@phdthesis{Gmoser2019, author = {Gmoser, Johanna}, title = {Korrelation der thermographisch gemessenen Augenoberfl{\"a}chentemperatur mit klinischen und echokardiographischen Parametern im Herzinfarktmodell an der Maus}, doi = {10.25972/OPUS-17906}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-179069}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2019}, abstract = {Die Körpertemperatur kann als Marker f{\"u}r den gesundheitlichen Zustand eines Organismus genutzt werden. Auch beim akuten Myokardinfarkt spielt die Körpertemperatur eine Rolle. Die Aussagekraft von Temperaturdaten hängt dabei von der gewählten Körperstelle und thermodynamischen Aspekten ab. Die rektale Standardmessung ist nicht in der Lage, schnelle Veränderungen der Körpertemperatur zu erfassen, was insbesondere in akuten Krankheitsphasen wichtig sein kann. Dagegen kann die in dem vorliegenden Myokardinfarkt- Langzeitversuch genutzte Messung der Augenoberflächentemperatur (OST) mit einer flexiblen Wärmebildkamera auch schnelle Ver{\"a}nderungen der K{\"o}rpertemperatur mit hoher Sensitivit{\"a}t erfassen. In dem murinen MI-Modell wurde ein signifikanter Abfall der OST der MI-Tiere bereits eine Stunde nach Operation beobachtet. Im Vergleich zeigten Sham-Tiere im Anschluss an die Operation einen konstanten Temperaturverlauf. Zwischen den rOSTd-Werten 6 h nach der Operation und an Tag 21 sowie Tag 56 erhobenen echokardiographischen Parametern bestanden deutliche Korrelationen. OST-Verlaufsmessungen im Anschluss an einen MI-Eingriff erlauben somit Aussagen {\"u}ber das Outcome der Versuchsmäuse. Zusammenfassend stellt die hier vorgestellte Wärmebildkamera mit aufgesetzter Makrolinse ein hilfreiches Werkzeug f{\"u}r Tierversuche dar. Das flexible Setup eignet sich nicht nur f{\"u}r OST-Messungen, sondern kann auch f{\"u}r exakte thermische Untersuchungen von Versuchstieren und andere qualitative und quantitative Zwecke genutzt werden. Die durch den vorgestellten Ansatz erzielte Stressreduktion bei Temperaturmessungen folgt den etablierten Regeln der 3 R's f{\"u}r Tierexperimente und erh{\"o}ht so die wissenschaftliche Qualität von Versuchsergebnissen.}, subject = {Myokardinfarkt}, language = {de} } @phdthesis{Koike2023, author = {Koike, Akito}, title = {Molekular und zellbiologischer Ansatz hin zu neuartigen Medikamenten gegen \(Echinococcus\) \(multilocularis\)}, doi = {10.25972/OPUS-28864}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-288649}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Echinococcosis is an important zoonosis. The causative agent of Alveolar Echinococcosis (AE) is Echinococcus multilocularis. The treatment of human AE is limited to surgery and chemotherapy with albendazole (ABZ). However, ABZ works only parasitostatically and it needs to be taken for long periods, although it causes adverse side effects. Thus, development of new, parasiticidal drug with selective toxicity is required. Because undifferentiated stem cells of E. multilocularis play key role in its longevity and regenerative capacity, targeting stem cells is especially important. In vitro screening of protein kinases inhibitors demonstrated that human PIM kinases inhibitors have detrimental effects on E. multilocularis. Through yeast two hybrid assay, the interaction of parasite PIM kinase (EmPIM) and its CDC25 (EmCDC25) was indicated. Through in situ hybridization, expression of EmPIM in the stem cells was observed. Therefore, EmPim is likely to be a positive regulator of cell cycle progression, the same as human Pim1. In addition, 20 compounds against EmPIM were selected through in silico screening and synthesized. One of them has a detrimental effect on E.multilocularis comparable to human pan-PIM inhibitors, but has much weaker toxicity on human cell lines. Furthermore, triclabendazole (TCBZ) and its metabolite TCBZSX, which are approved for another flatworm disease, Fascioliasis were tried on E. multilocularis. With two stem cell markers, damage to stem cells by TCBZSX was shown. In addition, primary cells from treated vesicles never regenerated and the damage to stem cells proved to be irreversible. Our in silico screening method used in EmPIM research has potential to identify compounds which overcome the side effect problem in ABZ-based chemotherapy. On the other hand, it is expected that my research of TCBZ can lead to development of a practical parasiticidal chemotherapy by combining TCBZ, which damages stem cells, and ABZ, which damages differentiated cells.