TY - JOUR A1 - Groll, J A1 - Burdick, J A A1 - Cho, D-W A1 - Derby, B A1 - Gelinsky, M A1 - Heilshorn, S C A1 - Jüngst, T A1 - Malda, J A1 - Mironov, V A A1 - Nakayama, K A1 - Ovsianikov, A A1 - Sun, W A1 - Takeuchi, S A1 - Yoo, J J A1 - Woodfield, T B F T1 - A definition of bioinks and their distinction from biomaterial inks JF - Biofabrication N2 - Biofabrication aims to fabricate biologically functional products through bioprinting or bioassembly (Groll et al 2016 Biofabrication 8 013001). In biofabrication processes, cells are positioned at defined coordinates in three-dimensional space using automated and computer controlled techniques (Moroni et al 2018 Trends Biotechnol. 36 384–402), usually with the aid of biomaterials that are either (i) directly processed with the cells as suspensions/dispersions, (ii) deposited simultaneously in a separate printing process, or (iii) used as a transient support material. Materials that are suited for biofabrication are often referred to as bioinks and have become an important area of research within the field. In view of this special issue on bioinks, we aim herein to briefly summarize the historic evolution of this term within the field of biofabrication. Furthermore, we propose a simple but general definition of bioinks, and clarify its distinction from biomaterial inks. KW - bioink KW - biomaterial ink KW - definition Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-253993 VL - 11 IS - 1 ER - TY - JOUR A1 - Steuer Costa, Wagner A1 - Van der Auwera, Petrus A1 - Glock, Caspar A1 - Liewald, Jana F. A1 - Bach, Maximilian A1 - Schüler, Christina A1 - Wabnig, Sebastian A1 - Oranth, Alexandra A1 - Masurat, Florentin A1 - Bringmann, Henrik A1 - Schoofs, Liliane A1 - Stelzer, Ernst H. K. A1 - Fischer, Sabine C. A1 - Gottschalk, Alexander T1 - A GABAergic and peptidergic sleep neuron as a locomotion stop neuron with compartmentalized Ca2+ dynamics JF - Nature Communications N2 - Animals must slow or halt locomotion to integrate sensory inputs or to change direction. In Caenorhabditis elegans, the GABAergic and peptidergic neuron RIS mediates developmentally timed quiescence. Here, we show RIS functions additionally as a locomotion stop neuron. RIS optogenetic stimulation caused acute and persistent inhibition of locomotion and pharyngeal pumping, phenotypes requiring FLP-11 neuropeptides and GABA. RIS photoactivation allows the animal to maintain its body posture by sustaining muscle tone, yet inactivating motor neuron oscillatory activity. During locomotion, RIS axonal Ca2+ signals revealed functional compartmentalization: Activity in the nerve ring process correlated with locomotion stop, while activity in a branch correlated with induced reversals. GABA was required to induce, and FLP-11 neuropeptides were required to sustain locomotion stop. RIS attenuates neuronal activity and inhibits movement, possibly enabling sensory integration and decision making, and exemplifies dual use of one cell across development in a compact nervous system. KW - Cellular neuroscience KW - Neural circuits Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-223273 VL - 10 ER - TY - THES A1 - Breitenbach, Tim T1 - A mathematical optimal control based approach to pharmacological modulation with regulatory networks and external stimuli T1 - Ein auf mathematischer Optimalkontrolle basierender Ansatz für pharmakologische Modulation mit regulatorischen Netzwerken und externen Stimuli N2 - In this work models for molecular networks consisting of ordinary differential equations are extended by terms that include the interaction of the corresponding molecular network with the environment that the molecular network is embedded in. These terms model the effects of the external stimuli on the molecular network. The usability of this extension is demonstrated with a model of a circadian clock that is extended with certain terms and reproduces data from several experiments at the same time. Once the model including external stimuli is set up, a framework is developed in order to calculate