TY - JOUR A1 - Seibold, Sebastian A1 - Hothorn, Torsten A1 - Gossner, Martin M. A1 - Simons, Nadja K. A1 - Blüthgen, Nico A1 - Müller, Jörg A1 - Ambarlı, Didem A1 - Ammer, Christian A1 - Bauhus, Jürgen A1 - Fischer, Markus A1 - Habel, Jan C. A1 - Penone, Caterina A1 - Schall, Peter A1 - Schulze, Ernst‐Detlef A1 - Weisser, Wolfgang W. T1 - Insights from regional and short‐term biodiversity monitoring datasets are valuable: a reply to Daskalova et al. 2021 JF - Insect Conservation and Diversity N2 - Reports of major losses in insect biodiversity have stimulated an increasing interest in temporal population changes. Existing datasets are often limited to a small number of study sites, few points in time, a narrow range of land‐use intensities and only some taxonomic groups, or they lack standardised sampling. While new monitoring programs have been initiated, they still cover rather short time periods. Daskalova et al. 2021 (Insect Conservation and Diversity, 14, 1‐18) argue that temporal trends of insect populations derived from short time series are biased towards extreme trends, while their own analysis of an assembly of shorter‐ and longer‐term time series does not support an overall insect decline. With respect to the results of Seibold et al. 2019 (Nature, 574, 671–674) based on a 10‐year multi‐site time series, they claim that the analysis suffers from not accounting for temporal pseudoreplication. Here, we explain why the criticism of missing statistical rigour in the analysis of Seibold et al. (2019) is not warranted. Models that include ‘year’ as random effect, as suggested by Daskalova et al. (2021), fail to detect non‐linear trends and assume that consecutive years are independent samples which is questionable for insect time‐series data. We agree with Daskalova et al. (2021) that the assembly and analysis of larger datasets is urgently needed, but it will take time until such datasets are available. Thus, short‐term datasets are highly valuable, should be extended and analysed continually to provide a more detailed understanding of insect population changes under the influence of global change, and to trigger immediate conservation actions. KW - Arthropod KW - biodiversity KW - insect decline KW - land use KW - time series Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228309 VL - 14 IS - 1 SP - 144 EP - 148 ER - TY - THES A1 - Groma, Michaela T1 - Identification of a novel LysR-type transcriptional regulator in \(Staphylococcus\) \(aureus\) T1 - Identifizierung eines neuen Transkriptionsregulators vom LysR-Typ in \(Staphylococcus\) \(aureus\) N2 - Staphylococcus aureus is a facultative pathogen which causes a variety of infections. The treatment of staphylococcal infections is complicated because the bacteria is resistant to multiple common antibiotics. S. aureus is also known to express a variety of virulence factors which modulate the host’s immune response in order to colonize and invade certain host cells, leading to the host cell’s death. Among the virulence factors is a LysR-type transcriptional regulator (lttr) which is required for efficient colonization of secondary organs. In a recent report, which used transposon screening on S. aureus-infected mice, it was found that the amount of a novel lttr852 mutant bacteria recovered from the kidneys was significantly lower compared to the wildtype strains. This doctoral thesis therefore focused on phenotypical and molecular characterization of lttr852. An assessment of the S. aureus biofilm formation and the hemolysis revealed that lttr852 was not involved in the regulation of these virulence processes. RNA-sequencing for potential target genes of lttr852 identified differentially expressed genes that are involved in branched chain amino-acid biosynthesis, methionine sulfoxide reductase and copper transport, as well as a reduced transcription of genes encoding urease and of components of pyrimidine nucleotides. Promoter fusion with GFP reporters as as well as OmniLog were used to identify conditions under which the lttr852 was active. The promoter studies showed that glucose and high temperatures diminish the lttr852 promoter activity in a time-dependent manner, while micro-aerobic conditions enhanced the promoter activity. Copper was found to be a limiting factor. In addition, the impact on promoter activity of the lttr852 was tested in the presence of various regulators, but no central link to the genes involved in virulence was identified. The present work, thus, showed that lttr852, a new member of the class of LysR-type