TY - THES A1 - Vollmuth, Nadine T1 - Role of the proto-oncogene c-Myc in the development of Chlamydia trachomatis T1 - Die Rolle des proto-onkogenes c-Myc in der Entwicklung von Chlamydia trachomatis N2 - Chlamydia trachomatis, an obligate intracellular human pathogen, is the world’s leading cause of infection related blindness and the most common, bacterial sexually transmitted disease. In order to establish an optimal replicative niche, the pathogen extensively interferes with the physiology of the host cell. Chlamydia switches in its complex developmental cycle between the infectious non-replicative elementary bodies (EBs) and the non-infectious replicative reticulate bodies (RBs). The transformation to RBs, shortly after entering a host cell, is a crucial process in infection to start chlamydial replication. Currently it is unknown how the transition from EBs to RBs is initiated. In this thesis, we could show that, in an axenic media approach, L glutamine uptake by the pathogen is crucial to initiate the EB to RB transition. L-glutamine is converted to amino acids which are used by the bacteria to synthesize peptidoglycan. Peptidoglycan inturn is believed to function in separating dividing Chlamydia. The glutamine metabolism is reprogrammed in infected cells in a c-Myc-dependent manner, in order to accomplish the increased requirement for L-glutamine. Upon a chlamydial infection, the proto-oncogene c-Myc gets upregulated to promote host cell glutaminolysis via glutaminase GLS1 and the L-glutamine transporter SLC1A5/ASCT2. Interference with this metabolic reprogramming leads to limited growth of C. trachomatis. Besides the active infection, Chlamydia can persist over a long period of time within the host cell whereby chronic and recurrent infections establish. C. trachomatis acquire a persistent state during an immune attack in response to elevated interferon-γ (IFN-γ) levels. It has been shown that IFN-γ activates the catabolic depletion of L-tryptophan via indoleamine 2,3-dioxygenase (IDO), resulting in the formation of non-infectious atypical chlamydial forms. In this thesis, we could show that IFN-γ depletes the key metabolic regulator c-Myc, which has been demonstrated to be a prerequisite for chlamydial development and growth, in a STAT1-dependent manner. Moreover, metabolic analyses revealed that the pathogen de routs the host cell TCA cycle to enrich pyrimidine biosynthesis. Supplementing pyrimidines or a-ketoglutarate helps the bacteria to partially overcome the persistent state. Together, the results indicate a central role of c-Myc induced host glutamine metabolism reprogramming and L-glutamine for the development of C. trachomatis, which may provide a basis for anti-infectious strategies. Furthermore, they challenge the longstanding hypothesis of L-tryptophan shortage as the sole reason for IFN-γ induced persistence and suggest a pivotal role of c-Myc in the control of the C. trachomatis dormancy. N2 - Chlamydia trachomatis, ein obligat intrazellul¨ares humanes Pathogen, ist weltweit fu¨hrende Ursache fu¨r infektionsbedingte Erblindung und die h¨aufigste, bakterielle sexuell u¨bertragbare Krankheit. Um eine optimale Replikationsnische zu etablieren, interagiert das Pathogen in tensiv mit der Physiologie der Wirtszelle. Chlamydien wechseln in ihrem komplexen Entwick lungszyklus zwischen den infekti¨osen nicht replizierenden Elementark¨orperchen (EBs) und den nicht infekti¨osen replizierenden Retikulark¨orperchen (RBs), und diese Umwandlung in RBs kurz nach dem Eintritt in die Wirtszelle ist ein entscheidender Prozess in der Infektion, um die Replikation des Bakteriums einzuleiten. Derzeit ist noch nicht bekannt, wodurch diese Transformation von EBs zu RBs eingeleitet wird. In dieser Arbeit konnte gezeigt werden, dass bei einer zellfreien Kultivierung des Pathogens die Aufnahme von Glutamin durch den Erreger entscheidend ist, um den ¨Ubergang von EB zu RB zu initiieren. Vor kurzem wurde Peptidoglykan in den Septen von sich replizierenden Chlamydien nachgewiesen. Fu¨r die Syn these des Peptidoglykans nutzen die Bakterien das aufgenommene Glutamin. Der Glutamin metabolismus wird in infizierten Zellen c-Myc abh¨angig umprogrammiert, um den erh¨ohten Bedarf an Glutamin zu bew¨altigen. Bei einer Chlamydieninfektion wird das Proto-Onkogen c-Myc zur F¨orderung der Glutaminolyse der Wirtszelle u¨ber die Glutaminase GLS1 und den Glutamin Transporter SLC1A5/ASCT2 hochreguliert. Ein Eingreifen in diese metabolische Neuprogrammierung fu¨hrt zu einem reduzierten Wachstum von C. trachomatis. Neben der aktiven Infektion k¨onnen Chlamydien u¨ber einen sehr langen Zeitraum