs: transposable elements in sexual development and function in animals JF - Mobile DNA N2 - Transposable elements are endogenous DNA sequences able to integrate into and multiply within genomes. They constitute a major source of genetic innovations, as they can not only rearrange genomes but also spread ready-to-use regulatory sequences able to modify host gene expression, and even can give birth to new host genes. As their evolutionary success depends on their vertical transmission, transposable elements are intrinsically linked to reproduction. In organisms with sexual reproduction, this implies that transposable elements have to manifest their transpositional activity in germ cells or their progenitors. The control of sexual development and function can be very versatile, and several studies have demonstrated the implication of transposable elements in the evolution of sex. In this review, we report the functional and evolutionary relationships between transposable elements and sexual reproduction in animals. In particular, we highlight how transposable elements can influence expression of sexual development genes, and how, reciprocally, they are tightly controlled in gonads. We also review how transposable elements contribute to the organization, expression and evolution of sexual development genes and sex chromosomes. This underscores the intricate co-evolution between host functions and transposable elements, which regularly shift from a parasitic to a domesticated status useful to the host. KW - Transposable element KW - Sex determination KW - Sexual development and function KW - Germline KW - piRNA KW - Sex chromosome Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202510 VL - 10 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 - THES A1 - Röser [geb. Aßmus], Benjamin T1 - SPRED2 (Sprouty-related EVH1 domain containing 2) reguliert die Autophagie in Kardiomyozyten T1 - SPRED2 (Sprouty-related EVH1 domain containing 2) regulates autophagy in cardiomyocytes N2 - Das Sprouty-related, EVH1 domain containing protein 2 (SPRED2) ist ein inhibitorisches, downstream von Ras wirkendes Protein des MAP-Kinase Signalwegs, welches entscheidenden Einfluss auf die Regulation von Proliferation, Expression von Proteinen und der zellulären Homöostase hat. Der kardiale Phänotyp von SPRED2- defizienten Mäusen zeigt nicht nur eine deutliche linksventrikuläre Hypertrophie, sondern auch eine erhöhte Fibrosierung des Herzgewebes. Zellulär wird die SPRED2- Defizienz durch die Akkumulation von vesikulären Strukturen innerhalb der Zelle, sowie eine markant erhöhte Anzahl von Vesikeln entlang der longitudinalen Reihen der Mitochondrien gekennzeichnet. Ziel dieser Arbeit war es, den Charakter dieser vesikulären Strukturen näher zu beleuchten und festzustellen, in welchem Zusammenhang die subzellulär veränderte Architektur mit der Hypertrophie der SPRED2-defizienten Tiere steht. Um diese Fragestellung zu beantworten, wurde zunächst nach einem vesikulären Degradationsmechanismus gesucht, der in SPRED2-/--Cardiomyocyten betroffen sein könnte. Die Macroautophagie, im folgenden Autophagie bezeichnet, ist ein solcher Degradationsmechanismus, bei dem selektiv langlebige Proteine und Zellorganellen abgebaut werden. Es konnten signifikante Veränderung der Protein-Level an Schlüsselpositionen der Autophagie identifiziert werden. Das Ubiquitin-aktivierende (E1) Enzym Homolog Atg7 sowie die Cystein-Protease Atg4B zeigen sich im SPRED2- KO deutlich reduziert. Ebenso Atg16L, das als essentieller Bestandteil des Atg5- Atg12-Atg16-Konjugationssystems bei der Konjugation von MAPLC3-II an das Phospholipid Phosphatidylethanolamin beteiligt ist. Die Autophagie-Rate als Verhältnis von konjugiertem zu unkonjugiertem MAPLC3 ist ebenfalls reduziert. Die Akkumulation der autophagischen Vesikel zeigt sich kongruent zu dem erhöhten Protein-Level der autophagischen Cargo-Rezeptoren SQSTM1 und NBR1, sowie des lysosomalen Markers CathepsinD. Außer der verringerten Autophagie-Rate zeigt sich in Einklang mit der Fibrosierung des Herzgewebes eine erhöht aktive Caspase-3 als Marker für Apoptose. Um die mitochondriale Integrität näher zu beleuchten, wurde die Menge an reaktiven Sauerstoffspezies (ROS) in Wildtyp und SPRED2-KO untersucht. Hierbei zeigte sich eine erhöhte Menge an ROS im KO, was ein Hinweis auf eine Beeinträchtigung der Mitochondrien darstellt. Letztlich wurde die Hypothese überprüft, ob ein gestörter Transport der Vesikel durch eine Beeinträchtigung der Motorproteine Dynein und Kinesin vorliegt. In der Tat zeigte sich die Aktivität der Dynein-ATPase verringert in der Abwesenheit von SPRED2. Diese Beobachtung wird durch die erhöhten Mengen des vSNARE-Proteins VTI1b unterstützt, was letztlich die Akkumulation der autophagischen Vesikel mit einer verringerten Fähigkeit zur Membranfusion und dem ineffizienteren Transport der Vesikel in Einklang bringt. Da die gesamten Experimente in einem globalen SPRED2-KO System durchgeführt wurden, können eventuelle Auswirkungen der beeinflussten hormonellen Situation der SPRED2-KO Tiere auf den Herzphänotyp nicht final ausgeschlossen werden. Um die genaue Wirkung einer SPRED2-Defizienz auf das Herzgewebe und das Herz als Organ zu untersuchen, wurde im Rahmen dieser Arbeit eine SPRED2- defiziente knockout Mauslinie mit konditionalem Potential generiert, die eine gesteuerte Deletion von SPRED2 im Herzgewebe erlaubt. N2 - The Sprouty-related, EVH1 domain containing protein 2 (SPRED2) is a MAP kinase signaling inhibitor working downstream of Ras. It has a critical influence on regulating proliferation, differentiation, expression of proteins and cellular hemostasis. The cardiac phenotype of SPRED2 deficient mice not only shows a significant left ventricular hypertrophy but also a hightened fibrosis of the heart tissue. On the cellular level the SPRED2 deficiency is marked by an accumulation of ventricular structures within the cell, as well as a decisive number of vesicles along the longitudinal rows of mitochondria. The aim of this work was to elucidate the properties of these vesicular structures and to determine in which context the subcellularly modified architecture and the hypertrophy of the SPRED2 deficient animals stand to each other. To answer this question, a protein degradation mechanism that could be changed within the SPRED2 deficient cardiomyocytes was identified. Macroautophagy, further called autophagy, is such a degradation mechanism, which degrades long-lived proteins and cell organelles. This work identified significant changes made to the protein level of key regulators of autophagy. The ubiquitin-activating (E1) enzyme homolog Atg7 as well as the cystein protease Atg4B are reduced in the SPRED2 KO. Similarly, Atg16L, which acts as an essential part of the Atg5-Atg12-Atg16 conjugation system in the process of conjugating MAPLC3 to the phospholipid phosphatidylethanolamine. The autophagic flux, as the relation between conjugated and unconjugated MAPLC3, is reduced in the knockout as well. The accumulation of autophagic vesicles is in accordance with the elevated protein levels of the cargo receptors SQSTM1 and NBR1 as well as the lysosomal marker CathepsinD. Besides the reduced autophagic flux there is an elevated