external stimuli that have a predefined desired effect on the molecular network. For this purpose the task of finding appropriate external stimuli is formulated as a mathematical optimal control problem for which in order to solve it a lot of mathematical methods are available. Several methods are discussed and worked out in order to calculate a solution for the corresponding optimal control problem. The application of the framework to find pharmacological intervention points or effective drug combinations is pointed out and discussed. Furthermore the framework is related to existing network analysis tools and their combination for network analysis in order to find dedicated external stimuli is discussed. The total framework is verified with biological examples by comparing the calculated results with data from literature. For this purpose platelet aggregation is investigated based on a corresponding gene regulatory network and associated receptors are detected. Furthermore a transition from one to another type of T-helper cell is analyzed in a tumor setting where missing agents are calculated to induce the corresponding switch in vitro. Next a gene regulatory network of a myocardiocyte is investigated where it is shown how the presented framework can be used to compare different treatment strategies with respect to their beneficial effects and side effects quantitatively. Moreover a constitutively activated signaling pathway, which thus causes maleficent effects, is modeled and intervention points with corresponding treatment strategies are determined that steer the gene regulatory network from a pathological expression pattern to physiological one again. N2 - In dieser Arbeit werden Modelle für molekulare Netzwerke bestehend aus gewöhnlichen Differentialgleichungen durch Terme erweitert, die die Wechselwirkung zwischen dem entsprechenden molekularen Netzwerk und der Umgebung berücksichtigen, in die das molekulare Netzwerk eingebettet ist. Diese Terme modellieren die Effekte von externen Stimuli auf das molekulare Netzwerk. Die Nutzbarkeit dieser Erweiterung wird mit einem Modell der circadianen Uhr demonstriert, das mit gewissen Termen erweitert wird und Daten von mehreren verschiedenen Experimenten zugleich reproduziert. Sobald das Modell einschließlich der externen Stimuli aufgestellt ist, wird eine Grundstruktur entwickelt um externe Stimuli zu berechnen, die einen gewünschten vordefinierte Effekt auf das molekulare Netzwerk haben. Zu diesem Zweck wird die Aufgabe, geeignete externe Stimuli zu finden, als ein mathematisches optimales Steuerungsproblem formuliert, für welches, um es zu lösen, viele mathematische Methoden zur Verfügung stehen. Verschiedene Methoden werden diskutiert und ausgearbeitet um eine Lösung für das entsprechende optimale Steuerungsproblem zu berechnen. Auf die Anwendung dieser Grundstruktur pharmakologische Interventionspunkte oder effektive Wirkstoffkombinationen zu finden, wird hingewiesen und diese diskutiert. Weiterhin wird diese Grundstruktur in Bezug zu existierenden Netzwerkanalysewerkzeugen gesetzt und ihre Kombination für die Netzwerkanalyse diskutiert um zweckbestimmte externe Stimuli zu finden. Die gesamte Grundstruktur wird mit biologischen Beispielen verifiziert, indem man die berechneten Ergebnisse mit Daten aus der Literatur vergleicht. Zu diesem Zweck wird die Blutplättchenaggregation untersucht basierend auf einem entsprechenden genregulatorischen Netzwerk und damit assoziierte Rezeptoren werden detektiert. Weiterhin wird ein Wechsel von einem T-Helfer Zelltyp in einen anderen in einer Tumorumgebung analysiert, wobei fehlende Agenzien berechnet werden um den entsprechenden Wechsel in vitro zu induzieren. Als nächstes wird ein genregulatorisches Netzwerk eines Myokardiozyten untersucht, wobei gezeigt wird wie die präsentierte Grundstruktur genutzt werden kann um verschiedene Behandlungsstrategien in Bezug auf ihre nutzbringenden Wirkungen und Nebenwirkungen quantitativ zu vergleichen. Darüber hinaus wird ein konstitutiv aktivierter Signalweg, der deshalb