transcriptional regulators in S. aureus, has an important role in the rapid adaptation of S. aureus to the changing microenvironment of the host. N2 - Staphylococcus aureus ist ein fakultativer Erreger, der eine Vielzahl von Infektionen verursacht. Die Behandlung von Staphylokokken-Infektionen ist aufgrund des Auftretens einer Resistenz gegen mehrere gängige Antibiotika kompliziert. Es ist bekannt, dass S. aureus eine Vielzahl von Virulenzfaktoren exprimiert, um die Immunantwort des Wirts zu umgehen, und so in bestimmte Wirtszellen einzudringen und diese zu kolonisieren, was zum Tod von Wirtszellen führen kann. Unter den Virulenzfaktoren befindet sich ein Transkriptions-regulator vom LysR-Typ (lttr), der für eine effiziente Besiedlung von Sekundärorganen erforderlich ist. In einem kürzlich durchgeführten Transposon-Screen, bei dem Mäuse mit S. aureus infiziert wurden, wurde ein neuartiger lttr, der lttr852 identifiziert, bei dem aus den Nieren gewonnenen Bakterien signifikant dezimiert waren. Diese Doktorarbeit befasste sich mit der phänotypischen und molekularen Charakterisierung von lttr852. Die Auswertung der Biofilmbildung und der Hämolyse von S. aureus ergab, dass lttr852 nicht an der Regulation dieser Virulenzprozesse beteiligt war. Die RNA-Sequenzierung für potenzielle Zielgene von lttr852 identifizierte sowohl eine erhöhte Expression von Genen, die in der Aminosäuren-Biosynthese, Methionin-Sulfoxid-Reduktase und dem Kupfertransport involviert sind, als auch eine verringerte Transkription von codierenden Genen der Urease und Komponenten der Pyrimidin Nukleotide. Die Promotorfusion mit dem GFP-Reporter sowie das OmniLog System wurden verwendet, um Bedingungen zu identifizieren unter denen das lttr852 aktiv ist. Die Promotorstudien ergaben, dass die Anwesenheit von Glucose und eine erhöhte Temperatur die Promotoraktivität von lttr852 zeitabhängig herabsetzt, wobei die Aktivität durch mikroaerobe Bedingungen begünstigt wird. Kupfer wurde als limitierender Faktor identifiziert. Außerdem wurde der Einfluss diverser Regulatoren auf die transkriptionelle Regulation von lttr852 kontrolliert, jedoch keine zentrale Rolle in der Regulation von Virulenzgenen zugewiesen. Damit konnte innerhalb der vorliegenden Arbeit gezeigt werden, dass lttr852, ein neues Mitglied der Klasse der LysR-Typ Transkriptionsregulatoren in S. aureus, eine wichtige Rolle in der schnellen Adaption von S. aureus an die wechselnde Mikroumgebungen des Wirts hat. KW - Staphylococcus aureus KW - transcriptional regulation KW - metabolic adaptation KW - secondary site infection KW - LysR-type Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-246757 ER - TY - JOUR A1 - Reiling, Sarah J. A1 - Krohne, Georg A1 - Friedrich, Oliver A1 - Geary, Timothy G. A1 - Rohrbach, Petra T1 - Chloroquine exposure triggers distinct cellular responses in sensitive versus resistant Plasmodium falciparum parasites JF - Scientific Reports N2 - Chloroquine (CQ) treatment failure in Plasmodium falciparum parasites has been documented for decades, but the pharmacological explanation of this phenotype is not fully understood. Current concepts attribute CQ resistance to reduced accumulation of the drug at a given external CQ concentration ([CQ] ex) in resistant compared to sensitive parasites. The implication of this explanation is that the mechanisms of CQ-induced toxicity in resistant and sensitive strains are similar once lethal internal concentrations have been reached. To test this hypothesis, we investigated the mechanism of CQ-induced toxicity in CQ-sensitive (CQS) versus CQ-resistant (CQR) parasites by analyzing the time-course of cellular responses in these strains after exposure to varying [CQ] ex as determined in 72 h toxicity assays. Parasite killing was delayed in CQR parasites for up to 10 h compared to CQS parasites when exposed to equipotent [CQ] ex. In striking contrast, brief exposure (1 h) to lethal [CQ] ex in CQS but not CQR parasites caused the appearance of hitherto undescribed hemozoin (Hz)-containing compartments in the parasite cytosol. Hz-containing compartments were very rarely observed in CQR parasites even after CQ exposures sufficient to cause irreversible cell death. These findings challenge current concepts that CQ killing of malaria parasites is solely concentration-dependent, and instead suggest that CQS and CQR strains fundamentally differ in the consequences of CQ exposure. KW - Cellular imaging KW - Parasite development Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-225123 VL - 8 IS - 11137 ER - TY - JOUR