protein level of activated caspase-3 as a marker of apoptosis. To further elucidate the mitochondrial integrity, the endogenous levels of reactive oxygen species were determined in wildtype and knockout individuals. It was shown that the SPRED2 knockout contains an elevated level of ROS which could be a sign of reduced mitochondrial survival. Finally, it was investigated whether the disturbed transport of vesicles was due to impaired motor protein efficiency. It was shown that the activity of the dynein ATPase was reduced when SPRED2 was absent. This observation is supported by the elevated levels of the vSNARE protein VTI1b, which connects the accumulation of autophagic vesicles with the reduced ability to membrane fusion and a less efficient transport of vesicles. The experiments of this work were conducted in a global SPRED2-KO system. Possible effects of the changed hormonal situation of the SPRED2 deficient animals to the heart phenotype cannot be excluded. For that reason a conditional SPRED2 knockout mouse line with conditional potential was created capable of further elucidating the effect of a SPRED2 deficiency to the heart. KW - Spred-Proteine KW - Autophagie KW - Herzmuskelzelle KW - Autophagozytose KW - Autophagosom KW - autophagocytosis KW - autophagosome KW - Kardiomyozyt KW - Vesikel KW - Lysosom Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-182700 ER - TY - THES A1 - Baig, Ayesha Anjum T1 - Studies on platelet interactions with the coagulation system and on modulators of platelet (hem)ITAM signaling in genetically modified mice T1 - Studien zur Thrombozyteninteraktion mit der Gerinnungskaskade und Modulation des (hem)ITAM Signalwegs in genetisch veränderaten Mäusen N2 - Activated platelets and coagulation jointly contribute to physiological hemostasis. However, pathological conditions can also trigger unwanted platelet activation and initiation of coagulation resulting in thrombosis and precipitation of ischemic damage of vital organs such as the heart or brain. The specific contribution of procoagulant platelets, positioned at the interface of the processes of platelet activation and coagulation, in ischemic stroke had remained uninvestigated. The first section of the thesis addresses this aspect through experiments conducted in novel megakaryocyte- and platelet-specific TMEM16F conditional KO mice (cKO). cKO platelets phenocopied defects in platelets from Scott Syndrome patients and had severely impaired procoagulant characteristics. This led to decelerated platelet-driven thrombin generation and delayed fibrin formation. cKO mice displayed prolonged bleeding times and impaired arterial thrombosis. However, infarct volumes in cKO mice were comparable to wildtype (WT) mice in an experimental model of ischemic stroke. Therefore, while TMEM16F-regulated platelet procoagulant activity is critical for hemostasis and thrombosis, it is dispensable for cerebral thrombo-inflammation in mice. The second section describes the generation and initial characterization of a novel knockin mouse strain that expresses human coagulation factor XII (FXII) instead of endogenous murine FXII. These knockin mice had normal occlusion times in an experimental model of arterial thrombosis demonstrating that human FXII is functional in mice. Therefore, these mice constitute a valuable tool for testing novel pharmacological agents against human FXII – an attractive potential target for antithrombotic therapy. Glycoprotein (GP)VI and C-type lectin-like receptor 2 (CLEC-2)-mediated (hem)immunoreceptor tyrosine-based activation motif (ITAM) signaling represent a major pathway for platelet activation. The last section of the thesis provides experimental evidence for redundant functions between the two members of the Grb2 family of adapter proteins - Grb2 and Gads that lie downstream of GPVI and CLEC-2 stimulation. In vitro and in vivo studies in mice deficient in both Grb2 and Gads (DKO) revealed that DKO platelets had defects in (hem)ITAM-stimulation-specific activation, aggregation and signal transduction that were more severe than the defects observed in single Grb2 KO or Gads KO mice. Furthermore, the specific role of these adapters downstream of (hem)ITAM signaling was essential for maintenance of hemostasis but dispensable for the known CLEC-2 dependent regulation of blood-lymphatic vessel separation. N2 - Aktivierte Thrombozyten und die Gerinnungskaskade bilden gemeinsam die Grundlage der physiologischen Hämostase. Daneben können jedoch auch pathologische Bedingungen Thrombozytenaktivierung herbeiführen und die Gerinnungskaskade auslösen und somit zum Gefäßverschluss führen, was häufig ischämische Schäden lebenswichtiger Organe wie beispielsweise des Herzens oder des Gehirns verursachen kann. Prokoagulante Thrombozy-ten befinden sich an der Schnittstelle zwischen Thrombozytenaktivierung und der Gerin-nungskaskade, ihre Funktion bei der Pathogenese des ischämischen Schlaganfalls wurde jedoch bisher nicht im Detail untersucht. Der erste Teil dieser Doktorarbeit widmet sich dieser Fragestellung durch die Analyse von neu generierten konditionalen, Megakaryozyten- und Thrombozyten-spezifischen Tmem16f Knockout Mäusen. TMEM16F-defiziente Thrombozy-ten wiesen ähnliche Defekte wie die Thrombozyten von Scott-Syndrom-Patienten sowie stark beeinträchtigte prokoagulante Eigenschaften auf. Diese Defekte gingen mit signifikant verlangsamter thrombozytenabhängiger Thrombingenerierung und verzögerter Fibrinbildung einher. TMEM16F-Defizienz führte zu verlängerter Blutungszeit und beeinträchtigte in einem experimentellen Modell die Bildung arterieller Thromben. TMEM16F-defiziente Mäuse wiesen jedoch im Vergleich zu wildtypischen Mäusen keinerlei Unterschiede im experimentellen ischämischen Schlaganfall auf. TMEM16F-gesteuerte prokoagulante Thrombozytenfunktion ist demnach kritisch für Hämostase und Thrombose, während sie eine untergeordnete Rolle in zerebraler Thrombo-Inflammation spielt. Der zweite Teil dieser Arbeit befasst sich mit der Generierung und Erstbeschreibung einer neuen Mauslinie, welche den humanen Hageman-Faktor (FXII) anstelle des endogenen murinen FXII exprimiert. In den resultierenden Knock-in Mäusen war die Bildung okklusiver arterieller Thromben nach chemisch induzierter Gefäßverletzung nicht beeinträchtigt, was zeigt, dass der humane FXII im Maussystem voll funktionstüchtig ist. Somit können diese Mäuse in der Zukunft als ein wertvolles Werkzeug zum Testen neuer pharmakologischer Ansätze zur Herabsetzung der FXII-Aktivität eingesetzt werden, welche einen vielver-sprechenden Targets neuartiger antithrombotischer Behandlungsansätze darstellt. Die thrombozytären Rezeptoren Glykoprotein (GP)VI und C-type lectin-like receptor 2 (CLEC-2) lösen (hem)immunoreceptor tyrosine-based activation motif (ITAM)-gekoppelte Signalwege aus, welche eine eine Schlüsselrolle in der Thrombozytenaktivierung spielen. Der dritte Teil dieser Doktorarbeit liefert experimentelle Hinweise für überlappende Funkti-onen der Adapterproteine Grb2 und Gads in der (hem)ITAM-anhängigen Signalkaskade. In vitro und in vivo Studien zeigten, dass Grb2/Gads-doppeldefiziente Thrombozyten (hem)ITAM-spezifische Defekte in der Aktivierung, Aggregation und Signaltransduktion