unerwünschte Effekte verursacht, modelliert und Interventionspunkte mit entsprechenden Behandlungsstrategien werden bestimmt, die das genregulatorische Netzwerk wieder von einem pathologischen Expressionsmuster zu einem physiologischen steuern. KW - Bioinformatik KW - systematic drug targeting KW - optimal drug combination KW - disease modelling KW - external stimuli KW - intervention point analyzing KW - Molekülsystem KW - Reiz Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-174368 ER - TY - THES A1 - Schwedhelm, Ivo Peter T1 - A non-invasive microscopy platform for the online monitoring of hiPSC aggregation in suspension cultures in small-scale stirred tank bioreactors T1 - Entwicklung und Etablierung einer Mikroskopieplattform zur zerstörungsfreien Messung der Aggregierung von hiPSCs in kleinmaßstäbigen Bioreaktor-Suspensionskulturen N2 - The culture of human induced pluripotent stem cells (hiPSCs) at large-scale becomes feasible with the aid of scalable suspension setups in continuously stirred tank reactors (CSTRs). Suspension cul- tures of hiPSCs are characterized by the self-aggregation of single cells into macroscopic cell aggre- gates that increase in size over time. The development of these free-floating aggregates is dependent on the culture vessel and thus represents a novel process parameter that is of particular interest for hiPSC suspension culture scaling. Further, aggregates surpassing a critical size are prone to spon- taneous differentiation or cell viability loss. In this regard, and, for the first time, a hiPSC-specific suspension culture unit was developed that utilizes in situ microscope imaging to monitor and to characterize hiPSC aggregation in one specific CSTR setup to a statistically significant degree while omitting the need for error-prone and time-intensive sampling. For this purpose, a small-scale CSTR system was designed and fabricated by fused deposition modeling (FDM) using an in-house 3D- printer. To provide a suitable cell culture environment for the CSTR system and in situ microscope, a custom-built incubator was constructed to accommodate all culture vessels and process control devices. Prior to manufacture, the CSTR design was characterized in silico for standard engineering parameters such as the specific power input, mixing time, and shear stress using computational fluid dynamics (CFD) simulations. The established computational model was successfully validated by comparing CFD-derived mixing time data to manual measurements. Proof for system functionality was provided in the context of long-term expansion (4 passages) of hiPSCs. Thereby, hiPSC aggregate size development was successfully tracked by in situ imaging of CSTR suspensions and subsequent automated image processing. Further, the suitability of the developed hiPSC culture unit was proven by demonstrating the preservation of CSTR-cultured hiPSC pluripotency on RNA level by qRT-PCR and PluriTest, and on protein level by flow cytometry. N2 - Die Vermehrung von humanen induzierten pluripotenten Stammzellen (hiPSCs) im Indus- triemaßstab wird durch skalierbare Bioprozesse in aktiv durchmischten Rührkessel-Bioreaktoren (CSTRs) ermöglicht. Hierbei zeichnet sich das Wachstum von hiPSCs durch die charakteristische Bildung von sphäroidischen Zellaggregaten aus, deren Durchmesser sich im Laufe der Kultivierung vergrößert. Die Agglomeration von hiPSCs ist sowohl abhängig vom Grad der Durchmischung als auch vom jeweiligen Kulturgefäß, und stellt somit einen wichtigen Prozessparameter dar, welcher während der Prozessskalierung berücksichtigt werden muss. Weiterhin weisen hiPSCs in Aggregaten, welche eine kritische Größe überschreiten, eine erhöhte Wahrscheinlichkeit auf, ihre Pluripotenz zu verlieren oder hinsichtlich ihrer Viabilität beeinträchtigt zu werden. Auf Grundlage dessen wurde im Rahmen dieser Arbeit eine Plattform für die Durchführung von hiPSCs-Suspensionskulturen en- twickelt, welche die zerstörungsfreie Überwachung des hiPSC-Aggregatwachstums in Echtzeit durch den Einsatz von in situ-Mikroskopie