A1 - Thorn, Simon A1 - Seibold, Sebastian A1 - Leverkus, Alexandro B A1 - Michler, Thomas A1 - Müller, Jörg A1 - Noss, Reed F A1 - Stork, Nigel A1 - Vogel, Sebastian A1 - Lindenmayer, David B T1 - The living dead: acknowledging life after tree death to stop forest degradation JF - Frontiers in Ecology and the Environment N2 - Global sustainability agendas focus primarily on halting deforestation, yet the biodiversity crisis resulting from the degradation of remaining forests is going largely unnoticed. Forest degradation occurs through the loss of key ecological structures, such as dying trees and deadwood, even in the absence of deforestation. One of the main drivers of forest degradation is limited awareness by policy makers and the public on the importance of these structures for supporting forest biodiversity and ecosystem function. Here, we outline management strategies to protect forest health and biodiversity by maintaining and promoting deadwood, and propose environmental education initiatives to improve the general awareness of the importance of deadwood. Finally, we call for major reforms to forest management to maintain and restore deadwood; large, old trees; and other key ecological structures. KW - forest degradation KW - biodiversity KW - deadwood Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218575 VL - 18 IS - 9 SP - 505 EP - 512 ER - TY - THES A1 - Markert, Sebastian Matthias T1 - Enriching the understanding of synaptic architecture from single synapses to networks with advanced imaging techniques T1 - Vertiefung des Verständnisses synaptischer Architektur von der einzelnen Synapse bis zum Netzwerk mit modernsten bildgebenden Verfahren N2 - Because of its complexity and intricacy, studying the nervous system is often challenging. Fortunately, the small nematode roundworm Caenorhabditis elegans is well established as a model system for basic neurobiological research. The C. elegans model is also the only organism with a supposedly complete connectome, an organism-wide map of synaptic connectivity resolved by electron microscopy, which provides some understanding of how the nervous system works as a whole. However, the number of available data-sets is small and the connectome contains errors and gaps. One example of this concerns electrical synapses. Electrical synapses are formed by gap junctions and difficult to map due to their often ambiguous morphology in electron micrographs, leading to misclassification or omission. On the other hand, chemical synapses are more easily mapped, but many aspects of their mode of operation remain elusive and their role in the C. elegans connectome is oversimplified. A comprehensive understanding of signal transduction of neurons between each other and other cells will be indispensable for a comprehensive understanding of the nervous system. In this thesis, I approach these challenges with a combination of advanced light and electron microscopy techniques. First, this thesis describes a strategy to increase synaptic specificity in connectomics. Specifically, I classify gap junctions with a high degree of confidence. To achieve this, I utilized array tomography (AT). In this thesis, AT is adapted for high-pressure freezing to optimize for structure preservation and for super-resolution light microscopy; in this manner, I aim to bridge the gap between light and electron microscopy resolutions. I call this adaptation super-resolution array tomography (srAT). The srAT approach made it possible to clearly identify and map gap junctions with high precision and accuracy. The results from this study showcased the feasibility of incorporating electrical synapses into connectomes in a systematic manner, and subsequent studies have used srAT for other models and questions. As mentioned above, the C. elegans connectomic model suffers from a shortage of datasets. For most larval stages, including the special dauer larval stage, connectome data is completely missing up to now. To obtain the first partial connectome data-set of the C. elegans dauer larva, we used focused ion-beam scanning electron microscopy (FIB-SEM). This technique offers an excellent axial resolution and is useful for acquiring large volumes for connectomics. Together with our collaborators, I acquired several data-sets which enable the analysis of dauer stage-specific “re-wiring” of the nervous system and thus offer valuable insights into connectome plasticity/variability. While chemical synapses are easy to map relative to electrical synapses, signal transduction via chemical