aufweisen, die im Vergleich zu einzeldefizienten Thrombozyten deutlich ausgeprägter sind und somit eine redundante Rolle der Adapterproteine offenbaren. Während Grb2 und Gads gemeinsam an der Aufrechterhaltung physiologischer Hämostase beteiligt sind, tragen sie nicht entscheidend zur bekannten CLEC-2-abhängigen Regulation der Trennung von Blut- und Lymphgefäßen bei. KW - Blutgerinnung KW - Thrombozyt KW - Signaltransduktion KW - Maus KW - Thrombosis KW - Thrombo-inflammation KW - TMEM16F KW - (hem)ITAM signaling Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164888 ER - TY - THES A1 - Schmitt [geb. Wolf], Karen T1 - Studies on the role of platelet serotonin in platelet function, hemostasis, thrombosis and stroke T1 - Studien zur Rolle des Serotonins aus Thrombozyten für die Thrombozytenfunktion, Hämostase, Thrombose und Schlaganfall N2 - Platelet activation and aggregation are important processes in hemostasis resulting in reduction of blood loss upon vessel wall injury. However, platelet activation can lead to thrombotic events causing myocardial infarction and stroke. A more detailed understanding of the regulation of platelet activation and the subsequent formation of thrombi is essential to prevent thrombosis and ischemic stroke. Cations, platelet surface receptors, cytoskeletal rearrangements, activation of the coagulation cas-cade and intracellular signaling molecules are important in platelet activation and thrombus formation. One such important molecule is serotonin (5 hydroxytryptamin, 5 HT), an indolamine platelet agonist, biochemically derived from tryptophan. 5 HT is secreted from the enterochromaffin cells into the gastrointestinal tract (GI) and blood. Blood borne 5 HT has been proposed to regulate hemostasis by acting as a vaso-constrictor and by triggering platelet signaling through 5 HT2A receptor. Although platelets do not synthetize 5 HT, they take it up from the blood and store it in their dense granules which are secreted upon platelet activation. To identify the molecu-lar composite of the 5 HT uptake system in platelets and elucidate the role of platelet released 5-HT in thrombosis and ischemic stroke, 5 HT transporter knock out mice (5Htt / ) were analyzed in different in vitro and in vivo assays and in a model of is-chemic stroke. In 5Htt / platelets, 5 HT uptake from the blood was completely abol-ished and agonist-induced Ca2+ influx through store operated Ca2+ entry (SOCE), integrin activation, degranulation and aggregation responses to glycoprotein (GP) VI and C type lectin-like receptor 2 (CLEC 2) were reduced. These observed in vitro defects in 5Htt / platelets could be normalized by the addition of exogenous 5 HT. Moreover, reduced 5 HT levels in the plasma, an increased bleeding time and the formation of unstable thrombi were observed ex vivo under flow and in vivo in the abdominal aorta and carotid artery of 5Htt / mice. Surprisingly, in the transient middle cerebral artery occlusion model (tMCAO) of ischemic stroke 5Htt / mice showed near-ly normal infarct volumes and a neurological outcome comparable to control mice. Although secreted platelet 5 HT does not appear to play a crucial role in the devel-opment of reperfusion injury after stroke, it is essential to amplify the second phase of platelet activation through SOCE and thus plays an important role in thrombus stabilization. To further investigate the role of cations, granules and their contents and regulation of integrin activation in the process of thrombus formation, genetically modified mice were analyzed in the different in vivo thrombosis models. Whereas Tph1 / mice (lacking the enzyme responsible for the production of 5 HT in the periphery), Trpm7KI (point mu-tation in the kinase domain of Trpm7 channel, lacking kinase activity) and Unc13d / /Nbeal2 / mice (lacking α granules and the release machinery of dense granules) showed a delayed thrombus formation in vivo, MagT1y/ mice (lacking a specific Mg2+ transporter) displayed a pro thrombotic phenotype in vivo. Trpm7fl/fl Pf4Cre (lacking the non specific Mg2+ channel) and RIAM / mice (lacking a potential linker protein in integrin “inside out” signaling) showed no alterations in thrombus formation upon injury of the vessel wall. N2 - Thrombozytenaktivierung und Aggregation sind wichtige Schritte der Hämostase, die zur Reduktion des Blutverlustes bei Gefäßwandverletzung führen. Jedoch kann die Aktivierung von Thrombozyten zur Thrombose führen, wodurch Herzinfarkt und Schlaganfall entstehen kann. Ein besseres Verständnis der Regulierung der Throm-bozytenaktivierung und die darauf folgende Thrombusbildung sind notwendig, um Thrombose und Hirninfarkte zu vermeiden. Kationen, Thrombozy-ten Oberflächenrezeptoren, Zytoskelett Reorganisation, Aktivierung der Koagulati-onskaskade und intrazellulare Signalmoleküle sind wichtig in der Thrombozytenakti-vierung und Thrombusbildung. Solch ein wichtiges Molekül ist Serotonin (5 hydroxytryptamin, 5 HT), ein Indolamin Thrombozyten-Agonist, welcher aus Tryp-tophan synthetisiert wird. 5 HT wird aus den Enterochromaffinzellen in den Gastroin-testinaltrakt (GI) und das Blut abgegeben. 5 HT aus dem Blut wirkt als Regulator der Hämostase durch die Wirkung als Vasokonstriktor und die Auslösung der Throm-bozyten-Signalwege durch den 5 HT2A Rezeptor. Thrombozyten synthetisieren kein 5 HT, sondern nehmen es aus dem Blut auf und speichern es in den dichten Granu-la, die nach der Thrombozyten-Aktivierung freigesetzt werden. Um die molekulare Zusammensetzung des 5 HT Aufnahmesystems in Thrombozyten zu identifizieren und die Rolle des 5 HT aus Thrombozyten in Thrombose und ischämischem Schlag-anfalls zu klären, wurde eine 5 HT Transporter-defiziente Mauslinie (5Htt / ) in ver-schiedenen in vitro und in vivo Untersuchungen und im Model des ischämischen Schlaganfalls analysiert. In 5Htt / Thrombozyten ist die Aufnahme von 5 HT aus dem Blut vollständig geblockt und Agonisten-induzierter Ca2+ Fluss durch Speicher-abhängigen Ca2+ Einstrom (SOCE), Integrinaktivierung, Degranulierung und Aggre-gation abhängig von Glykoprotein (GP) VI und C type lectin-like receptor 2 (CLEC 2) waren reduziert. Diese in vitro beobachteten Defekte in 5Htt / Thrombozyten konnten durch Zugabe von 5 HT normalisiert werden. Zudem wurden reduzierte 5 HT Werte im Plasma, eine erhöhte Blutungszeit und die Bildung von instabilen Thromben ex vivo unter Fluss und in vivo in der abdominalen Aorta und der Carotis von 5Htt / Mäusen beobachtet. Überraschenderweise zeigten die 5Htt / Mäuse nach transientem Verschluss der A. cerebri media (tMCAO), einem Modell des ischämi-schen Schlaganfalls, ein normales Infarktvolumen und einen unveränderten neurolo-gischen Endzustand im Vergleich zu Kontrollmäusen. Obwohl sekretiertes 5 HT aus Thrombozyten keine wesentliche Rolle in der Entwicklung eines Reperfusionsscha-dens nach einem Schlaganfall spielt, ist es essentiell in der Verstärkung der zweiten Phase der Thrombozytenaktivierung durch SOCE und spielt eine wichtige Rolle in der Thrombusstabilität. Um die Rolle von Kationen, Granula und deren Bestandteile und der Regulierung in der Integrinaktivierung im Prozess der Thrombusbildung zu untersuchen, wurden genetisch veränderte Mäuse in den verschiedenen in vivo