ermöglicht. Neben den eigens entworfenen Bioreaktoren, welche zum Großteil aus 3D-gedruckten Komponenten bestehen, wurde eine Peripherie in Form eines Inkubator-Prototyps entwickelt und konstruiert, welcher die Unterbringung der Bioreaktoren, der Systemkomponenten zur Erzeugung von Zellkulturbedingungen sowie einer in situ-Mikroskop- Spezialanfertigung gewährleistet. Als Ausgangspunkt der Entwicklung des CSTR Systems diente ein Strömungssimulationsmodell, welches dazu verwendet wurde, prozesstechnische Kennzahlen zu er- mitteln um das CSTR System hinsichtlich des spezifischen Leistungseintrags, der Mischzeit und der Scherbelastung zu charakterisieren. Das erstellte Simulationsmodell wurde zudem erfolgreich an- hand eines Messdatenabgleichs der Mischzeit hinsichtlich seiner Aussagekraft validiert. Des Weit- eren wurde die Funktionsfähigkeit des gesamten Systems durch Langzeitversuche belegt. Hierbei wurden hiPSCs in den entwickelten Bioreaktoren über einen Zeitraum von vier Passagen expandiert und das Aggregatwachstum mittels in situ-Mikroskopie in Kombination mit einer automatisierten Bildauswertung beschrieben. Überdies hinaus wurde die Qualität der kultivierten hiPSCs hinsichtlich ihrer Differenzierungskapazität durch den Nachweis von Pluripotenzmarkern auf RNA (qRT-PCR und PluriTest) sowie Proteinebene (Durchflusszytometrie) untersucht. KW - Induzierte pluripotente Stammzelle KW - Mikroskopie KW - Suspensionskultur KW - Aggregation KW - in situ microscopy KW - bioreactor KW - hiPSC aggregation KW - Bioreaktor KW - iPSC Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-192989 ER - TY - JOUR A1 - Vey, Johannes A1 - Kapsner, Lorenz A. A1 - Fuchs, Maximilian A1 - Unberath, Philipp A1 - Veronesi, Giulia A1 - Kunz, Meik T1 - A toolbox for functional analysis and the systematic identification of diagnostic and prognostic gene expression signatures combining meta-analysis and machine learning JF - Cancers N2 - The identification of biomarker signatures is important for cancer diagnosis and prognosis. However, the detection of clinical reliable signatures is influenced by limited data availability, which may restrict statistical power. Moreover, methods for integration of large sample cohorts and signature identification are limited. We present a step-by-step computational protocol for functional gene expression analysis and the identification of diagnostic and prognostic signatures by combining meta-analysis with machine learning and survival analysis. The novelty of the toolbox lies in its all-in-one functionality, generic design, and modularity. It is exemplified for lung cancer, including a comprehensive evaluation using different validation strategies. However, the protocol is not restricted to specific disease types and can therefore be used by a broad community. The accompanying R package vignette runs in ~1 h and describes the workflow in detail for use by researchers with limited bioinformatics training. KW - bioinformatics tool KW - R package KW - machine learning KW - meta-analysis KW - biomarker signature KW - gene expression analysis KW - survival analysis KW - functional analysis Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193240 SN - 2072-6694 VL - 11 IS - 10 ER - TY - THES A1 - Franke, Christian T1 - Advancing Single-Molecule Localization Microscopy: Quantitative Analyses and Photometric Three-Dimensional Imaging T1 - Weiterentwicklung von Einzel-Molekül Lokalisations-Mikroskopie: Quantitative Analysen und photometrische drei-dimensionale Bildgebung N2 - Since its first experimental implementation in 2005, single-molecule localization microscopy (SMLM) emerged as a versatile and powerful imaging tool for biological structures with nanometer resolution. By now, SMLM has compiled an extensive track-record of novel insights in sub- and inter- cellular organization.\\ Moreover, since all SMLM techniques rely on the analysis of emission patterns from isolated fluorophores, they inherently allocate molecular information $per$ $definitionem$.