}, subject = {Bandw{\"u}rmer}, language = {en} } @phdthesis{Koziol2014, author = {Koziol, Uriel}, title = {Molecular and developmental characterization of the Echinococcus multilocularis stem cell system}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-105040}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2014}, abstract = {The metacestode larva of Echinococcus multilocularis is the causative agent of alveolar echinococcosis (AE), one of the most dangerous zoonotic diseases in the Northern Hemisphere. Unlike "typical" metacestode larvae from other tapeworms, it grows as a mass of interconnected vesicles which infiltrates the liver of the intermediate host, continuously forming new vesicles in the periphery. From these vesicles, protoscoleces (the infective form for the definitive host) are generated by asexual budding. It is thought that in E. multilocularis, as in other flatworms, undifferentiated stem cells (so-called germinative cells in cestodes and neoblasts in free-living flatworms) are the sole source of new cells for growth and development. Therefore, this cell population should be of central importance for the progression of AE. In this work, I characterized the germinative cells of E. multilocularis, and demonstrate that they are indeed the only proliferating cells in metacestode vesicles. The germinative cells are a population of undifferentiated cells with similar morphology, and express high levels of transcripts of a novel non-autonomous retrotransposon family (ta-TRIMs). Experiments of recovery after hydroxyurea treatment suggest that individual germinative cells have extensive self-renewal capabilities. However, germinative cells also display heterogeneity at the molecular level, since only some of them express conserved homologs of fgfr, nanos and argonaute genes, suggesting the existence of several distinct sub-populations. Unlike free-living flatworms, cestode germinative cells lack chromatoid bodies. Furthermore, piwi and vasa orthologs are absent from the genomes of cestodes, and there is widespread expression of some conserved neoblast markers in E. multilocularis metacestode vesicles. All of these results suggest important differences between the stem cell systems of free-living flatworms and cestodes. Furthermore, I describe molecular markers for differentiated cell types, including the nervous system, which allow for the tracing of germinative cell differentiation. Using these molecular markers, a previously undescribed nerve net was discovered in metacestode vesicles. Because the metacestode vesicles are non-motile, and the nerve net of the vesicle is independent of the nervous system of the protoscolex, we propose that it could serve as a neuroendocrine system. By means of bioinformatic analyses, 22 neuropeptide genes were discovered in the E. multilocularis genome. Many of these genes are expressed in metacestode vesicles, as well as in primary cell preparations undergoing complete metacestode regeneration. This suggests a possible role for these genes in metacestode development. In line with this hypothesis, one putative neuropeptide (RGFI-amide) was able to stimulate the proliferation of primary cells at a concentration of 10-7 M, and the corresponding gene was upregulated during metacestode regeneration.}, subject = {Fuchsbandwurm}, language = {en} } @phdthesis{Herz2015, author = {Herz, Michaela}, title = {Molecular characterization of the serotonin and cAMP-signalling pathways in Echinococcus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-139249}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2015}, abstract = {Alveolar and cystic echinococcosis, caused by Echinococcus multilocularis and Echinococcus granulosus respectively, are severe zoonotic diseases with limited treatment options. The sole curative treatment is the surgical removal of the complete parasite material. Due to late diagnosis, chemotherapeutic treatment often is the only treatment option. Treatment is based