Thrombosemodellen ge-testet. Während Tph1 / Mäuse (denen das Enzym zur Produktion von 5 HT in der Peripherie fehlt), Trpm7KI (Punktmutation in der Kinasedomäne des Trpm7 Kanals, Fehlen der Kinase Aktivität) und Unc13d / /Nbeal2 / Mäuse (denen die α Granula und die Freisetzungsmaschinerie der dichten Granula fehlt) und keine oder eine verlang-samte Thrombusbildung zeigten, wiesen MagT1y/ Mäuse (denen der spezifische Mg2+ Transporter fehlt) einen prothrombotischen Phänotyp auf. Trpm7fl/fl Pf4Cre Mäuse (denen der nicht spezifische Mg2+ Kanal fehlt) und RIAM / Mäuse (denen ein potenti-elles Linker Protein im Integrin “inside out” Signal fehlt) zeigten keine Veränderung in der Thrombus Bildung nach Verletzung der Gefäßwand. KW - Biomedicine KW - Serotonin KW - Blutgerinnung Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-134711 ER - TY - THES A1 - Gulve, Nitish T1 - Subversion of Host Genome Integrity by Human Herpesvirus 6 and \(Chlamydia\) \(trachomatis\) T1 - Störung der Integrität des Wirts Genoms durch das Human Herpesvirus 6 und \(Chlamydia\) \(trachomatis\) N2 - Ovarian cancer is one of the most common gynecological malignancies in the world. The prevalence of a microbial signature in ovarian cancer has been reported by several studies till date. In these microorganisms, Human herpesvirus 6 (HHV-6) and Chlamydia trachomatis (C.tr) are especially important as they have significantly high prevalence rate. Moreover, these pathogens are directly involved in causing DNA damage and thereby disrupting the integrity of host genome which is the underlying cause of any cancer. This study focuses on how the two pathogens, HHV-6 and C. trachomatis can affect the genome integrity in their individual capacities and thereby may drive ovarian epithelial cells towards transformation. HHV-6 has unique tendency to integrate its genome into the host genome at subtelomeric regions and achieve a state of latency. This latent virus may get reactivated during the course of life by stress, drugs such as steroids, during transplantation, pregnancy etc. The study presented here began with an interesting observation wherein the direct repeat (DR) sequences flanking the ends of double stranded viral genome were found in unusually high numbers in human blood samples as opposed to normal ratio of two DR copies per viral genome. This study was corroborated with in vitro data where cell lines were generated to mimic the HHV-6 status in human samples. The same observation of unusually high DR copies was found in these cell lines as well. Interestingly, fluorescence in situ hybridization (FISH) and inverse polymerase chain reaction followed by southern blotting showed that DR sequences were found to be integrated in nontelomeric regions as opposed to the usual sub-telomeric integration sites in both human samples and in cell lines. Sanger sequencing confirmed the non-telomeric integration of viral DR sequences in the host genome. Several studies have shown that C. trachomatis causes DNA damage and inhibits the signaling cascade of DNA damage response. However, the effect of C. trachomatis infection on process of DNA repair itself was not addressed. In this study, the effect of C. trachomatis infection on host base excision repair (BER) has been addressed. Base excision repair is a pathway which is responsible for replacing the oxidized bases with new undamaged ones. Interestingly, it was found that C. trachomatis infection downregulated polymerase β expression and attenuated polymerase β- mediated BER in vitro. The mechanism of the polymerase β downregulation was found to be associated with the changes in the host microRNAs and downregulation of tumor suppressor, p53. MicroRNA-499 which has a binding site in the polymerase β 3’UTR was shown to be upregulated during C. trachomatis infection. Inhibition of miR-499 using synthetic miR-499 inhibitor indeed improved the repair efficiency during C. trachomatis infection in the in vitro repair assay. Moreover, p53 transcriptionally regulates polymerase β and stabilizing p53 during C. trachomatis infection enhanced the repair efficiency. Previous studies have shown that C. trachomatis can reactivate latent HHV-6. Therefore, genomic instability due to insertions of unstable ‘transposon-like’ HHV-6 DR followed by compromised BER during C. trachomatis infection cumulatively support the hypothesis of pathogenic infections as a probable cause of ovarian cancer N2 - Diese Studie fokussiert sich darauf, wie die beiden Pathogene HHV-6 und C. trachomatis die Genom Integrität beeinflussen und dadurch die Transformation ovarialer Epithelzellen zu Tumorzellen antreiben können. Das latente Virus HHV-6 kann sich in Subtelomer-Regionen des Genoms integrieren und zu jeder Lebensphase (z.B. durch Stress oder Pharmaka) reaktiviert werden. Zu Beginn dieser Studie wurde die Beobachtung gemacht, dass in menschlichen Blutproben eine ungewöhnlich hohe Anzahl an sogenannten direct repeat Sequnzen, die die Enden des doppelsträngigen Virus Genoms flankieren, aufwiesen. Bestätigt wurde diese Beobachtung durch in vitro Daten, wofür Zelllinien generiert wurden, um den HHV-6 Wert in menschlichen Proben zu imitieren. Außerdem konnte durch Sanger Sequenzierung die Integration der viralen DR Sequenzen außerhalb von Telomer Regionen in das Genom nachgewiesen werden. Verschiedene Studien konnten zeigen, dass C. trachomatis DNA Schäden verursacht und die Signal Kaskade von Antworten auf DNA-Schäden inhibiert. Bisher wurde die Auswirkung einer C. trachomatis Infektion auf den Prozess der DNA Reparatur selbst noch nicht behandelt. In dieser Studie wird die Auswirkung einer C. trachomatis Infektion auf Basen-Exzisionsreparatur (BER) thematisiert. Interessanterweise wurde herausgefunden, dass während einer C. trachomatis Infektion die Expression von Polymerase β herunterreguliert ist und dadurch die Polymerase β-vermittelte Basen-Exzisionsreparatur in vitro gestoppt wird. Diese Herunterregulierung konnte mit einer verminderten Expression des Tumorsuppressor p53 assoziiert werden. Darüber hinaus reguliert p53 auf transkriptioneller Ebene Polymerase β und eine Stabilisierung von p53 während einer C. trachomatis Infektion verbesserte die Reparatur-Effizienz. Vorangegangene Studien haben außerdem gezeigt, dass C. trachomatis die latente Form von HHV-6 reaktivieren kann. Deshalb unterstützt die genomische Instabilität aufgrund einer Insertion von HHV-6 DR, gefolgt von komprimierter BER während einer C. trachomatis Infektion, zunehmend die Hypothese, dass eine pathogene Infektion ein vermutlicher Auslöser von Eierstockkrebs sein könnte. KW - Chlamydia trachomatis KW - Host Genome Integrity KW - Chlamydia trachomatis KW - Human Herpesvirus 6 KW - Humanes Herpesvirus 6 KW - Eierstockkrebs KW - Molekulargenetik Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-162026 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 - THES A1 - Hieke, Marie T1 - Synaptic arrangements and potential communication partners of \(Drosophila’s\) PDF-containing clock neurons within the accessory medulla T1 - Synaptische Konstellationen und potentielle Kommunikationspartner von \(Drosophila’s\) PDF-enthaltenden Uhrneuronen innerhalb der akzessorischen Medulla N2 - Endogenous clocks regulate