in der Wirtszelle persistieren, wodurch es zur Etablierung von chronischen und wiederkehrenden Infektionen kommt. C. trachomatis verf¨allt bei einem Immunangriff in Persistenz, wenn sie auf das freigesetzte Interferon-γ treffen. Es ist bekannt, dass Interferon-γ den Katabolismus von Tryptophan mittels indoleamine 2,3-dioxygenase (IDO) aktiviert, was zur Bildung von nicht infekti¨osen atypischen Chlamydienformen fu¨hrt. In dieser Arbeit konnte gezeigt werden, dass Interferon-γ den zentralen Stoffwechselregulator c-Myc, der sich fu¨r die Entwicklung und das Wachstum von Chlamydien als essentiell erwiesen hat, in Abh¨angigkeit von STAT1 herunter reguliert. Daru¨ber hinaus zeigte die Analyse des Metabolismus, dass das Pathogen den TCA Zyklus der Wirtszelle umleitet, um die Pyrimidinbiosynthese zu unterstu¨tzen. Die Zugabe von Pyrimidinen oder α-Ketoglutarat hilft den Bakterien den Status der Persistenz teilweise zu u¨berwinden. Zusammengenommen deuten die Ergebnisse auf eine zentrale Rolle der c-Myc induzierten Umprogrammierung des Glutaminmetabolismus und des Glutamins selbst fu¨r die Entwicklung von C. trachomatis hin. Diese Befunde k¨onnten eine Basis fu¨r Strategien gegen eine Infektion darstellen. Weiterhin stellen sie die seit langem bestehende Hypothese des Trypotphanmangels als alleiniger Grund fu¨r die von Interferon-γ induzierte Persistenz in Frage und legen eine zentrale Rolle von c-Myc bei der Kontrolle der C. trachomatis Dormanz nahe. KW - Chlamydia trachomatis KW - Persistence KW - trachomatis KW - chlamydia Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-203655 ER - TY - JOUR A1 - Figueiredo, Ludmilla A1 - Krauss, Jochen A1 - Steffan-Dewenter, Ingolf A1 - Cabral, Juliano Sarmento T1 - Understanding extinction debts: spatio-temporal scales, mechanisms and a roadmap for future research JF - Ecography N2 - Extinction debt refers to delayed species extinctions expected as a consequence of ecosystem perturbation. Quantifying such extinctions and investigating long‐term consequences of perturbations has proven challenging, because perturbations are not isolated and occur across various spatial and temporal scales, from local habitat losses to global warming. Additionally, the relative importance of eco‐evolutionary processes varies across scales, because levels of ecological organization, i.e. individuals, (meta)populations and (meta)communities, respond hierarchically to perturbations. To summarize our current knowledge of the scales and mechanisms influencing extinction debts, we reviewed recent empirical, theoretical and methodological studies addressing either the spatio–temporal scales of extinction debts or the eco‐evolutionary mechanisms delaying extinctions. Extinction debts were detected across a range of ecosystems and taxonomic groups, with estimates ranging from 9 to 90% of current species richness. The duration over which debts have been sustained varies from 5 to 570 yr, and projections of the total period required to settle a debt can extend to 1000 yr. Reported causes of delayed extinctions are 1) life‐history traits that prolong individual survival, and 2) population and metapopulation dynamics that maintain populations under deteriorated conditions. Other potential factors that may extend survival time such as microevolutionary dynamics, or delayed extinctions of interaction partners, have rarely been analyzed. Therefore, we propose a roadmap for future research with three key avenues: 1) the microevolutionary dynamics of extinction processes, 2) the disjunctive loss of interacting species and 3) the impact of multiple regimes of perturbation on the payment of debts. For their ability to integrate processes occurring at different levels of ecological organization, we highlight mechanistic simulation models as tools to address these knowledge gaps and to deepen our understanding of extinction dynamics. KW - Anthropocene KW - biotic interaction KW - extinction dynamics KW - mechanistic modelling KW - time lag KW - transient dynamics Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204859 VL - 42 IS - 12 ER - TY - JOUR A1 - Stieb, Sara Mae A1 - Kelber, Christina A1 - Wehner, Rüdiger A1 - Rössler, Wolfgang T1 - Antennal-Lobe Organization in Desert Ants of the Genus Cataglyphis JF - Brain, Behavior and Evolution N2 - Desert ants of the genus Cataglyphis possess remarkable visual navigation capabilities. Although Cataglyphis species lack a trail pheromone system, Cataglyphis fortis employs olfactory cues for detecting nest and food sites. To investigate potential adaptations in primary olfactory centers of the brain of C. fortis, we analyzed