\\ Consequently, SMLM transitioned from its origin as pure high-resolution imaging instrument towards quantitative microscopy, where the key information medium is no longer the highly resolved image itself, but the raw localization data set.\\ The work presented in this thesis is part of the ongoing effort to translate those $per$ $se$ molecular information gained by SMLM imaging to insights into the structural organization of the targeted protein or even beyond. Although largely consistent in their objectives, the general distinction between global or segmentation clustering approaches on one side and particle averaging or meta-analyses techniques on the other is usually made.\\ During the course of my thesis, I designed, implemented and employed numerous quantitative approaches with varying degrees of complexity and fields of application.\\ \\ In my first major project, I analyzed the localization distribution of the integral protein gp210 of the nuclear pore complex (NPC) with an iterative \textit{k}-means algorithm. Relating the distinct localization statistics of separated gp210 domains to isolated fluorescent signals led, among others, to the conclusion that the anchoring ring of the NPC consists of 8 homo-dimers of gp210.\\ This is of particular significance, both because it answered a decades long standing question about the nature of the gp210 ring and it showcased the possibility to gain structural information well beyond the resolution capabilities of SMLM by crafty quantification approaches.\\ \\ The second major project reported comprises an extensive study of the synaptonemal complex (SNC) and linked cohesin complexes. Here, I employed a multi-level meta-analysis of the localization sets of various SNC proteins to facilitate the compilation of a novel model of the molecular organization of the major SNC components with so far unmatched extend and detail with isotropic three-dimensional resolution.\\ In a second venture, the two murine cohesin components SMC3 and STAG3 connected to the SNC were analyzed. Applying an adapted algorithm, considering the disperse nature of cohesins, led to the realization that there is an apparent polarization of those cohesin complexes in the SNC, as well as a possible sub-structure of STAG3 beyond the resolution capabilities of SMLM.\\ \\ Other minor projects connected to localization quantification included the study of plasma membrane glycans regarding their overall localization distribution and particular homogeneity as well as the investigation of two flotillin proteins in the membrane of bacteria, forming clusters of distinct shapes and sizes.\\ \\ Finally, a novel approach to three-dimensional SMLM is presented, employing the precise quantification of single molecule emitter intensities. This method, named TRABI, relies on the principles of aperture photometry which were improved for SMLM.\\ With TRABI it was shown, that widely used Gaussian fitting based localization software underestimates photon counts significantly. This mismatch was utilized as a $z$-dependent parameter, enabling the conversion of 2D SMLM data to a virtual 3D space. Furthermore it was demonstrated, that TRABI can be combined beneficially with a multi-plane detection scheme, resulting in superior performance regarding axial localization precision and resolution.\\ Additionally, TRABI has been subsequently employed to photometrically characterize a novel dye for SMLM, revealing superior photo-physical properties at the single-molecule level.\\ Following the conclusion of this thesis, the TRABI method and its applications remains subject of diverse ongoing research. N2 - Seit ihrer ersten experimentellen Umsetzung in 2005 hat sich die Einzel-Molekül Lokalisations-Mikroskopie (\textit{engl.} single-molecule localization microscopy (SMLM)) als vielseitig einsetzbares Verfahren in der biologischen Bildgebung etabliert, vor allem aufgrund ihres hohen Auflösungsvermögens im Nanometer Bereich. Bis heute wurde eine Reihe neuer Erkenntnisse bezüglich der sub- und inter- zellulären Organisation durch den Einsatz der SMLM erlangt.