physiological as well as behavioral rhythms within all organisms. They are well investigated in D. melanogaster on a molecular as well as anatomical level. The neuronal clock network within the brain represents the center for rhythmic activity control. One neuronal clock subgroup, the pigment dispersing factor (PDF) neurons, stands out for its importance in regulating rhythmic behavior. These neurons express the neuropeptide PDF (pigment dispersing factor). A small neuropil at the medulla’s edge, the accessory medulla (AME), is of special interest, as it has been determined as the main center for clock control. It is not only highly innervated by the PDF neurons but also by terminals of all other clock neuron subgroups. Furthermore, terminals of the photoreceptors provide light information to the AME. Many different types of neurons converge within the AME and afterward spread to their next target. Thereby the AME is supplied with information from a variety of brain regions. Among these neurons are the aminergic ones whose receptors’ are expressed in the PDF neurons. The present study sheds light onto putative synaptic partners and anatomical arrangements within the neuronal clock network, especially within the AME, as such knowledge is a prerequisite to understand circadian behavior. The aminergic neurons’ conspicuous vicinity to the PDF neurons suggests synaptic communication among them. Thus, based on former anatomical studies regarding this issue detailed light microscopic studies have been performed. Double immunolabellings, analyses of the spatial relation of pre- and postsynaptic sites of the individual neuron populations with respect to each other and the identification of putative synaptic partners using GRASP reenforce the hypothesis of synaptic interactions within the AME between dopaminergic/ serotonergic neurons and the PDF neurons. To shed light on the synaptic partners I performed first steps in array tomography, as it allows terrific informative analyses of fluorescent signals on an ultrastructural level. Therefore, I tested different ways of sample preparation in order to achieve and optimize fluorescent signals on 100 nm thin tissue sections and I made overlays with electron microscopic images. Furthermore, I made assumptions about synaptic modulations within the neuronal clock network via glial cells. I detected their cell bodies in close vicinity to the AME and PDFcontaining clock neurons. It has already been shown that glial cells modulate the release of PDF from s-LNvs’ terminals within the dorsal brain. On an anatomical level this modulation appears to exist also within the AME, as synaptic contacts that involve PDF-positive dendritic terminals are embedded into glial fibers. Intriguingly, these postsynaptic PDF fibers are often VIIAbstract part of dyadic or even multiple-contact sites in opposite to prolonged presynaptic active zonesimplicating complex neuronal interactions within the AME. To unravel possible mechanisms of such synaptic arrangements, I tried to localize the ABC transporter White. Its presence within glial cells would indicate a recycling mechanism of transmitted amines which allows their fast re-provision. Taken together, synapses accompanied by glial cells appear to be a common arrangement within the AME to regulate circadian behavior. The complexity of mechanisms that contribute in modulation of circadian information is reflected by the complex diversity of synaptic arrangements that involves obviously several types of neuron populations N2 - Endogene Uhren steuern sowohl physiologische als auch verhaltensbedingte Rhythmen bei allen Organismen. In D. melanogaster sind sie nicht nur auf molekularer sondern auch auf anatomischer Ebene bereits gut erforscht. Das neuronale Uhrnetzwerk im Gehirn stellt das Zentrum der Steuerung der rhythmischen Aktivität dar. Eine Uhrneuronengruppe sticht allein schon durch ihre besonderen anatomischen Eigenschaften hervor. Diese Neurone exprimieren das Neuropeptid PDF (pigment dispersing factor), welches zudem besonderen Einfluss auf die Lokomotionsaktivität der Fliege hat. Ein kleines Neuropil am Rande der Medulla, die akzessorische Medulla (AME) ist von besonderem Interesse, da neben seiner intensiven Innervation durch die PDF-Neurone auch Terminale aller anderen Uhrneuronengruppen zu finden sind. Zudem wird sie durch Terminale der Photorezeptoren mit Informatonen über die Lichtverhätnisse versorgt. Die AME erreichen des Weiteren Informationen aus vielen anderen Hirnregionen. Eine Vielzahl von Neuronentypen laufen in ihr zusammen, um sich anschließend wieder in verschiedenste Hirnareale zu verteilen. So wird die AME auch durchzogen von Fasern mit aminergem Inhalt, dessen Rezeptoren wiederum auf den PDF-Neuronen zu finden sind. Die vorliegende Arbeit gibt Aufschluss über vermutliche synaptische Partner und anatomische Anordnungen innerhalb des neuronalen Uhrnetzwerkes, insbesondere innerhalb der AME. Solch Wissen stellt eine Grundvoraussetzung dar, um zirkadianes Verhalten verstehen zu können. Die auffällige Nähe der aminergen Neurone zu den PDF Neuronen lässt eine synaptische Interaktion zwischen ihnen vermuten. Deshalb wurden basierend auf vorangegangen Studien detailiertere Untersuchungen dieser Thematik durchgeführt. So wird die Hypothese über synaptische Interaktionen innerhalb der AME zwischen dopaminergen/ serotonergen Neuronen und den PDF Neuronen bestärkt mittels Doppelimmunofärbungen, gegenüberstellende Analysen über die räumlichen Nähe von prä- und postsynaptischen Stellen der jeweiligen Neuronenpopulationen und durch die Identifikation vermutlicher synaptischer Partner unter Verwendung von GRASP. Zur möglichen Identifikation der synaptischen Partner unternahm ich erste Schritte in der Array Tomographie, welche hochinformative Analysen von fluoreszierenden Signalen auf einem ultrastrukturellen Level ermöglicht. Dazu testete ich verschieden Wege der Gewebepräparation, um Flureszenzsignale zu erhalten bzw. zu optimieren und bildete erste Überlagerungen der Fluoreszenz- und Elektronenmikrskopbilder. Die Auswertung der elektronenmikroskopischen Bilder erlaubten Mutmaßungen über mö- gliche synaptische Modulationen innerhalb des neuronalen Uhrnetzwerkes durch Gliazellen. Ihre Zellkörper fand ich in unmittelbarer Nähe zu den PDF Neuronen. Im dorsalen Hirn wurden neuronale Modulationen an den kleinen PDF Neuronen durch Gliazellen bereits festgestellt. Auf anatomischer Ebene scheint diese Modulation auch innerhalb der AME zu erfolgen, da synaptische Kontakte, welche PDF-positive Dendriten involvieren, von Gliafasern umgeben sind. Interessanterweise sind diese postsynaptischen PDF Fasern dabei oftmals Teil dyadischer oder sogar multipler Kontakte, die sich gegenüber einer ausgedehnten aktiven Zone befinden. Um mögliche Mechanismen solcher synaptischer Anordnungen zu erklären, versuchte ich den ABC Transporter White im Hirn von Drosophila zu lokalisieren. Seine Präsenz in Gliazellen würde auf einen Recyclingmechanismus hindeuten, welcher eine schnelle Wiederbereitstellung des Transmiters ermöglichen würde. Zusammengefasst scheinen Synapsen mit postsynaptischen PDF-Neuronen in Begleitung von Gliazellen, ein gebräuchliches synaptisches Arrangement innerhalb