olfactory glomeruli (odor processing units) in their antennal lobes and compared them to glomeruli in different Cataglyphis species. Using confocal imaging and 3D reconstruction, we analyzed the number, size and spatial arrangement of olfactory glomeruli in C. fortis, C.albicans, C.bicolor, C.rubra, and C.noda. Workers of all Cataglyphis species have smaller numbers of glomeruli (198–249) compared to those previously found in olfactory-guided ants. Analyses in 2 species of Formica – a genus closely related to Cataglyphis – revealed substantially higher numbers of olfactory glomeruli (c. 370), which is likely to reflect the importance of olfaction in these wood ant species. Comparisons between Cataglyphis species revealed 2 special features in C. fortis. First, with c. 198 C. fortis has the lowest number of glomeruli compared to all other species. Second, a conspicuously enlarged glomerulus is located close to the antennal nerve entrance. Males of C. fortis possess a significantly smaller number of glomeruli (c. 150) compared to female workers and queens. A prominent male-specific macroglomerulus likely to be involved in sex pheromone communication occupies a position different from that of the enlarged glomerulus in females. The behavioral significance of the enlarged glomerulus in female workers remains elusive. The fact that C. fortis inhabits microhabitats (salt pans) that are avoided by all other Cataglyphis species suggests that extreme ecological conditions may not only have resulted in adaptations of visual capabilities, but also in specializations of the olfactory system. KW - olfactory glomeruli KW - plasticity KW - ant KW - antennal lobe KW - glomerulus KW - insects KW - interspecific comparison KW - macroglomerulus KW - olfaction Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-196815 SN - 0006-8977 SN - 1421-9743 N1 - This publication is with permission of the rights owner freely accessible due to an Alliance licence and a national licence (funded by the DFG, German Research Foundation) respectively. VL - 77 IS - 3 ER - TY - JOUR A1 - Grebinyk, Anna A1 - Prylutska, Svitlana A1 - Buchelnikov, Anatoliy A1 - Tverdokhleb, Nina A1 - Grebinyk, Sergii A1 - Evstigneev, Maxim A1 - Matyshevska, Olga A1 - Cherepanov, Vsevolod A1 - Prylutskyy, Yuriy A1 - Yashchuk, Valeriy A1 - Naumovets, Anton A1 - Ritter, Uwe A1 - Dandekar, Thomas A1 - Frohme, Marcus T1 - C60 fullerene as an effective nanoplatform of alkaloid Berberine delivery into leukemic cells JF - Pharmaceutics N2 - A herbal alkaloid Berberine (Ber), used for centuries in Ayurvedic, Chinese, Middle-Eastern, and native American folk medicines, is nowadays proved to function as a safe anticancer agent. Yet, its poor water solubility, stability, and bioavailability hinder clinical application. In this study, we have explored a nanosized carbon nanoparticle—C60 fullerene (C60)—for optimized Ber delivery into leukemic cells. Water dispersions of noncovalent C60-Ber nanocomplexes in the 1:2, 1:1, and 2:1 molar ratios were prepared. UV–Vis spectroscopy, dynamic light scattering (DLS), and atomic force microscopy (AFM) evidenced a complexation of the Ber cation with the negatively charged C60 molecule. The computer simulation showed that π-stacking dominates in Ber and C\(_{60}\) binding in an aqueous solution. Complexation with C\(_{60}\) was found to promote Ber intracellular uptake. By increasing C\(_{60}\) concentration, the C\(_{60}\)-Ber nanocomplexes exhibited higher antiproliferative potential towards CCRF-CEM cells, in accordance with the following order: free Ber < 1:2 < 1:1 < 2:1 (the most toxic). The activation of caspase 3/7 and accumulation in the sub-G1 phase of CCRF-CEM cells treated with C\(_{60}\)-Ber nanocomplexes evidenced apoptosis induction. Thus, this study indicates that the fast and easy noncovalent complexation of alkaloid Ber with C\(_{60}\) improved its in vitro efficiency against cancer cells. KW - C60 fullerene KW - Berberine KW - noncovalent nanocomplex KW - UV–Vis KW - DLS and AFM measurements KW - drug release KW - leukemic cells KW - uptake KW - cytotoxicity KW - apoptosis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193216 SN - 1999-4923 VL - 11 IS - 11 ER - TY - JOUR A1 - Aurast, Anna A1 - Gradl, Tobias A1 - Pernes, Stefan A1 - Pielström, Steffen T1 - Big Data und Smart Data in den Geisteswissenschaften JF - Bibliothek Forschung und Praxis N2 - Kein Abstract verfügbar. KW - Textanalyse KW - unstrukturierte Daten KW - Natural Language Processing KW - Text analysis KW - unstructured data KW - natural language processing Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-195237 