\\ Aufgrund der Tatsache, dass alle SMLM Techniken auf dem Prinzip basieren, isolierte Fluorophore zu detektieren und zu analysieren, beinhalten SMLM Daten $per$ $definitionem$ molekulare Informationen.\\ Folgerichtig entwickelte sich das Feld der SMLM vom reinen Bildgebungsinstrument mit Nanometer-Auflösung hin zu quantitativer Mikroskopie, bei welcher der Fokus nicht länger vornehmlich auf dem hochaufgelöstem Bild, sondern vielmehr auf den Lokalisationsdaten liegt.\\ Die vorliegende Arbeit ist als Teil der anhaltenden Bestrebungen zu sehen, aus den $per$ $se$ molekularen Informationen der SMLM weiterführende Erkenntnisse über die strukturelle Organisation der markierten Proteine zu gewinnen. Obwohl mit der gleichen prinzipiellen Zielsetzung versehen, unterscheiden sich hierbei globale oder Segmentierungs- Clusteranalysen von Lokalisations-Meta-Analysen oder so genannten \textit{particle averaging} Ansätzen.\\ Während meiner Doktorarbeit habe ich verschiedene Quantifizierungs Ansätze entworfen, implementiert und angewendet, mit unterschiedlichen Graden an Komplexität und Breite des Anwendungsgebietes.\\ \\ In meinem ersten wesentlichem Projekt analysierte ich mit einem iterativen \textit{k}-means Algorithmus die Lokalisationsverteilung des integralen Proteins gp210, welches Teil des Kernporenkomplexes ist (\textit{engl.} nuclear pore complex (NPC)). Durch den Vergleich der charakteristischen Lokalisations-Statistik von separierten gp210 Domänen mit isolierten Fluoreszenzmarkern konnte unter anderem festgestellt werden, dass der Verankerungsring des NPC aus acht gp210 Homodimeren bestehen muss.\\ Diese Erkenntnis beantwortet zum einen eine jahrzehntealte Frage nach der Zusammensetzung des gp210 Rings und zum anderen liefert sie ein Beispiel dafür, dass durch eine geschickte Analyse der Lokalisationsstatistik strukturelle Informationen erlangt werden können, die jenseits des räumlichen Auflösungsvermögens von SMLM liegen.\\ \\ Das zweite hier vorgestellte wesentliche Projekt beinhaltet eine umfassende Studie des Synaptonemalen Komplexes (\textit{engl.} synaptonemal complex (SNC)) und damit verbundenen Cohesin Komplexen. Um die molekulare Organisation des SNC zu untersuchen, implementierte ich eine multi-level Meta-Analyse der Lokalisationsdaten mehrerer SNC Komponenten. Aus dessen Ergebnissen konnte ein neues drei dimensionales molekulares Modell des SNC erstellt werden.\\ Nachfolgend wurden die beiden murinen Cohesine SMC3 und STAG3 mit adaptierter Methodik untersucht. Hierbei musste die starke intrinsische Dispersion der Cohesin-Signale berücksichtigt werden. Die Analyse ergab deutliche Hinweise auf eine Polarisation der Cohesine innerhalb des SNC. Zudem zeigte sich eine mögliche Substruktur in der Organisation von STAG3, die unterhalb der Auflösungsgrenze von SMLM liegt.\\ \\ Weitere Nebenprojekte im Zusammenhang mit quantitativer Lokalisationsanalyse umfassten die Untersuchung der Lokalisationsverteilung von Plasma-Membran Glykanen, sowie zweier Flotillin Proteine in den Membranen von Bakterien, welche Cluster unterschiedlicher Form und Größe aufzeigten.\\ \\ Schließlich wird ein neuartiger Ansatz für dreidimensionale SMLM vorge-stellt, die auf der genauen Bestimmung von Einzel-Molekül Intensitäten basiert. Diese Methode, genannt TRABI, stützt sich auf die Prinzipien der Apertur Photometrie, welche für die SMLM angepasst und verbessert wurden.\\ Mit TRABI konnte gezeigt werden, dass weit verbreitete Lokalisations-Software, die auf $Gaussian-Fitting$ basiert, die Photonenzahl von Emittern oftmals stark unterschätzt. Diese Diskrepanz kann als $z$-abhängiger Parameter verwendet werden um z.B. einen 2D SMLM Datenatz in einen virtuellen 3D Raum zu überführen. Außerdem wird gezeigt, dass TRABI vorteilhaft mit einem multi-plane Detektionsschema kombiniert werden kann und dabei höhere axiale Lokalisationsgenauigkeiten und Auflösungen er-reicht.\\ Zudem wurde TRABI eingesetzt, um einen neuen Fluoreszenzfarbstoff für SMLM zu charakterisieren und dessen verbesserte photo-physikalische Eigenschaften auf Einzel-Molekül Basis zu demonstrieren.