der AME dazustellen. Diese komplexe Diversität der synaptischen Anordnung reflektiert die komplexen Mechanismen, welche der Verarbeitung der zirkadianen Informationen zugrunde liegen KW - Taufliege KW - Chronobiologie KW - Endogene Rhythmik KW - PDF neurons KW - glia cells KW - circadian clock KW - accessory medulla KW - sleep KW - aminergic neurons KW - synapses KW - Gliazelle KW - Aminerge Nervenzelle KW - Pigmentdispergierender Faktor KW - Drosophila melanogaster Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-175988 ER - TY - JOUR A1 - Grebinyk, Anna A1 - Prylutska, Svitlana A1 - Chepurna, Oksana A1 - Grebinyk, Sergii A1 - Prylutskyy, Yuriy A1 - Ritter, Uwe A1 - Ohulchanskyy, Tymish Y. A1 - Matyshevska, Olga A1 - Dandekar, Thomas A1 - Frohme, Marcus T1 - Synergy of chemo- and photodynamic therapies with C\(_{60}\) Fullerene-Doxorubicin nanocomplex JF - Nanomaterials N2 - A nanosized drug complex was explored to improve the efficiency of cancer chemotherapy, complementing it with nanodelivery and photodynamic therapy. For this, nanomolar amounts of a non-covalent nanocomplex of Doxorubicin (Dox) with carbon nanoparticle C\(_{60}\) fullerene (C\(_{60}\)) were applied in 1:1 and 2:1 molar ratio, exploiting C\(_{60}\) both as a drug-carrier and as a photosensitizer. The fluorescence microscopy analysis of human leukemic CCRF-CEM cells, in vitro cancer model, treated with nanocomplexes showed Dox’s nuclear and C\(_{60}\)'s extranuclear localization. It gave an opportunity to realize a double hit strategy against cancer cells based on Dox's antiproliferative activity and C\(_{60}\)'s photoinduced pro-oxidant activity. When cells were treated with 2:1 C\(_{60}\)-Dox and irradiated at 405 nm the high cytotoxicity of photo-irradiated C\(_{60}\)-Dox enabled a nanomolar concentration of Dox and C\(_{60}\) to efficiently kill cancer cells in vitro. The high pro-oxidant and pro-apoptotic efficiency decreased IC\(_{50}\) 16, 9 and 7 × 10\(^3\)-fold, if compared with the action of Dox, non-irradiated nanocomplex, and C\(_{60}\)'s photodynamic effect, correspondingly. Hereafter, a strong synergy of therapy arising from the combination of C\(_{60}\)-mediated Dox delivery and C\(_{60}\) photoexcitation was revealed. Our data indicate that a combination of chemo- and photodynamic therapies with C\(_{60}\)-Dox nanoformulation provides a promising synergetic approach for cancer treatment. KW - photodynamic chemotherapy KW - synergistic effect KW - C\(_{60}\) fullerene KW - Doxorubicin KW - nanocomplex KW - leukemic cells KW - apoptosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193140 SN - 2079-4991 VL - 9 IS - 11 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 - THES A1 - Tiwarekar, Vishakha Rakesh T1 - The APOBEC3G-regulated host factors REDD1 and KDELR2 restrict measles virus replication T1 - Die durch APOBEC3G-regulierten Wirtsfaktoren REDD1 und KDELR2 restringieren die Masernvirus Replikation N2 - Measles is an extremely contagious vaccine-preventable disease responsible for more than 90000 deaths worldwide annually. The number of deaths has declined from 8 million in the pre-vaccination era to few thousands every year due to the highly efficacious vaccine. However, this effective vaccine is still unreachable in many developing countries due to lack of infrastructure, while in developed countries too many people refuse vaccination. Specific antiviral compounds are not yet available. In the current situation, only an extensive vaccination approach along with effective antivirals could help to have a measles-free future. To develop an effective antiviral, detailed knowledge of viral-host interaction is required. This study was undertaken to understand the interaction between MV and the innate host restriction factor APOBEC3G (A3G), which is well-known for its activity against human immunodeficiency virus (HIV). Restriction of MV replication was not attributed to the cytidine deaminase function of A3G, instead, we identified a novel role of A3G in regulating cellular gene functions. Among two of the A3G regulated host factors, we found that REDD1 reduced MV replication, whereas, KDELR2 hampered MV haemagglutinin (H) surface transport thereby affecting viral release. REDD1, a negative regulator of mTORC1 signalling impaired MV replication by inhibiting mTORC1. A3G regulated REDD1 expression was demonstrated to inversely correlate with MV replication. siRNA mediated silencing of A3G in primary human blood lymphocytes (PBL) reduced REDD1 levels and simultaneously increased MV titres. Also, direct depletion of REDD1 improved MV replication in PBL, indicating its role in A3G mediated restriction of MV. Based on these finding, a new role of rapamycin, a pharmacological inhibitor of mTORC1, was uncovered in successfully diminishing MV replication in Vero as well as in human PBL. The ER and Golgi resident receptor KDELR2 indirectly affected MV by competing with MV-H for cellular chaperones. Due to the sequestering of chaperones by KDELR2, they can no longer assist in MV-H folding and subsequent surface expression. Taken together, the two A3G-regulated host factors REDD1 and KDELR2 are mainly responsible for mediating its antiviral activity against MV. N2 - Masern ist eine extrem ansteckende, durch Impfung verhinderbare Infektionskrankheit, die für mehr als 90000 Todesfälle jährlich weltweit verantwortlich ist. Die Zahl der Todesfälle nahm von ca. 8 Millionen in der Prä- Impf-Ära auf wenige Tausend pro Jahr aufgrund dieses effizienten Impfstoffs ab. Dieser ist jedoch aufgrund mangelnder Infrastruktur in vielen Entwicklungsländern nicht ausreichend verfügbar, oder die Impfung wird – vor allem in entwickelten Ländern – verweigert. Spezifische antivirale Substanzen sind noch nicht verfügbar. So könnte nur eine extensive Impfkampagne zu einer Masern-freien Zukunft führen. Um antivirale Substanzen zu generieren wird detailiertes Wissen über Virus-Wirt-Interaktionen benötigt. Diese Studie wurde unternommen um Interaktionen zwischen Masernviren (MV) und dem zellulären Restriktionsfaktor APOBEC3G (A3G), der allgemein bekannt für seine antivirale Wirkung gegen das humane Immundefizienzvirus (HIV) ist, zu charakterisieren. A3G hemmt die MV-Replikation nicht aufgrund seiner Cytidin-Desaminase-Funktion, sondern wir entdeckten eine neue Funktion des A3G, nämlich dass es die Expression zellulärer Faktoren reguliert. Wir fanden, dass unter den A3G-regulierten Wirtszellfaktoren REDD1 die MV-Replikation reduzierte, während KDELR2 den Transport des MV-Hämagglutinins (H) zur Zelloberfläche, und somit die Virusfreisetzung, inhibierte. REDD1, ein negativer Regulator des mTORC1-Signalübertragungswegs, reduzierte die MV-Replikation indem es mTORC1 inhibiert. Die Expression des durch A3G regulierten REDD1 korrelierte umgekehrt mit der MV Replikation. SiRNA-vermittelte Reduktion des A3G in primären humanen Lymphozyten des Bluts (PBL) führte zu einer Abnahme des REDD1 und gleichzeitig zu einer Zunahme des MV-Titers. Ebenso führte direktes Silencing des REDD1 zu einer verstärkten MV-Replikation in PBL, was seine Rolle bei der A3G-vermittelten Restriktion der MV-Replikation unterstreicht. Aufgrund dieser Befunde wurde auch eine neue Funktion des mTORC1-Inhibitors