transmitters requires a large number of different proteins and molecular processes acting in conjunction in a highly constricted space. Because of the small spatial scale of the synapse, investigating protein function requires very high resolution, which electron tomography provides. I analyzed electron tomograms of a worm-line with a mutant synaptic protein, the serine/threonine kinase SAD-1, and found remarkable alterations in several architectural features. My results confirm and re-contextualize previous findings and provide new insight into the functions of this protein at the chemical synapse. Finally, I investigated the effectiveness of our methods on “malfunctioning,” synapses, using an amyotrophic lateral sclerosis (ALS) model. In the putative synaptopathy ALS, the mechanisms of motor neuron death are mostly unknown. However, mutations in the gene FUS (Fused in Sarcoma) are one known cause of the disease. The expression of the mutated human FUS in C. elegans was recently shown to produce an ALS-like phenotype in the worms, rendering C. elegans an attractive disease model for ALS. Together with our collaboration partners, I applied both srAT and electron tomography methods to “ALS worms” and found effects on vesicle docking. These findings help to explain electrophysiological recordings that revealed a decrease in frequency of mini excitatory synaptic currents, but not amplitudes, in ALS worms compared to controls. In addition, synaptic endosomes appeared larger and contained electron-dense filaments in our tomograms. These results substantiate the idea that mutated FUS impairs vesicle docking and also offer new insights into further molecular mechanisms of disease development in FUS-dependent ALS. Furthermore, we demonstrated the broader applicability of our methods by successfully using them on cultured mouse motor neurons. Overall, using the C. elegans model and a combination of light and electron microscopy methods, this thesis helps to elucidate the structure and function of neuronal synapses, towards the aim of obtaining a comprehensive model of the nervous system. N2 - Das Nervensystem ist ein definierendes Merkmal aller Tiere, unter anderem verantwortlich für Sinneswahrnehmung, Bewegung und „höhere“ Hirnfunktionen. Wegen dessen Komplexität und Feingliedrigkeit stellt das Erforschen des Nervensystems oft eine Herausforderung dar. Jedoch ist der kleine Fadenwurm Caenorhabditis elegans als Modellsystem für neurobiologische Grundlagenforschung gut etabliert. Erbesitzt eines der kleinsten und unveränderlichsten bekannten Nervensysteme. C.elegans ist auch das einzige Modell, für das ein annähernd vollständiges Konnektom vorliegt, eine durch Elektronenmikroskopie erstellte Karte der synaptischen Verbindungen eines gesamten Organismus, die Einblicke in die Funktionsweise des Nervensystems als Ganzes erlaubt. Allerdings ist die Anzahl der verfügbaren Datensätze gering und das Konnektom enthält Fehler und Lücken. Davon sind beispielsweise elektrische Synapsen betroffen. Elektrische Synapsen werden von Gap Junctions gebildet und sind auf Grund ihrer oft uneindeutigen Morphologie in elektronenmikroskopischen Aufnahmen schwierig zu kartieren, was dazu führt, dass einige falsch klassifiziert oder übersehen werden. Chemische Synapsen sind dagegen einfacher zu kartieren, aber viele Aspekte ihrer Funktionsweise sind schwer zu erfassen und ihre Rolle im Konnektom von C.elegans ist daher zu vereinfacht dargestellt. Ein umfassendes Verständnis der Signaltransduktion von Neuronen untereinander und zu anderen Zellen wird Voraussetzung für ein vollständiges Erfassen des Nervensystems sein. In der vorliegenden Arbeit gehe ich diese Herausforderungen mithilfe einer Kombination aus modernsten licht- und elektronenmikroskopischen Verfahren an. Zunächst beschreibt diese Arbeit eine Strategie, um die synaptische Spezifität in der Konnektomik zu erhöhen, indem ich Gap Junctions mit einem hohen Maß an Genauigkeit klassifiziere. Um dies zu erreichen, nutzte ich array tomography (AT), eine Technik, die Licht- und Elektronenmikrokopie miteinander korreliert. In dieser Arbeit wird AT adaptiert für Hochdruckgefrierung, um die Strukturerhaltung zu optimieren, sowie für ultrahochauflösende Lichtmikroskopie; so wird die Kluft zwischen den Auflösungsbereichen von Licht- und Elektronenmikroskopie überbrückt. Diese Adaption nenne ich super-resolution array tomography (srAT). Der srATAnsatz machte es möglich, Gap Junctions mit hoher Präzision und Genauigkeit klar zu identifizieren. Für diese Arbeit konzentrierte ich