on benzimidazoles, which merely act parasitostatic and often display strong side effects. Therefore, new therapeutic drugs are urgently needed. Evolutionarily conserved signalling pathways are known to be involved in hostparasite cross-communication, parasite development and survival. Moreover, they represent potential targets for chemotherapeutic drugs. In this context the roles of the serotonin- and cAMP-signalling pathways in Echinococcus were studied. Genes encoding serotonin receptors, a serotonin transporter and enzymes involved in serotonin biosynthesis could be identified in the E. multilocularis and E. granulosus genomes indicating that these parasites are capable of synthesizing and perceiving serotonin signals. Also the influence of exogenous serotonin on parasite development was studied. Serotonin significantly increased metacestode vesicle formation from primary cells and re-differentiation of protoscoleces. Inhibition of serotonin transport with citalopram significantly reduced metacestode vesicle formation from primary cells and caused death of protoscoleces and metacestodes. Furthermore, it could be shown that serotonin increased phosphorylation of protein kinase A substrates. Taken together, these results show that serotonin and serotonin transport are essential for Echinococcus development and survival. Consequently, components of the serotonin pathway represent potential drug targets. In this work the cAMP-signalling pathway was researched with focus on G-protein coupled receptors and adenylate cyclases. 76 G-protein coupled receptors, including members of all major families were identified in the E. multilocularis genome. Four genes homologous to adenylate cyclase IX were identified in the E. multilocularis genome and three in the E. granulosus genome. While glucagon caused no significant effects, the adenylate cyclase activator forskolin and the adenylate cyclase inhibitor 2', 5' didesoxyadenosine influenced metacestode vesicle formation from primary cells, re-differentiation of protoscoleces and survival of metacestodes. It was further shown that forskolin increases phosphorylation of protein kinase A substrates, indicating that forskolin activates the cAMP-pathway also in cestodes. These results indicate that the cAMP signalling pathway plays an important role in Echinococcus development and survival. To complement this work, the influence of different media and additives on E. granulosus protoscoleces was investigated. Anaerobic conditions and the presence of FBS prolonged protoscolex survival while different media influenced protoscolex activation and development. Taken together, this work provided important insights into developmental processes in Echinococcus and potential drug targets for echinococcosis chemotherapy.}, subject = {Serotonin}, language = {en} } @phdthesis{Herrmann2023, author = {Herrmann, Ruth Magdalena}, title = {Molekular- und zellbiologische Untersuchung zur Rolle des kanonischen Wnt-Signalwegs bei der Entwicklung von \(Echinococcus\) \(multilocularis\)}, doi = {10.25972/OPUS-27193}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-271937}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Die alveol{\"a}re Echinokokkose (AE) ist eine lebensbedrohliche Erkrankung des Menschen, welche durch das infiltrative Wachstum des Metazestoden-Larvenstadiums des Fuchsbandwurms (Echinococcus multilocularis) in der Leber verursacht wird. Das tumorartige Wachstum des Metazestoden beruht auf einer Echinococcus-spezifischen Modifikation der anterior-posterioren-K{\"o}rperachse (AP Achse). Es wird vermutet, dass dabei der anteriore Pol der invadierenden Oncosp{\"a}ren-Larve zun{\"a}chst abgeschaltet wird und sich der Metazestode anschließend asexuell als vesikul{\"a}res, posteriorisiertes Gewebes im Wirt vermehrt. Nach massiver Proliferation wird der anteriore Pol reetabliert und f{\"u}hrt zur Bildung zahlreicher Bandwurm-Kopfanlagen (Protoskolizes). Da die Ausbildung der AP K{\"o}rperachse evolutionsgeschichtlich konserviert {\"u}ber den wingless-related (Wnt)-Signalweg gesteuert wird, wurde in dieser Arbeit die Rolle von Wnt-Signaling bei der Musterbildung von E. multilocularis {\"u}ber molekular- und zellbiologische Studien n{\"a}her