SN - 1865-7648 SN - 0341-4183 N1 - Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich. VL - 40 IS - 2 ER - TY - THES A1 - Sauer, Mark T1 - Die microRNA-26 Familie kontrolliert über den REST-Komplex ein für die Neurogenese essentielles regulatorisches RNA Netzwerk T1 - The microRNA-26 family controls a regulatory RNA network which is essential for neurogenesis via the REST-complex N2 - In einem sich entwickelnden multizellulären Organismus ist die räumlich-zeitliche Regulation der Genexpression von entscheidender Bedeutung für die Bildung, Identität und Funktion von Zellen. Der REST (repressor element silencing transcription factor) Komplex spielt bei der neuronalen Differenzierung und bei der Aufrechterhaltung des neuronalen Status eine essentielle Rolle, indem er in nicht neuronalen Zellen und neuralen Vorläufern die Expression neuronaler Gene unterdrückt, in deren Promotorregion eine RE1 (repressor element 1) Erkennungssequenz vorhanden ist. Während der neuronalen Differenzierung wird der REST-Komplex schrittweise inaktiviert, was zur Einleitung eines neuronalen Genexpression-Programms führt. Es wird daher angenommen, dass die Inhibierung des REST-Komplexes ein essentieller Vorgang der Neurogenese ist. Wichtige Bestandteile für die transkriptionell repressive Funktion des REST-Komplexes sind kleine Phosphatasen (CTDSP = C-terminal domain small phosphatases), welche die Polymerase-II-Aktivität an Zielgenen inhibieren. Im Zebrafisch wurde gezeigt, dass ctdsp2 durch die miR-26b negativ reguliert wird. Alle miR-26 Familienmitglieder sind in Vertebraten evolutionär konserviert und in Introns von Ctdsp Genen kodiert. Sie sind in der Lage, die Expression ihres eigenen Wirtsgens mittels einer autoregulatorischen Rückkopplungsschleife zu regulieren. Im Rahmen dieser Dissertation wurde als Modellsystem für die Neurogenese ein neurales Differenzierungssystem, welches auf murinen, embryonalen Stammzellen (ESCs) aufbaut, eingesetzt. Zur funktionellen Analyse der miR-26 Familie wurden mit Hilfe der CRISPR/Cas9-Methode verschiedene miR-26 Knockout (KO) ESC-Linien hergestellt. Hierbei wurden die Sequenzen der einzelnen Familienmitglieder und der gesamten miR-26 Familie im Genom von Wildtyp (Wt) ESCs deletiert. Diese miR-26-defizienten ESCLinien behielten ihre Pluripotenz und zeigten keinen Phänotyp hinsichtlich Proliferation, Morphologie und Identität der Zellen während der Differenzierung bis zum neuralen Vorläuferzellstadium (NPCs, engl.: neural progenitor cells). Jedoch führte die Deletion sowohl der gesamten miR-26 Familie als auch einzelner Mitglieder bei der terminalen Differenzierung zu einem spezifischen Entwicklungsstillstand im NPC Stadium und infolgedessen zu einer starken Reduktion der Anzahl von Neuronen und Astroglia. Die Transkriptom-Analyse der differenzierten miR-26-KO ESCs mittels RNA-Seq zeigte, dass die Expression von Genen die mit der Neurogenese und der neuronalen Differenzierung, aber auch der Gliogenese assoziert sind, herunterreguliert war. Die Abwesenheit der miR-26 Familie führte außerdem zu einer selektiven Reduzierung bestimmter miRNAs (REST-miRs), die einerseits die Expression von REST-Komplex Komponenten unterdrücken können, und andererseits selbst unter dessen transkriptioneller Kontrolle stehen. Zu diesem REST-miR Netzwerk gehören einige miRNAs (miR-9, miR-124, miR-132 und miR-218), die wichtige Funktionen bei verschiedenen Prozessen der neuronalen Entwicklung haben. Weiterhin führte der miR-26-KO zu einer Derepression der Proteinlevel von REST und CTDSP2 während der terminalen Differenzierung. Funktionelle Analysen mit miRNA mimics zeigten, dass erhöhte miR-26 Level zu einer Hochregulation von REST-miRs führen. Weitere Experimente, die darauf zielten, die Hierarchie des REST-miR Netwerks aufzuklären zeigten, dass die miR-26 Familie stromaufwärts die REST-miR Expression reguliert. Zusammengefasst weisen die in dieser Arbeit gezeigten Daten darauf hin, dass die miR-26 Familie als Initiator der schrittweisen Inaktivierung des REST-Komplexes eine zentrale Rolle bei der Differenzierung von neuralen Vorläuferzellen zu postmitotischen Neuronen spielt. N2 - The spatio-temporal control of gene expression in a developing multicellular organism is a key determinant for the formation, cellular identity and function of cells. The REST (repressor element silencing transcription factor) complex plays a crucial role in the process of neuronal differentiation and the maintenance of the neuronal status by suppressing neuronal genes which contain a RE1 (repressor element 1) recognition sequence within their promotor region in non-neuronal cells or in