mich dabei auf Gap Junctions des retrovesikulären Ganglions von C.elegans. Die Ergebnisse dieser Studie veranschaulichen, wie es möglich wäre, elektrische Synapsen systematisch in Konnektome aufzunehmen. Nachfolgende Studien haben srAT auch auf andere Modelle und Fragestellungen angewandt ... KW - Caenorhabditis elegans KW - Synapse KW - Elektronenmikroskopie KW - Myatrophische Lateralsklerose KW - connectomics KW - focused ion-beam scanning electron microscopy KW - super-resolution array tomography Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189935 ER - TY - JOUR A1 - Scheer, Ulrich T1 - Boveri's research at the Zoological Station Naples: Rediscovery of his original microscope slides at the University of Würzburg JF - Marine Genomics N2 - Eric Davidson once wrote about Theodor Boveri: "From his own researches, and perhaps most important, his generalized interpretations, derive the paradigms that underlie modern inquiries into the genomic basis of embryogenesis" (Davidson, 1985). As luck would have it, the "primary data" of Boveri's experimental work, namely the microscope slides prepared by him and his wife Marcella during several stays at the Zoological Station in Naples (1901/02, 1911/12 and 1914), have survived at the University of Wurzburg. More than 600 slides exist and despite their age they are in a surprisingly good condition. The slides are labelled and dated in Boveri's handwriting and thus can be assigned to his published experimental work on sea urchin development. The results allowed Boveri to unravel the role of the cell nucleus and its chromosomes in development and inheritance. Here, I present an overview of the slides in the context of Boveri's work along with photographic images of selected specimens taken from the original slides. It is planned to examine the slides in more detail, take high-resolution focal image series of significant specimens and make them online available. KW - Sea urchin development KW - Polyspermy KW - Multipolar mitosis KW - Aneuploidy KW - Merogone experiments KW - Science history Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228453 VL - 40 ER - TY - THES A1 - Gründl, Marco T1 - Biochemical characterization of the MMB-Hippo crosstalk and its physiological relevance for heart development T1 - Biochemische Charakterisierung des MMB-Hippo Signalweges und dessen physiologische Rolle in der Herzentwicklung N2 - The Myb-MuvB (MMB) complex plays an essential role in the time-dependent transcriptional activation of mitotic genes. Recently, our laboratory identified a novel crosstalk between the MMB-complex and YAP, the transcriptional coactivator of the Hippo pathway, to coregulate a subset of mitotic genes (Pattschull et al., 2019). Several genetic studies have shown that the Hippo-YAP pathway is essential to drive cardiomyocyte proliferation during cardiac development (von Gise et al., 2012; Heallen et al., 2011; Xin et al., 2011). However, the exact mechanisms of how YAP activates proliferation of cardiomyocytes is not known. This doctoral thesis addresses the physiological role of the MMB-Hippo crosstalk within the heart and characterizes the YAP-B-MYB interaction with the overall aim to identify a potent inhibitor of YAP. The results reported in this thesis indicate that complete loss of the MMB scaffold protein LIN9 in heart progenitor cells results in thinning of ventricular walls, reduced cardiomyocyte proliferation and early embryonic lethality. Moreover, genetic experiments using mice deficient in SAV1, a core component of the Hippo pathway, and LIN9-deficient mice revealed that the correct function of the MMB complex is critical for proliferation of cardiomyocytes due to Hippo-deficiency. Whole genome transcriptome profiling as well as genome wide binding studies identified a subset of Hippo-regulated cell cycle genes as direct targets of MMB. By proximity ligation assay (PLA), YAP and B-MYB were discovered to interact in embryonal cardiomyocytes. Biochemical approaches, such as co-immunoprecipitation assays, GST-pulldown assays, and µSPOT-based peptide arrays were employed to characterize the YAP-B-MYB interaction. Here, a PY motif within the N-terminus of B-MYB was found to directly interact with the YAP WW-domains. Consequently, the YAP WW-domains were important for the ability of YAP to drive proliferation in cardiomyocytes and to activate MMB target genes in differentiated C2C12 cells. The biochemical information obtained from the interaction studies was utilized to develop a novel competitive inhibitor of YAP called MY-COMP (Myb-YAP competition). In MY-COMP, the protein fragment of B-MYB containing the YAP binding domain is fused to a nuclear localization signal. Co-immunoprecipitation studies as well as PLA revealed that the YAP-B-MYB interaction is robustly blocked by expression of MY-COMP. Adenoviral overexpression of MY-COMP in embryonal cardiomyocytes suppressed entry into mitosis and blocked the pro-proliferative function of YAP. Strikingly, characterization of the cellular phenotype showed that ectopic expression of MY-COMP led to growth defects, nuclear abnormalities and polyploidization in HeLa cells. Taken together, the results of this thesis reveal the mechanism of the crosstalk between the Hippo signaling pathway and the MMB complex in the heart and form the basis for interference with the oncogenic activity of the Hippo coactivator YAP. N2 - Der Myb-MuvB Komplex spielt eine essenzielle Rolle in der transkriptionellen Aktivierung von Zellzyklusgenen. Unser Labor hat kürzlich einen bis dahin unbekannten Mechanismus zwischen dem MMB-Komplex und Hippo-YAP Signalweg, der zur Aktivierung von Mitosegenen beiträgt, identifiziert. Der Hippo-YAP Signalweg ist beteiligt an der Gewebehomöostase und am Wachstum von Organen. So reguliert der Hippo-YAP Signalweg zum Beispiel während der Herzentwicklung die Proliferation von Herzmuskelzellen. Der exakte Mechanismus wie YAP die Zellteilung von Kardiomyozyten aktiviert, ist jedoch bisher nicht bekannt. In der vorliegenden Doktorarbeit wird das Zusammenspiel zwischen dem Hippo-Signalweg und dem MMB-Komplex im Herzen untersucht. Außerdem wird die Interaktion zwischen YAP und B-MYB biochemisch charakterisiert, um einen Inhibitor zu entwickeln, der die Aktivität von YAP vermindert. Die Ergebnisse dieser Doktorarbeit zeigen, dass der Verlust der zentralen Untereinheit des MMB-Komplexes, LIN9, in Vorläuferzellen der Kardiomyozyten zu einer Reduktion der Herzwand sowie zu einer niedrigeren Proliferationsrate von Herzmuskelzellen und einer erhöhten Embryonalsterblichkeit führt. Außerdem wurde in genetischen Experimenten mit Hippo- und LIN9-defizienten Mäusen gezeigt, dass der MMB-Komplex wichtig für die Aktivierung der Proliferation in Hippo-defizienten Kardiomyozyten ist. Eine globale Analyse der Transkription und Chromatinbindung von YAP und LIN9 im Herzen zeigte, dass eine Untergruppe von Zellzyklusgenen, die nach Inaktivierung des Hippo-Signalwegs vermehrt exprimiert werden, gleichzeitig den MMB-Komplex am Promoter gebunden haben. Durch Interaktionsstudien konnte gezeigt werden, dass YAP und B-MYB in embryonalen Kardiomyozyten miteinander interagieren. Die Bindung der beiden Transkriptionsfaktoren wurde durch Co-Immunpräzipitation, GST-Pulldown-Analysen und Peptid-Arrays biochemisch untersucht. Dabei wurde gezeigt, dass ein PY-Motiv im N-terminus von B-MYB direkt an die WW-Domänen von YAP bindet. Im Umkehrschluss wurde festgestellt, dass die WW-Domänen von YAP essenziell sind, um sowohl die Proliferation in Herzmuskelzellen als auch die Expression von Mitosegenen in differenzierten C2C12 Zellen zu aktivieren. Letztendlich wurden die Ergebnisse der Interaktionsstudie genutzt, um einen neuartigen kompetitiven Inhibitor von YAP zu entwickeln. Für MY-COMP (Myb-YAP Competition) wurde der Proteinabschnitt von B-MYB, der die YAP Bindedomäne enthält, mit einer Kernlokalisierungssequenz fusioniert. Bindestudien zeigten, dass MY-COMP die Interaktion zwischen YAP und B-MYB effektiv blockiert. Eine durch Adenoviren vermittelte Überexpression von MY-COMP in embryonalen Herzmuskelzellen resultierte in einer verminderten Anzahl von mitotischen Zellen. Somit wird durch Expression von MY-COMP, die proliferative Fähigkeit von YAP vermindert. Interessanterweise wurden in HeLa Zellen, die mit MY-COMP behandelt wurden, vermehrt Abnormalitäten der Zellkerne, polyploide Zellen sowie ein Wachstumsdefizit beobachtet. Zusammengefasst verdeutlichen die Ergebnisse dieser Doktorarbeit die Bedeutung des Zusammenspiels zwischen dem MMB-Komplex und dem Hippo-YAP-Signalweg für die Herzentwicklung und bilden die Grundlage, für die effektive Inhibierung der onkogenen Eigenschaften des Hippo-Coaktivators YAP. KW - Zellzyklus KW - Heart development KW - Hippo pathway KW - Myb-MuvB complex KW - Cardiomyocyte Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-213328 ER - TY - JOUR A1 - Wolf, Matthias T1 - How to teach about what is a species JF - Biology N2 - To ask students what a species is always has something rhetorical about it. Too quickly comes the rote answer, often learned by heart without ever