beleuchtet. Zentraler methodischer Ansatz der vorliegenden Arbeit war ein E. multilocularis Stammzell-Kultursystem, das Prim{\"a}rzellsystem, welches die in vitro-Generierung von Metazestoden-Vesikeln durch Proliferation und Differenzierung von germinativen Zellen (Stammzellen) erlaubt. {\"U}ber RNA-Sequenzierung wurde zun{\"a}chst gezeigt, dass in Prim{\"a}rzellkulturen sowohl Markergene f{\"u}r posteriore Entwicklung in Richtung Metazestode wie auch f{\"u}r Anterior-und Protoskolexmarker exprimiert werden. Unter Verwendung von RNA-Interferenz (RNAi) wurde anschließend ein erfolgreicher Knockdown des vermuteten Hauptregulators des kanonischen Wnt-Signalwegs, β Catenin (em-bcat1), erreicht und f{\"u}hrte zu einem charakteristischen, sogenannten ‚red dot' Ph{\"a}notyp, dem ersten jemals beschriebenen RNAi Ph{\"a}notyp f{\"u}r E. multilocularis-Prim{\"a}rzellen. Prim{\"a}rzellkulturen nach em-bcat1 RNAi zeigten eine stark verminderte F{\"a}higkeit, Metazestoden-Vesikel zu bilden sowie eine {\"U}berproliferation von germinativen Zellen. Zus{\"a}tzliche RNA-Seq-Analysen des Transkriptoms von RNAi(em-bcat1)-Kulturen zeigten eine signifikant verringerte Expression von Posterior- und Metazestodenmarkern, w{\"a}hrend Anterior- und Protoskolexmarker deutlich {\"u}berexprimiert wurden. Durch umfangreiche Whole-mount-in-situ-Hybridisierung (WMISH)-Experimente wurden diese Daten f{\"u}r eine Reihe ausgew{\"a}hlter Markergene f{\"u}r posteriore (Metazestode; em-wnt1, em-wnt11b, em-muc1) und f{\"u}r anteriore Entwicklung (Protoskolex; em sfrp, em-nou-darake, em npp36, em-frizzled10) verifiziert. In allen genannten F{\"a}llen zeigte sich durch {\"A}nderung der Polarit{\"a}t eine verminderte Genexpression von Posteriormarkern, w{\"a}hrend Anteriormarker deutlich erh{\"o}ht exprimiert wurden. {\"A}hnlich wie bei den verwandten, freilebenden Planarien, f{\"u}hrt demnach ein Knockdown des zentralen Wnt-Regulators β-Catenin bei E. multilocularis zu einer anteriorisierten, Anterior- und Protoskolexmarker dominierte Genexpression, welche der posteriorisierten Entwicklung zum Metazestoden entgegenwirkt. Neben Markergenen f{\"u}r die Ausbildung der AP-Achse wurden in dieser Arbeit auch solche f{\"u}r die medio-laterale (ML)-K{\"o}rperachse bei Zestoden erstmals beschrieben. So zeigte sich, dass ein Slit-Ortholog (em slit) im E. multilocularis Protoskolex im Bereich der K{\"o}rper-Mittellinie exprimiert wird und lieferte Hinweise darauf, dass, {\"a}hnlich zur Situation bei Planarien, die ML Achse von E. multilocularis durch Morphogengradienten aus slit (Mittellinie) und wnt5 (lateral) definiert wird. Im Metazestoden wird hingegen nur em-slit exprimiert. Der Metazestode besitzt damit als posterior-medianisiertes Gewebe Anlagen zur Polarit{\"a}t zur AP- und ML-Achse, welche erst mit Bildung von Protoskolizes vollst{\"a}ndig etabliert werden. Schließlich deuten die Ergebnisse dieser Arbeit darauf hin, dass bei der Wiederherstellung der K{\"o}rperachsen w{\"a}hrend der Entwicklung von Protoskolizes Hedgehog (Hh)-Signale entscheidend mitwirken. Zusammenfassend wurde in dieser Arbeit der zentrale Faktor des kanonischen Wnt Signalwegs, β-Catenin, als Hauptregulator der Entwicklung des tumorartig wachsenden E. multilocularis-Metazestoden identifiziert. Zudem wurde gezeigt, dass zur Metazestodenbildung neben einer Echinococcus-spezifischen Modifikation der AP K{\"o}rperachse auch eine solche der ML Achse beitr{\"a}gt. In humanen malignen Tumoren sind der Wnt-, Slit-Robo- und Hh-Signalweg gut erforschte Wirkstofftargets und k{\"o}nnten in Zukunft in {\"a}hnlicher Weise f{\"u}r eine zielgerichtete Therapie von AE dienen.