neural progenitors. During neuronal differentiation, the REST complex is gradually inactivated, leading to the initiation of a neuronal gene expression program. It is therefore assumed that the regulation of the REST complex is an essential component for the initiation of neurogenesis. Critical effector proteins of the REST complex are small phosphatases (CTDSPs = C-terminal domain small phosphatases), which reduces the polymerase II activity on target genes. In zebrafish it was shown that the REST complex-associated phosphatase ctdsp2 is negatively regulated by miR-26b. All miR-26 family members are evolutionarily conserved in vertebrates and located in introns of Ctdsp genes. Furthermore the miR-26 family members repress their own host genes through an intrinsic autoregulatory negative feedback loop. In this study, a murine embryonic stem cell (ESC) -based neural differentiation paradigm was used as a model system for neurogenesis. To analyze the function of the miR-26 family, the CRISPR/Cas9 technology was employed to generate various miR-26 knockout (KO) ESC lines, with deletions of individual family members and the entire miR-26 family in the genome of ESCs. These miR-26-deficient ESCs retained their pluripotency and did not show altered proliferation, morphology, or cell identity during neural differentiation up to the neural progenitor cell (NPC) stage. However, deletion of the entire miR-26 family as well as of single members disrupted the terminal differentiation and led to a specific developmental arrest at the NPC stage and consequently a strong reduction of neuron and astroglia cell frequencies. Global gene expression analyses in differentiated miR-26-KO ESCs further revealed that genes, which are associated with neurogenesis, neuronal differentiation, but also gliogenesis, were downregulated. The absence of the miR-26 familiy resulted in the selective reduction of a specific set of miRNAs (REST-miRs), which on the one hand suppress the expression of REST complex components and on the other hand are themselves under the transcriptional control of the REST complex. Among others, several miRNAs (miR-9, miR-124, miR-132 and miR-218), which play an important role in various processes of neuronal development, belong to this REST-miR network. Moreover, the miR-26-KO led to the derepression of REST and CTDSP2 protein levels during terminal differentiation. Functional analyses with miRNA mimics showed that increased miR-26 levels resulted in an upregulation of REST-miRs. Further experiments aimed at elucidating the hierarchy of REST-miR regulation revealed that the miR-26 family act upstream to regulate RESTmiR expression and presumably has an initial function in the regulation of this network. Taken together, the data presented in this work suggest that the miR-26 family act as an initiator for the stepwise inactivation of the REST complex during neural differentiation. Therefore, these findings are consistent with the notion that the miR-26 family represents a central regulator for neural progenitor cell differentiation into postmitotic neurons. KW - Neurogenese KW - miR-26 Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184008 ER - TY - INPR A1 - Dandekar, Thomas T1 - Biological heuristics applied to cosmology suggests a condensation nucleus as start of our universe and inflation cosmology replaced by a period of rapid Weiss domain-like crystal growth N2 - Cosmology often uses intricate formulas and mathematics to derive new theories and concepts. We do something different in this paper: We look at biological processes and derive from these heuristics so that the revised cosmology agrees with astronomical observations but does also agree with standard biological observations. We show that we then have to replace any type of singularity at the start of the universe by a condensation nucleus and that the very early period of the universe usually assumed to be inflation has to be replaced by a period of rapid crystal growth as in Weiss magnetization domains. Impressively, these minor modifications agree well with astronomical observations including removing the strong inflation perturbations which were never observed in the recent BICEP2 experiments. Furthermore, looking at biological principles suggests that such a new theory with a condensation nucleus at start and a first rapid phase of magnetization-like growth of the ordered, physical laws obeying lattice we live in is in fact the only convincing theory of the early phases of our universe that also is compatible with current observations. We show in detail in the following that such a process of crystal