thinking about it: “A species is a reproductive community of populations (reproductively isolated from others), which occupies a specific niche in nature” (Mayr 1982). However, do two people look alike because they are twins or are they twins because they look alike? “Two organisms do not belong to the same species because they mate and reproduce, but they only are able to do so because they belong to the same species” (Mahner and Bunge 1997). Unfortunately, most biology (pre-university) teachers have no opinion on whether species are real or conceptual, simply because they have never been taught the question themselves, but rather one answer they still pass on to their students today, learned by heart without ever thinking about it. Species are either real or conceptual and, in my opinion, it is this “or” that we should teach about. Only then can we discuss those fundamental questions such as who or what is selected, who or what evolves and, finally, what is biodiversity and phylogenetics all about? Individuals related to each other by the tree of life. KW - biospecies KW - species as individuals KW - species as natural kinds KW - species concept KW - species problem Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241052 SN - 2079-7737 VL - 10 IS - 6 ER - TY - JOUR A1 - Othman, Eman M. A1 - Fathy, Moustafa A1 - Bekhit, Amany Abdlrehim A1 - Abdel-Razik, Abdel-Razik H. A1 - Jamal, Arshad A1 - Nazzal, Yousef A1 - Shams, Shabana A1 - Dandekar, Thomas A1 - Naseem, Muhammad T1 - Modulatory and toxicological perspectives on the effects of the small molecule kinetin JF - Molecules N2 - Plant hormones are small regulatory molecules that exert pharmacological actions in mammalian cells such as anti-oxidative and pro-metabolic effects. Kinetin belongs to the group of plant hormones cytokinin and has been associated with modulatory functions in mammalian cells. The mammalian adenosine receptor (A2a-R) is known to modulate multiple physiological responses in animal cells. Here, we describe that kinetin binds to the adenosine receptor (A2a-R) through the Asn253 residue in an adenosine dependent manner. To harness the beneficial effects of kinetin for future human use, we assess its acute toxicity by analyzing different biochemical and histological markers in rats. Kinetin at a dose below 1 mg/kg had no adverse effects on the serum level of glucose or on the activity of serum alanine transaminase (ALT) or aspartate aminotransferase (AST) enzymes in the kinetin treated rats. Whereas, creatinine levels increased after a kinetin treatment at a dose of 0.5 mg/kg. Furthermore, 5 mg/kg treated kinetin rats showed normal renal corpuscles, but a mild degeneration was observed in the renal glomeruli and renal tubules, as well as few degenerated hepatocytes were also observed in the liver. Kinetin doses below 5 mg/kg did not show any localized toxicity in the liver and kidney tissues. In addition to unraveling the binding interaction between kinetin and A2a-R, our findings suggest safe dose limits for the future use of kinetin as a therapeutic and modulatory agent against various pathophysiological conditions. KW - cytokinin kinetin KW - modulatory effects KW - in vivo toxicity KW - A2a-R receptor Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-223064 SN - 1420-3049 VL - 26 IS - 3 ER - TY - THES A1 - Zachary, Marie T1 - Functional characterization of small non-coding RNAs of \(Neisseria\) \(gonorrhoeae\) T1 - Funktionelle Charakterisierung kleiner nicht-kodierender RNAs in \(Neisseria\) \(gonorrhoeae\) N2 - During infection, bacteria need to adapt to a changing environment and have to endure various stress conditions. Small non-coding RNAs are considered as important regulators of bacterial gene expression and so allow quick adaptations by altering expression of specific target genes. Regulation of gene expression in the human-restricted pathogen Neisseria gonorrhoeae, the causative agent of the sexually transmitted disease gonorrhoea, is only poorly understood. The present study aims a better understanding of gene regulation in N. gonorrhoeae by studying small non-coding RNAs. The discovery of antisense RNAs for all opa genes led to the hypothesis of asRNA-mediated degradation of out-of-frame opa transcripts. Analysis of asRNA expression revealed a very low abundance of the transcripts and inclusion of another phase-variable gene in the study indicates that the asRNAs are not involved in degradation of out-of-frame transcripts. This doctoral thesis focuses on the analysis of trans-acting sRNAs. The