}, subject = {Fuchsbandwurm}, language = {de} } @phdthesis{Stoll2021, author = {Stoll, Kristin}, title = {Molekulare Charakterisierung von Mitogen-activated Protein Kinase (MAPK)- Komponenten aus \(Echinococcus\) \(multilocularis\)}, doi = {10.25972/OPUS-24318}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-243180}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2021}, abstract = {Die alveol{\"a}re Echinokokkose (AE), verursacht durch das Metacestoden- Larvenstadium des Fuchsbandwurms Echinococcus multilocularis (E. multilocularis), ist eine lebensbedrohliche Zoonose der n{\"o}rdlichen Hemisph{\"a}re mit eingeschr{\"a}nkten therapeutischen M{\"o}glichkeiten. Bei der Suche nach neuen Therapeutika haben Mitogen-activated Proteinkinase (MAPK) -Kaskaden als pharmakologische Zielstrukturen aufgrund ihrer essentiellen Rolle bei der Zellproliferation und -differenzierung ein großes Potenzial. In der vorliegenden Arbeit wurden durch BLAST- und reziproke BLAST-Analysen elf potenzielle MAPK Kinase Kinasen (MAP3K), f{\"u}nf potenzielle MAPK Kinasen (MAP2K) und sechs potenzielle MAPK im E. multilocularis-Genom identifiziert, die teils hoch konserviert sind und in nahezu allen Entwicklungsstadien des Parasiten exprimiert werden. Diese Erkenntnisse lassen auf ein komplexes MAPK-Signaltransduktions- system in E. multilocularis mit großer Bedeutung f{\"u}r den Parasiten schließen. Transkriptomdatenanalysen und Whole Mount in Situ Hybridisierung (WMISH) zeigten, dass emmkkk1 (EmuJ_000389600) als einzige MAP3K neben der Expression in postmitotischen Zellen in besonderem Maße in proliferativen Stammzellen des Parasiten exprimiert wird und somit eine wichtige Rolle bei der Differenzierung von Stammzellen spielen k{\"o}nnte. In Yeast-Two-Hybrid (Y2H) -Wechselwirkungsassays wurden Interaktionen von mehreren upstream- (EmGRB2) und downstream- wirkenden Signalkaskadekomponenten des JNK (EmMKK3, EmMPK3) und ERK (EmMKK3, EmMPK4) -Signalwegs gefunden. Daraus l{\"a}sst sich schließen, dass EmMKKK1, analog zu seinem humanen Homolog HsM3K1, eine zentrale Rolle bei der Echinococcus-Wachstumsregulation durch Rezeptortyrosinkinasen und vielf{\"a}ltige weitere Funktionen im Parasiten besitzt. Anhand von Erkenntnissen an Platyhelminthes kann daher von einem großen Potenzial dieser neu charakterisierten Signalwege als chemotherapeutische Angriffspunkte ausgegangen werden, wenngleich erste RNA-Interferenz (RNAi)- und Inhibitorstudien an emmkkk1, emmpk1 und emmpk4 keine durchschlagenden Effekte auf das {\"U}berleben von Prim{\"a}rzellkulturen und die Bildung von Metacestodenvesikeln zeigten. Zusammenfassend konnte in der vorliegenden Arbeit mit EmMKKK1 und neuen ERK- und JNK-Signalwegen zentrale Komponenten der komplexen MAPK-Signalkaskaden in E. multilocularis identifiziert werden, die h{\"o}chstwahrscheinlich einen großen Beitrag zur enormen Regenerationsf{\"a}higkeit der Echinococcus-Stammzellen leisten und vom Wirt abgeleitete Signale wie Insulin, Epidermaler Wachstumsfaktor (EGF) und Fibroblasten-Wachstumsfaktor (FGF) {\"u}ber EmGRB2 in Proliferationsnetzwerke des Parasiten integrieren. Arzneimittel-Screening-Assays, die auf diese Signalwege abzielen, k{\"o}nnten daher zu alternativen Arzneimitteln f{\"u}hren, die alleine oder in Kombination mit einer bestehenden Chemotherapie (Benzimidazol) die Prognose von f{\"u}r AE-Patienten verbessern k{\"o}nnten.}, subject = {Fuchsbandwurm}, language = {de} } @phdthesis{Ulrich2024, author = {Ulrich, Johannes}, title = {Molekulare Charaktierisierung einer DyP-Typ Peroxidase des Humanparasiten \(Echinococcus\) \(multilocularis\)}, doi = {10.25972/OPUS-35714}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-357143}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2024}, abstract = {Die Alveol{\"a}re Echinokokkose (AE) ist eine t{\"o}dliche Infektionserkrankung, die durch den parasit{\"a}ren Plattwurm Echinococcus multilocularis verursacht wird. Genomanalysen von E. multilocularis ergaben ein Gen, das laut Vorhersage f{\"u}r eine DyP-Typ Peroxidase codiere. Ziel dieser Arbeit ist die biologische Funktion des codierten Enzyms besser zu verstehen und Hinweise auf eine m{\"o}gliche Rolle in der Abwehr von Reaktiven Sauerstoffspezies (ROS) zu erlangen. Das Gen wurde heterolog in E. Coli exprimiert und molekulare Charakteristika des Gens mit bioinformatischen und molekularbiologischen Methoden untersucht. Quantitative RT-PCR Untersuchungen gaben Aufschluss {\"u}ber das Transkriptprofil von emipox in unterschiedlichen Entwicklungsstadien von E. mulitlocularis. Mittels Whole-Mount In Situ-Hybridisierung (WMISH) wurden die Transkripte zudem lokalisiert und ihre Beziehung zum Stammzellsystem von E. multilocularis n{\"a}her untersucht. Die Zugeh{\"o}rigkeit von EmIPOX zur Gruppe der DyP-Typ Peroxidasen wurde best{\"a}tigt. Homologe beim Menschen kommen nicht vor. Es konnte