creation, breaking of new crystal seeds and ultimate evaporation of the present crystal readily leads over several generations to an evolution and selection of better, more stable and more self-organizing crystals. Moreover, this explains the “fine-tuning” question why our universe is fine-tuned to favor life: Our Universe is so self-organizing to have enough offspring and the detailed physics involved is at the same time highly favorable for all self-organizing processes including life. This biological theory contrasts with current standard inflation cosmologies. The latter do not perform well in explaining any phenomena of sophisticated structure creation or self-organization. As proteins can only thermodynamically fold by increasing the entropy in the solution around them we suggest for cosmology a condensation nucleus for a universe can form only in a “chaotic ocean” of string-soup or quantum foam if the entropy outside of the nucleus rapidly increases. We derive an interaction potential for 1 to n-dimensional strings or quantum-foams and show that they allow only 1D, 2D, 4D or octonion interactions. The latter is the richest structure and agrees to the E8 symmetry fundamental to particle physics and also compatible with the ten dimensional string theory E8 which is part of the M-theory. Interestingly, any other interactions of other dimensionality can be ruled out using Hurwitz compositional theorem. Crystallization explains also extremely well why we have only one macroscopic reality and where the worldlines of alternative trajectories exist: They are in other planes of the crystal and for energy reasons they crystallize mostly at the same time, yielding a beautiful and stable crystal. This explains decoherence and allows to determine the size of Planck´s quantum h (very small as separation of crystal layers by energy is extremely strong). Ultimate dissolution of real crystals suggests an explanation for dark energy agreeing with estimates for the “big rip”. The halo distribution of dark matter favoring galaxy formation is readily explained by a crystal seed starting with unit cells made of normal and dark matter. That we have only matter and not antimatter can be explained as there may be right handed mattercrystals and left-handed antimatter crystals. Similarly, real crystals are never perfect and we argue that exactly such irregularities allow formation of galaxies, clusters and superclusters. Finally, heuristics from genetics suggest to look for a systems perspective to derive correct vacuum and Higgs Boson energies. KW - heuristics KW - inflation KW - cosmology KW - crystallization KW - crystal growth KW - E8 symmetry KW - Hurwitz theorem KW - evolution KW - Lee Smolin Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-183945 ER - TY - THES A1 - Eidel, Matthias T. A. M. T1 - Training Effects of a Tactile Brain-Computer Interface System During Prolonged Use by Healthy And Motor-Impaired People T1 - Trainingseffekte eines Taktilen Brain-Computer Interface Systems bei längerer Nutzung von gesunden sowie motorisch eingeschränkten Personen N2 - Background - Brain-Computer Interfaces (BCI) enable their users to interact and communicate with the environment without requiring intact muscle control. To this end, brain activity is directly measured, digitized and interpreted by the computer. Thus, BCIs may be a valuable tool to assist severely or even completely paralysed patients. Many BCIs, however, rely on neurophysiological potentials evoked by visual stimulation, which can result in usability issues among patients with impaired vision or gaze control. Because of this, several non-visual BCI paradigms have been developed. Most notably, a recent study revealed promising results from a tactile BCI for wheelchair control. In this multi-session approach, healthy participants used the BCI to navigate a simulated wheelchair through a virtual apartment, which revealed not only that the BCI could be operated highly efficiently, but also that it could be trained over five sessions. The present thesis continues the research on this paradigm in order to - confirm its previously reported high performance levels and trainability - reveal the underlying factors responsible for observed performance increases - establish its feasibility among potential impaired end-users Methods - To approach these goals, three studies were conducted with both healthy participants and patients with amyotrophic lateral sclerosis (ALS). Brain activity during BCI operation was recorded via electroencephalography (EEG) and interpreted using a machine learning-based linear classifier. Wheelchair