Rapamycin als Inhibitor der MV-Replikation in Vero-Zellen und primären PBL aufgedeckt. Der ER- und Golgi-residente Rezeptor KDELR2 wirkte sich indirekt auf die MV-Replikation aus, indem er mit dem MV-H um die Interaktion mit Chaperonen kompetiert. KDELR2 bindet Chaperone und verhindert so deren Interaktion mit MV-H und den Transport zur Zelloberfläche. Zusammenfassend lässt sich sagen, dass die beiden A3G-regulierten Wirtszellfaktoren REDD1 und KDELR2 hauptsächlich für die antivirale Aktivität des A3G gegen MV verantwortlich sind. KW - measles virus KW - restriction factors KW - APOBEC3G KW - REDD1 KW - KDELR2 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-179526 ER - TY - JOUR A1 - Horn, Melanie A1 - Mitesser, Oliver A1 - Hovestadt, Thomas A1 - Yoshii, Taishi A1 - Rieger, Dirk A1 - Helfrich-Förster, Charlotte T1 - The circadian clock improves fitness in the fruit fly, Drosophila melanogaster JF - Frontiers in Physiology N2 - It is assumed that a properly timed circadian clock enhances fitness, but only few studies have truly demonstrated this in animals. We raised each of the three classical Drosophila period mutants for >50 generations in the laboratory in competition with wildtype flies. The populations were either kept under a conventional 24-h day or under cycles that matched the mutant’s natural cycle, i.e., a 19-h day in the case of pers mutants and a 29-h day for perl mutants. The arrhythmic per0 mutants were grown together with wildtype flies under constant light that renders wildtype flies similar arrhythmic as the mutants. In addition, the mutants had to compete with wildtype flies for two summers in two consecutive years under outdoor conditions. We found that wildtype flies quickly outcompeted the mutant flies under the 24-h laboratory day and under outdoor conditions, but perl mutants persisted and even outnumbered the wildtype flies under the 29-h day in the laboratory. In contrast, pers and per0 mutants did not win against wildtype flies under the 19-h day and constant light, respectively. Our results demonstrate that wildtype flies have a clear fitness advantage in terms of fertility and offspring survival over the period mutants and – as revealed for perl mutants – this advantage appears maximal when the endogenous period resonates with the period of the environment. However, the experiments indicate that perl and pers persist at low frequencies in the population even under the 24-h day. This may be a consequence of a certain mating preference of wildtype and heterozygous females for mutant males and time differences in activity patterns between wildtype and mutants. KW - competition KW - mutants KW - resonance theory KW - mating preference KW - fertility Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195738 SN - 1664-042X VL - 10 IS - 1374 ER - TY - JOUR A1 - Beer, Katharina A1 - Schenk, Mariela A1 - Helfrich-Förster, Charlotte A1 - Holzschuh, Andrea T1 - The circadian clock uses different environmental time cues to synchronize emergence and locomotion of the solitary bee Osmia bicornis JF - Scientific Reports N2 - Life on earth adapted to the daily reoccurring changes in environment by evolving an endogenous circadian clock. Although the circadian clock has a crucial impact on survival and behavior of solitary bees, many aspects of solitary bee clock mechanisms remain unknown. Our study is the first to show that the circadian clock governs emergence in Osmia bicornis, a bee species which overwinters as adult inside its cocoon. Therefore, its eclosion from the pupal case is separated by an interjacent diapause from its emergence in spring. We show that this bee species synchronizes its emergence to the morning. The daily rhythms of emergence are triggered by temperature cycles but not by light cycles. In contrast to this, the bee’s daily rhythms in locomotion are synchronized by light cycles. Thus, we show that the circadian clock of O. bicornis is set by either temperature or light, depending on what activity is timed. Light is a valuable cue for setting the circadian clock when bees have left the nest. However, for pre-emerged bees, temperature is the most important cue, which may represent an evolutionary adaptation of the circadian system to the cavity-nesting life style of O. bicornis. KW - Behavioural ecology KW - Evolutionary developmental biology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202721 VL - 9 ER - TY - JOUR A1 - Westermann, Alexander J. A1 - Venturini, Elisa A1 - Sellin, Mikael E. A1 - Förstner, Konrad U. A1 - Hardt, Wolf-Dietrich A1 - Vogel, Jörg T1 - The major RNA-binding protein ProQ impacts virulence gene expression in Salmonella enterica serovar Typhimurium JF - mBio N2 - FinO domain proteins such as ProQ of the model pathogen Salmonella enterica have emerged as a new class of major RNA-binding proteins in bacteria. ProQ has been shown to target hundreds of transcripts, including mRNAs from many virulence regions, but its role, if any, in bacterial pathogenesis has not been studied. Here, using a Dual RNA-seq approach to profile ProQ-dependent gene expression changes as Salmonella infects human cells, we reveal dysregulation of bacterial motility, chemotaxis, and virulence genes which is accompanied by altered MAPK (mitogen-activated protein kinase) signaling in the host. Comparison with the other major RNA chaperone in Salmonella, Hfq, reinforces the notion that these two global RNA-binding proteins work in parallel to ensure full virulence. Of newly discovered infection-associated ProQ-bound small noncoding RNAs (sRNAs), we show that the 3′UTR-derived sRNA STnc540 is capable of repressing an infection-induced magnesium transporter mRNA in a ProQ-dependent manner. Together, this comprehensive study uncovers the relevance of ProQ for Salmonella pathogenesis and highlights the importance of RNA-binding proteins in regulating bacterial virulence programs. IMPORTANCE The protein ProQ has recently been discovered as the centerpiece of a previously overlooked “third domain” of small RNA-mediated control of gene expression in bacteria. As in vitro work continues to reveal molecular mechanisms, it is also important to understand how ProQ affects the life cycle of bacterial pathogens as these pathogens infect eukaryotic cells. Here, we have determined how ProQ shapes Salmonella virulence and how the activities of this RNA-binding protein compare with those of Hfq, another central protein in RNA-based gene regulation in this and other bacteria. To this end, we apply global transcriptomics of pathogen and host cells during infection. In doing so, we reveal ProQ-dependent transcript changes in key virulence and host immune pathways. Moreover, we differentiate the roles of ProQ from those of Hfq during infection, for both coding and noncoding transcripts, and provide an important resource for those interested in ProQ-dependent small RNAs in enteric bacteria. KW - Hfq KW - noncoding RNA KW - ProQ KW - RNA-seq KW - bacterial pathogen KW - posttranscriptional control Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177722 VL - 10 IS - 1 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 - El-Mesery, Mohamed A1 - Rosenthal, Tina A1 - Rauert-Wunderlich, Hilka A1 - Schreder, Martin