nachgewiesen werden, dass Transkripte von emipox auch, aber keinesfalls ausschließlich, in Stammzellen vorliegen. {\"U}berdurchschnittlich viele Transkripte liegen im aktivierten Protoscolex und im Metacestoden ex vivo aus einer infizierten Wirtsleber vor. Untersuchungen zur Enzymaktivit{\"a}t von EmIPOX zeigten neben einer Peroxidase- auch eine Katalaseaktivit{\"a}t. Die vorliegende Arbeit ist die erste Charakterisierung einer DyP-Typ Peroxidase bei Tieren. Sie legt nahe, dass EmIPOX eine Rolle in der Entgiftung von ROS in E. multilocularis spielt und stellt den Charakter von EmIPOX als potenzieller pharmakologischer Zielstruktur heraus.}, subject = {Fuchsbandwurm}, language = {de} } @phdthesis{Eisenhuth2021, author = {Eisenhuth, Nicole Juliana}, title = {Novel and conserved roles of the histone methyltransferase DOT1B in trypanosomatid parasites}, doi = {10.25972/OPUS-21993}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-219936}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2021}, abstract = {The family of trypanosomatid parasites, including the human pathogens Trypanosoma brucei and Leishmania, has evolved sophisticated strategies to survive in harmful host environments. While Leishmania generate a safe niche inside the host's macrophages, Trypanosoma brucei lives extracellularly in the mammalian bloodstream, where it is constantly exposed to the attack of the immune system. Trypanosoma brucei ensures its survival by periodically changing its protective surface coat in a process known as antigenic variation. The surface coat is composed of one species of 'variant surface glycoprotein' (VSG). Even though the genome possesses a large repertoire of different VSG isoforms, only one is ever expressed at a time from one out of the 15 specialized subtelomeric 'expression sites' (ES). Switching the coat can be accomplished either by a recombination-based exchange of the actively-expressed VSG with a silent VSG, or by a transcriptional switch to a previously silent ES. The conserved histone methyltransferase DOT1B methylates histone H3 on lysine 76 and is involved in ES regulation in T. brucei. DOT1B ensures accurate transcriptional silencing of the inactive ES VSGs and influences the kinetics of a transcriptional switch. The molecular machinery that enables DOT1B to execute these regulatory functions at the ES is still elusive, however. To learn more about DOT1B-mediated regulatory processes, I wanted to identify DOT1B-associated proteins. Using two complementary approaches, specifically affinity purification and proximity-dependent biotin identification (BioID), I identified several novel DOT1B-interacting candidates. To validate these data, I carried out reciprocal co-immunoprecipitations with the most promising candidates. An interaction of DOT1B with the Ribonuclease H2 protein complex, which has never been described before in any other organism, was confirmed. Trypanosomal Ribonuclease H2 maintains genome integrity by resolving RNA-DNA hybrids, structures that if not properly processed might initiate antigenic variation. I then investigated DOT1B's contribution to this novel route to antigenic variation. Remarkably, DOT1B depletion caused an increased RNA-DNA hybrid abundance, accumulation of DNA damage, and increased VSG switching. Deregulation of VSGs from throughout the silent repertoire was observed, indicating that recombination-based switching events occurred. Encouragingly, the pattern of deregulated VSGs was similar to that seen in Ribonuclease H2-depleted cells. Together these data support the hypothesis that both proteins act together in modulating RNA-DNA hybrids to contribute to the tightly-regulated process of antigenic variation. The transmission of trypanosomatid parasites to mammalian hosts is facilitated by insect vectors. Parasites need to adapt to the extremely different environments encountered during transmission. To ensure their survival, they differentiate into various specialized forms adapted to each tissue microenvironment. Besides antigenic variation, DOT1B additionally affects the developmental differentiation from the mammalian-infective to the insect stage of Trypanosoma brucei. However, substantially less is known about the influence of