navigation was executed according to the classification results and visualized on a monitor. For offline statistical analysis, neurophysiological features were extracted from EEG data. Subjective data on usability were collected from all participants. Two specialized experiments were conducted to identify factors for training. Results and Discussion - Healthy participants: Results revealed positive effects of training on BCI performances and their underlying neurophysiological potentials. The paradigm was confirmed to be feasible and (for a non-visual BCI) highly efficient for most participants. However, some had to be excluded from analysis of the training effects because they could not achieve meaningful BCI control. Increased somatosensory sensitivity was identified as a possible mediator for training-related performance improvements. Participants with ALS: Out of seven patients with various stages of ALS, five could operate the BCI with accuracies significantly above chance level. Another ALS patient in a state of near-complete paralysis trained with the BCI for several months. Although no effects of training were observed, he was consistently able to operate the system above chance level. Subjective data regarding workload, satisfaction and other parameters were reported. Significance - The tactile BCI was evaluated on the example of wheelchair control. In the future, it could help impaired patients to regain some lost mobility and self-sufficiency. Further, it has the potential to be adapted to other purposes, including communication. Once visual BCIs and other assistive technologies fail for patients with (progressive) motor impairments, vision-independent paradigms such as the tactile BCI may be among the last remaining alternatives to interact with the environment. The present thesis has strongly confirmed the general feasibility of the tactile paradigm for healthy participants and provides first clues about the underlying factors of training. More importantly, the BCI was established among potential end-users with ALS, providing essential external validity. N2 - Hintergrund - Brain-Computer Interfaces (BCI) ermöglichen ihren Benutzern die Interaktion und Kommunikation mit der Außenwelt, ohne dabei die Funktionstüchtigkeit der Muskeln voraus zu setzen. Zu diesem Zweck wird die Gehirnaktivität vom Computer direkt gemessen, digitalisiert und schließlich interpretiert. BCIs könnten daher eine wertvolle Methode sein, schwer körperlich beeinträchtigten oder sogar vollständig gelähmten Patienten zu assistieren. Viele BCI Ansätze basieren allerdings auf neurophysiologischen Potentialen, welche mittels visueller Stimulation evoziert werden. Dies kann zur Folge haben, dass das BCI von Patienten mit Sehbehinderung oder fehlender Kontrolle über die eigene Blickrichtung nicht erfolgreich benutzt werden kann. Deshalb wurden bereits einige nicht-visuelle BCI Paradigmen entwickelt. Insbesondere eine aktuelle Studie über ein taktiles BCI zur Rollstuhlkontrolle lieferte vielversprechende Ergebnisse: In fünf Trainingssitzungen navigierten gesunde Studienteilnehmer per BCI einen simulierten Rollstuhl durch eine virtuelle Wohnung. Hierbei konnte gezeigt werden, dass das BCI System nicht nur sehr effizient genutzt werden konnte, sondern auch, dass sich die Kontrolle durch das Training über mehrere Sitzungen verbesserte. Die vorliegende Dissertation befasst sich mit der weiterführenden Erforschung eben dieses Paradigmas, insbesondere mit den Zielen: . die zuvor berichtete hohe Performanz und Trainierbarkeit zu bestätigen . aufzuklären, welche Faktoren der Steigerung der BCI-Leistung zugrunde liegen . die Anwendbarkeit des Paradigmas bei beeinträchtigten Endnutzern zu etablieren Methoden - Um diese Ziele zu erreichen wurden drei Studien sowohl mit gesunden als auch mit Teilnehmern mit amyotropher Lateralsklerose (ALS) durchgeführt. Während der BCI-Nutzung wurde die Gehirnaktivität per Elektroenzephalographie (EEG) aufgezeichnet und von einem linearen Klassifikator (basierend auf Maschinenlernverfahren) interpretiert. Die Navigation des Rollstuhls wurde entsprechend der Ergebnisse des Klassifikators umgesetzt und auf einem Bildschirm visualisiert. Zur späteren statistischen Analyse wurden aus den EEG Daten neurophysiologische Merkmale extrahiert. Zudem wurden Fragebogendaten zur Nutzbarkeit des Systems von allen Teilnehmern erhoben. Zwei Experimente zur Identifizierung von Trainingsfaktoren wurden durchgeführt. Ergebnisse und Diskussion - Gesunde Teilnehmer: Die Ergebnisse zeigten positive Effekte des Trainings auf die BCI Performanz und deren zugrundeliegenden neurophysiologischen