sibling sRNAs NgncR_162 and NgncR_163 were discovered as post-transcriptional regulators altering expression of genes involved in metabolic processes, amino acid uptake and transcriptional regulation. A more detailed analysis by in silico and transcriptomic approaches showed that the sRNAs regulate a broad variety of genes coding for proteins of central metabolism, amino acid biosynthesis and degradation and several transport processes. Expression levels of the sibling sRNAs depend on the growth phase of the bacteria and on the growth medium. This indicates that NgncR_162 and NgncR_163 are involved in the adaptation of the gonococcal metabolism to specific growth conditions. This work further initiates characterisation of the sRNA NgncR_237. An in silico analysis showed details on sequence conservation and a possible secondary structure. A combination of in silico target prediction and differential RNA sequencing resulted in the identification of several target genes involved in type IV pilus biogenesis and DNA recombination. However, it was not successful to find induction conditions for sRNA expression. Interestingly, a possible sibling sRNA could be identified that shares the target interaction sequence with NgncR_237 and could therefore target the same mRNAs. In conclusion, this thesis provides further insights in gene regulation by non-coding RNAs in N. gonorrhoeae by analysing two pairs of sibling sRNAs modulating bacterial metabolism or possibly type IV pilus biogenesis. N2 - Bakterien müssen sich während des Infektionsprozesses an eine sich veränderte Umgebung anpassen und sind dabei zahlreichen Stressfaktoren ausgesetzt. Kleine, nicht-kodierende RNAs gelten als wichtige Regulatoren der bakteriellen Genexpression und ermöglichen daher eine schnelle Anpassung durch eine Veränderung der Expression spezifischer Ziel-Gene. Die Regulation der Genexpression des Humanpathogens Neisseria gonorrhoeae, Auslöser der Geschlechtskrankheit Gonorrhö, ist bis jetzt kaum verstanden. Die vorliegende Studie soll durch die Analyse kleiner, nicht-kodierender RNAs zum besseren Verständnis der Genregulation in Gonokokken beitragen. Durch die Entdeckung von antisense-RNAs für alle opa Gene wurde die Hypothese entwickelt, dass diese für den Abbau von opa Transkripten außerhalb des Leserahmens verantwortlich sind. Eine Analyse der asRNA Expression zeigte jedoch, dass diese sehr wenig exprimiert werden und auch die Untersuchung eines anderen phasenvariablen Gens weist darauf hin, dass die asRNAs keine Bedeutung für den Abbau von Transkripten außerhalb des Leserahmens haben. Der Schwerpunkt der Doktorarbeit liegt auf der Untersuchung trans-codierter sRNAs. Die Zwillings-sRNAs NgncR_162 und NgncR_163 agieren als post-transkriptionelle Regulatoren, die die Expression von Genen verändern, die bei Stoffwechselprozessen, Aminosäureaufnahme und transkriptioneller Regulation eine Rolle spielen. Eine detailliertere Analyse durch in silico- und Transkriptom-Studien zeigte, dass die sRNAs ein großes Spektrum an Genen regulieren, die für Proteine des Zentralstoffwechsels, der Aminosäurebiosynthese und des –abbaus, sowie zahlreicher Transportprozesse kodieren. Die Expressionslevel der Zwillings-sRNAs hängen von der Wachstumsphase der Bakterien und dem Wachstumsmedium ab. Das weist darauf hin, dass NgncR_162 und NgncR_163 eine Rolle bei der Adaptation des Stoffwechsels von Gonokokken zu bestimmten Wachstumsbedingungen spielen. In dieser Arbeit wird zudem die Charakterisierung der sRNA NgncR_237 initiiert. Im Rahmen von in silico Analysen wurde die Sequenzkonservierung und mögliche Sekundärstruktur untersucht. Eine Kombination aus in silico Zielgen-Vorhersage und differentieller RNA Sequenzierung führte zur Identifizierung zahlreicher Zielgene, die in der Biogenese von Typ IV Pili und DNA Rekombination eine Rolle spielen. Allerdings konnten keine Induktionsbedingungen für die sRNA Expression gefunden werden. Interessanterweise konnte eine mögliche Zwillings-sRNA identifiziert werden, die dieselbe Targetinteraktionsdomäne wie NgncR_237 hat und somit dieselben Zielgene regulieren könnte. Zusammenfassend ermöglicht diese Arbeit neue Einblicke in die Genregulation durch nicht-kodierende RNAs in Gonokokken, indem zwei Paare Zwillings-sRNAs analysiert wurden, die den bakteriellen Stoffwechsel anpassen oder möglicherweise eine Rolle in der Typ IV Pilus Biogenese spielen. KW - Neisseria gonorrhoeae KW - Non-coding RNA KW - Genregulation KW - regulation of gene expression Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-245826 ER -