chromatin-associated proteins such as DOT1B on survival and adaptation strategies of related Leishmania parasites. To elucidate whether DOT1B's functions are conserved in Leishmania, phenotypes after gene deletion were analyzed. As in Trypanosoma brucei, generation of a gene deletion mutant demonstrated that DOT1B is not essential for the cell viability in vitro. DOT1B deletion was accompanied with a loss of histone H3 lysine 73 trimethylation (the lysine homologous to trypanosomal H3K76), indicating that Leishmania DOT1B is also solely responsible for catalyzing this post-translational modification. As in T. brucei, dimethylation could only be observed during mitosis/cytokinesis, while trimethylation was detectable throughout the cell cycle in wild-type cells. In contrast to the trypanosome DOT1B, LmxDOT1B was not essential for differentiation in vitro. However, preliminary data indicate that the enzyme is required for effective macrophage infection. In conclusion, this study demonstrated that the identification of protein networks and the characterization of protein functions of orthologous proteins from related parasites are effective tools to improve our understanding of the parasite survival strategies. Such insights are a necessary step on the road to developing better treatments for the devastating diseases they cause.}, subject = {Trypanosoma brucei}, language = {en} } @phdthesis{Deutschmann2023, author = {Deutschmann, Sally}, title = {Prävalenz und Epidemiologie von Infektionen mit \(Neisseria\) \(gonorrhoeae\) und deren Resistenzlage gegen{\"u}ber Cephalosporinen der dritten Generation bei tansanischen Patientinnen und Patienten mit bestehender HIV-Infektion eines Referenzkrankenhauses im Nordwesten Tansanias}, doi = {10.25972/OPUS-31773}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-317735}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2023}, abstract = {Die Prävalenz von Infektionen mit Neisseria gonorrhoeae (NG) bei HIV-positiven Patientinnen und Patienten einer auf HIV-Infektionen spezialisierten Klinik in Mwanza im Nordwesten Tansani- as erwies sich mit 0,4\% bei Männern und 3,9\% bei Frauen als relativ niedrig. In dieser aktuellen Studie gab es unter Verwendung molekularer Antibiotikaresistenz(AMR)-Tests keine Hinweise auf eine Resistenz gegen Cephalosporine der dritten Generation. Weitere Kontrollen und Entwicklungen von NG- und AMR-Tests m{\"u}ssen implementiert werden. Molekulare Diagnoseverfahren auf der Basis von Urinproben als diagnostisches Material zum Nachweis von NG weisen wesentliche Vorteile f{\"u}r das Screening auf. Die Durchf{\"u}hrung eines Urinstreifentests hatte keinen positiven Vorhersagewert bez{\"u}glich einer Infektion mit NG oder einer AMR. K{\"u}nftige Untersuchungen sind anzuregen, um einerseits eine exaktere Angabe der Prävalenzraten und Risikofaktoren von Infektionen mit NG sowie deren Resistenzlage zu ermöglichen und andererseits eine effizientere Versorgung bzw. Behandlung der Gonorrhoe gewährleisten zu können.}, subject = {HIV}, language = {de} } @phdthesis{Schubert2015, author = {Schubert, Andreas}, title = {Protein kinases as targets for the development of novel drugs against alveolar echinococcosis}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-113694}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2015}, abstract = {The metacestode larval stage of the fox tapeworm Echinococcus multilocularis is the causative agent of alveolar echinococcosis (AE), one of the most lethal zoonosis of the northern hemisphere. The development of metacestode vesicles by asexual multiplication and the almost unrestricted infiltrative growth within the host organs is ensured from a population of undifferentiated, proliferative cells, so-called germinative cells. AE treatment options include surgery, if possible, as well as Benzimidazole-based chemotherapy (BZ). Given that the cellular targets of BZs, the -tubulins, are highly conserved between cestodes and humans, the chemotherapy is associated with considerable side-effects. Therefore, BZ can only be applied in parasitostatic doses and has to be given lifelong. Furthermore, the current anti-AE chemotherapy is ineffective in eliminating the germinative cell population of the