Potentiale. Es konnte bestätigt werden, dass das Paradigma anwendbar und für die meisten Teilnehmer hocheffizient nutzbar war (im Vergleich zu anderen nicht-visuellen Ansätzen). Einige Teilnehmer mussten jedoch von der Analyse der Trainingseffekte ausgeschlossen werden, da sie keine ausreichende Kontrolle über das BCI ausüben konnten. Eine Steigerung der somatosensorischen Empfindlichkeitsschwelle wurde als ein möglicher Faktor für die Trainierbarkeit und Verbesserung der Performanz identifiziert. Teilnehmer mit ALS: Fünf von sieben Teilnehmern in verschiedenen ALS-Stadien konnten das BCI signifikant überzufällig benutzen. Ein weiterer ALS Patient mit nahezu vollständiger Lähmung trainierte den Umgang mit dem BCI über mehrere Monate hinweg. Er war beständig in der Lage, das System mit Genauigkeiten über dem Zufallsniveau zu steuern, jedoch konnten keine Trainingseffekte gezeigt werden. Fragebogendaten zur subjektiven Arbeitsbelastung, Zufriedenheit und einigen weiteren Parametern wurden ausführlich berichtet. Bedeutung - Das taktile BCI wurde am Beispiel der Rollstuhlkontrolle evaluiert. In naher Zukunft könnte es beeinträchtigten Patienten helfen, ihre verlorene Mobilität und Selbstständigkeit zurück zu erlangen. Zudem kann es für viele weitere Zwecke adaptiert werden, insbesondere zur Kommunikation. Sobald visuelle BCIs oder andere technische Hilfsmittel bei Patienten mit (progressiver) motorischer Lähmung scheitern, könnten nicht-visuelle Paradigmen wie das taktile BCI zu den letzten verbleibenden Alternativen gehören, die eine Interaktion mit der Außenwelt noch erlauben. Die vorliegende Arbeit hat die grundsätzliche Anwendbarkeit des taktilen Paradigmas für gesunde Benutzer klar bestätigt. Zudem liefert sie erste Hinweise darauf, welche Faktoren den beobachteten Trainingseffekten zugrunde liegen könnten. Das BCI hat sich zudem bei potentiellen End-Nutzern mit ALS bewährt, was der externen Validität der Studienergebnisse enorm zuträgt. KW - Myatrophische Lateralsklerose KW - Gehirn-Computer-Schnittstelle KW - Elektroencephalographie KW - Rollstuhl KW - Brain-Computer Interface KW - Amyotrophic Lateral Sclerosis KW - Wheelchair Navigation Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-208511 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 - Maierhofer, Anna A1 - Flunkert, Julia A1 - Oshima, Junko A1 - Martin, George M. A1 - Poot, Martin A1 - Nanda, Indrajit A1 - Dittrich, Marcus A1 - Müller, Tobias A1 - Haaf, Thomas T1 - Epigenetic signatures of Werner syndrome occur early in life and are distinct from normal epigenetic aging processes JF - Aging Cell N2 - Werner Syndrome (WS) is an adult‐onset segmental progeroid syndrome. Bisulfite pyrosequencing of repetitive DNA families revealed comparable blood DNA methylation levels between classical (18 WRN‐mutant) or atypical WS (3 LMNA‐mutant and 3 POLD1‐mutant) patients and age‐ and sex‐matched controls. WS was not associated with either age‐related accelerated global losses of ALU, LINE1, and α‐satellite DNA methylations or gains of rDNA methylation. Single CpG methylation was analyzed with Infinium MethylationEPIC arrays. In a correspondence analysis, atypical WS samples clustered together with the controls and were clearly separated from classical WS, consistent with distinct epigenetic pathologies. In classical WS, we identified 659 differentially methylated regions (DMRs) comprising 3,656 CpG sites and 613 RefSeq genes. The top DMR was located in the HOXA4 promoter. Additional DMR genes included LMNA, POLD1, and 132 genes which have been reported to be differentially expressed in WRN‐mutant/depleted cells. DMRs were enriched in genes with molecular functions linked to transcription factor activity and sequence‐specific DNA binding to promoters transcribed by RNA polymerase II. We propose that transcriptional misregulation of downstream genes by the absence of WRN protein contributes to the variable premature aging phenotypes of WS. There were no CpG sites showing significant differences in DNA methylation changes with age between WS patients and controls. Genes with both WS‐ and age‐related methylation changes exhibited a constant offset of methylation between WRN‐mutant patients and controls across the entire analyzed age range. WS‐specific epigenetic signatures occur early in life and do not simply reflect an acceleration of normal epigenetic aging processes. KW - (classical and atypical) Werner syndrome KW - bisulfite pyrosequencing KW - methylation array KW - premature aging KW - segmental progeria KW - transcription deficiency Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202733 VL - 18 ER -