A1 - Stühmer, Thorsten A1 - Leich, Ellen A1 - Schlosser, Andreas A1 - Ehrenschwender, Martin A1 - Wajant, Harald A1 - Siegmund, Daniela T1 - The NEDD8-activating enzyme inhibitor MLN4924 sensitizes a TNFR1+ subgroup of multiple myeloma cells for TNF-induced cell death JF - Cell Death & Disease N2 - The NEDD8-activating enzyme (NAE) inhibitor MLN4924 inhibits cullin-RING ubiquitin ligase complexes including the SKP1-cullin-F-box E3 ligase βTrCP. MLN4924 therefore inhibits also the βTrCP-dependent activation of the classical and the alternative NFĸB pathway. In this work, we found that a subgroup of multiple myeloma cell lines (e.g., RPMI-8226, MM.1S, KMS-12BM) and about half of the primary myeloma samples tested are sensitized to TNF-induced cell death by MLN4924. This correlated with MLN4924-mediated inhibition of TNF-induced activation of the classical NFκB pathway and reduced the efficacy of TNF-induced TNFR1 signaling complex formation. Interestingly, binding studies revealed a straightforward correlation between cell surface TNFR1 expression in multiple myeloma cell lines and their sensitivity for MLN4924/TNF-induced cell death. The cell surface expression levels of TNFR1 in the investigated MM cell lines largely correlated with TNFR1 mRNA expression. This suggests that the variable levels of cell surface expression of TNFR1 in myeloma cell lines are decisive for TNF/MLN4924 sensitivity. Indeed, introduction of TNFR1 into TNFR1-negative TNF/MLN4924-resistant KMS-11BM cells, was sufficient to sensitize this cell line for TNF/MLN4924-induced cell death. Thus, MLN4924 might be especially effective in myeloma patients with TNFR1+ myeloma cells and a TNFhigh tumor microenvironment. KW - cancer therapy KW - tumour-necrosis factors Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226666 VL - 10 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 - THES A1 - Kremer, Antje T1 - Tissue Engineering of a Vascularized Meniscus Implant T1 - Tissue Engineering eines vaskularisierten Meniskus-Implantates N2 - The knee joint is a complex composite joint containing the C-shaped wedge-like menisci composed of fibrocartilage. Due to their complex composition and structure, they provide mechanical resilience to the knee joint protecting the articular cartilage. Because of the limited repair potential, meniscal injuries do not only affect the meniscus itself but also lead to altered joint homeostasis and inevitably to secondary osteoarthritis. The meniscus was characterized focusing on its anatomy, structure and meniscal markers such as aggrecan, collagen type I (Col I) and Col II. The components relevant for meniscus tissue engineering, namely cells, Col I scaffolds, biochemical and biomechanical stimuli were studied. Meniscal cells (MCs) were isolated from meniscus, mesenchymal stem cells (MSCs) from bone marrow and dermal microvascular endothelial cells (d-mvECs) from foreskin biopsies. For the human (h) meniscus model, wedge-shape compression of a hMSC-laden Col I gel was successfully established. During three weeks of static culture, the biochemical stimulus transforming growth factor beta-3 (TGF beta-3) led to a compact collagen structure. On day 21, this meniscus model showed high metabolic activity and matrix remodeling as confirmed by matrix metalloproteinases detection. The fibrochondrogenic properties were illustrated by immunohistochemical detection of meniscal markers, significant GAG/DNA increase and increased compressive properties. For further improvement, biomechanical stimulation systems by compression and hydrostatic pressure were designed. As one vascularization approach, direct stimulation with ciclopirox olamine (CPX) significantly increased sprouting of hd-mvEC spheroids even in absence of auxiliary cells such as MSCs. Second, a cell sheet composed of hMSCs and hd-mvECs was fabricated by temperature triggered cell sheet engineering and transferred onto the wedge-shaped meniscus model. Third, a biological vascularized scaffold (BioVaSc-TERM) was re-endothelialized with hd-mvECs providing a viable vascularized network. The vascularized BioVaSc-TERM was suggested as wrapping scaffold of the meniscus model by using two suture techniques, the all-inside-repair (AIR) for the posterior horn, and the outside-in-refixation (OIR) for the anterior horn and the middle part. This meniscus model for replacing torn menisci is a promising approach to be further optimized regarding vascularization, biochemical and biomechanical stimuli. N2 - Das Knie ist ein komplex zusammengesetztes Gelenk mit zwei C-förmigen Keilen aus Bindegewebsknorpel, die Menisken. Sie sorgen für die mechanische Belastbarkeit des Knies, wodurch der Gelenksknorpel geschützt wird. Aufgrund des limitierten Heilungspotentials beeinträchtigen Meniskusverletzungen nicht nur den Meniskus selbst, sondern schädigen auch das Gelenksgleichgewicht und führen zu sekundärer Osteoarthritis. Der Meniskus wurde in seiner Anatomie, Struktur und Meniskusmarkern wie Aggrekan, Kollagen I und Kollagen II charakterisiert. Die Komponenten von Meniskus Tissue Engineering, Zellen, Kollagen I Materialien, biochemische und biomechanische Stimuli wurden untersucht. Meniskuszellen (MCs) wurden aus Meniskus isoliert, mesenchymale Stammzellen (MSCs) aus Knochenmark und dermale mikrovaskuläre Endothelzellen (d-mvECs) aus Vorhautbiopsien. Für das humane (h) Meniskus-Modell wurde die keilförmige Kompression eines hMSC-beladenen Kollagen I Gels erfolgreich etabliert. Während drei Wochen statischer Kultur führte der biochemische Stimulus transformierender Wachs-tumsfaktor beta-3 (TGF beta-3) zu einer kompakten Kollagenstruktur. An Tag 21 zeigte dieses Meniskus-Modell eine hohe metabolische Aktivität und Matrixumbau durch die Detektion von Matrix-Metalloproteasen. Der Bindegewebsknorpel wurde durch immunhistochemische Detektion der Meniskusmarker, einem signifikanten GAG/DNA Anstieg und erhöhter Kompressionseigenschaften bestätigt. Für weitere Verbesserungen wurden biomechanische Stimulierungssysteme mittels Kompression und hydrostatischen Druck aufgebaut. Als Vaskularisierungsansatz führte die direkte Stimulierung mit Ciclopirox Olamine (CPX) sogar in Abwesenheit von Helferzellen wie MSCs zu einem erhöhten Sprouting der hd-mvEC Spheroide. Zweitens wurde ein hMSC/hd-mvEC Sheet mithilfe eines Temperatur-abhängigen Verfahrens produziert und auf das keilförmige Meniskus-Modell transferiert. Drittens wurde ein vaskularisiertes Biomaterial (BioVaSc-TERM) mit hd-mvECs besiedelt, wodurch ein vitales Gefäßystem bereitgestellt wurde. Die vaskularisierte BioVaSc-TERM wurde als Hülle des Meniskus-Modells unter der Verwendung von zwei Nahttechniken vorgeschlagen: die All-Inside-Repair (AIR) für das Hinterhorn und die Outside-In-Refixation (OIR) für das Vorderhorn und den mittleren Teil. Dieses Meniskus-Modell ist ein vielversprechender Ansatz für den Meniskusersatz, um in Vaskularisierung, biochemischer und biomechanischer Stimuli weiter optimiert zu werden. KW - Meniskus KW - Tissue Engineering KW - Regenerative Medizin KW - Meniskusimplantat KW - meniscus implant KW - Tissue Engineering KW - tissue engineering KW - vascularization KW - Vaskularisierung Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184326 ER -