parasite, which leads to remission of parasite growth as soon as therapy is discontinued. This work focuses on protein kinases involved in the proliferation and development of the parasite with the intention of developing novel anti-AE therapies. Polo-like kinases (Plks) are important regulators of the eukaryotic cell cycle and are involved in the regulation and formation of the mitotic spindles during the M-phase of the cell cycle. Plks have already been shown to be associated with deregulated cellular growth in human cancers and have been investigated as novel drug targets in the flatworm parasite Schistosoma mansoni. In the first part of this work, the characterisation of a novel and druggable parasite enzyme, EmPlk1, which is homologous to the polo-like kinase 1 (Plk1) of humans and S. mansoni (SmPlk1), is presented. Through in situ hybridisation, it could be demonstrated that emplk1 is specifically expressed in the Echinococcus germinative cells. Upon heterologous expression in the Xenopus oocyte system, EmPlk1 induced germinal vesicle breakdown, thus indicating that it is an active kinase. Furthermore, BI 2536, a compound originally designed to inhibit the human ortholog of EmPlk1, inhibited the EmPlk1 activity at a concentration of 25 nM. In vitro treatment of parasite vesicles with similar concentrations of BI 2536 led to the elimination of the germinative cells from Echinococcus larvae, thus preventing the growth and further development of the parasite. In in vitro cultivation systems for parasite primary cells, BI 2536 effectively inhibited the formation of new metacestode vesicles from germinative cells. Thus, BI 2536 has profound anti-parasitic activities in vitro at concentrations well within the range of plasma levels measured after the administration of safe dosages to patients (50 nM after 24 h). This implies that EmPlk1 is a promising new drug target for the development of novel anti-AE drugs that would specifically affect the parasite's stem cell population, namely the only parasite cells capable of proliferation. In addition to the chemotherapeutic aspects of this work, the inhibitor BI 2536 could be further used to study the function of stem cells in this model organism, utilising a method of injection of parasite stem cells into metacestode vesicles, for instance, as has been developed in this work. In the second part of this work, a novel receptor tyrosine kinase, the Venus flytrap kinase receptor (EmVKR) of E. multilocularis has been characterised. Members of this class of single-pass transmembrane receptors have recently been discovered in the related trematode S. mansoni and are associated with the growth and differentiation of sporocyst germinal cells and ovocytes. The ortholog receptor in EmVKR is characterised by an unusual domain composition of an extracellular Venus flytrap module (VFT), which shows significant similarity to GABA receptors, such as the GABAB receptor (γ-amino butyric acid type B) and is linked through a single transmembrane domain to an intracellular tyrosine kinase domain with similarities to the kinase domains of human insulin receptors. Based upon the size (5112bp) of emvkr and nucleotide sequence specificities, efforts have been made to isolate the gene from cell culture samples to study the ligand for the activation of this receptor type in Xenopus oocytes. To date, this type of receptor has only been described in invertebrates, thus making it an attractive target for drug screening. In a first trial, the ATP competitive inhibitor AG 1024 was tested in our in vitro cell culture. In conclusion, the EmVKR represents a novel receptor tyrosine kinase in E. multilocularis. Further efforts have to be made to identify the activating ligand of the receptor and its cellular function, which might strengthen the case for EmVKR as a potential drug target. The successful depletion of stem cells in the metacestode vesicle by the Plk1 inhibitor BI 2536 gives rise to optimising the chemical component for EmPlk1 as a new potential drug target. Furthermore, this inhibitor opens a new cell culture technique with high potential to study the cellular behaviour and influencing factors of stem cells in vitro.}, subject = {Chemotherapie}, language = {en} }