\\ Auch nach Abschluss dieser Arbeit ist die TRABI Methode und deren Anwendung weiterhin Gegenstand diverser Forschungen. KW - Einzelmolekülmikroskopie KW - Quantitative Mikroskopie KW - dSTORM Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-156355 ER - TY - JOUR A1 - Matos, Isa A1 - Machado, Miguel P. A1 - Schartl, Manfred A1 - Coelho, Maria Manuela T1 - Allele-specific expression variation at different ploidy levels in Squalius alburnoides JF - Scientific Reports N2 - Allopolyploid plants are long known to be subject to a homoeolog expression bias of varying degree. The same phenomenon was only much later suspected to occur also in animals based on studies of single selected genes in an allopolyploid vertebrate, the Iberian fish Squalius alburnoides. Consequently, this species became a good model for understanding the evolution of gene expression regulation in polyploid vertebrates. Here, we analyzed for the first time genome-wide allele-specific expression data from diploid and triploid hybrids of S. alburnoides and compared homoeolog expression profiles of adult livers and of juveniles. Co-expression of alleles from both parental genomic types was observed for the majority of genes, but with marked homoeolog expression bias, suggesting homoeolog specific reshaping of expression level patterns in hybrids. Complete silencing of one allele was also observed irrespective of ploidy level, but not transcriptome wide as previously speculated. Instead, it was found only in a restricted number of genes, particularly ones with functions related to mitochondria and ribosomes. This leads us to hypothesize that allelic silencing may be a way to overcome intergenomic gene expression interaction conflicts, and that homoeolog expression bias may be an important mechanism in the achievement of sustainable genomic interactions, mandatory to the success of allopolyploid systems, as in S. alburnoides. KW - Gene expression analysis KW - Transcription KW - Transcriptomic Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200910 VL - 9 ER - TY - JOUR A1 - von Collenberg, Cora R. A1 - Schmitt, Dominique A1 - Rülicke, Thomas A1 - Sendtner, Michael A1 - Blum, Robert A1 - Buchner, Erich T1 - An essential role of the mouse synapse-associated protein Syap1 in circuits for spontaneous motor activity and rotarod balance JF - Biology Open N2 - Synapse-associated protein 1 (Syap1) is the mammalian homologue of synapse-associated protein of 47 kDa (Sap47) in Drosophila. Genetic deletion of Sap47 leads to deficiencies in short-term plasticity and associative memory processing in flies. In mice, Syap1 is prominently expressed in the nervous system, but its function is still unclear. We have generated Syap1 knockout mice and tested motor behaviour and memory. These mice are viable and fertile but display distinct deficiencies in motor behaviour. Locomotor activity specifically appears to be reduced in early phases when voluntary movement is initiated. On the rotarod, a more demanding motor test involving control by sensory feedback, Syap1-deficient mice dramatically fail to adapt to accelerated speed or to a change in rotation direction. Syap1 is highly expressed in cerebellar Purkinje cells and cerebellar nuclei. Thus, this distinct motor phenotype could be due to a so-far unknown function of Syap1 in cerebellar sensorimotor control. The observed motor defects are highly specific since other tests in the modified SHIRPA exam, as well as cognitive tasks like novel object recognition, Pavlovian fear conditioning, anxiety-like behaviour in open field dark-light transition and elevated plus maze do not appear to be affected in Syap1 knockout mice. KW - Syap1 knockout KW - Motor behaviour KW - Associative learning KW - Fear conditioning KW - Object recognition Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201986 N1 - PDF includes: Correction: An essential role of the mouse synapse-associated protein Syap1 in circuits for spontaneous motor activity and rotarod balance - February 15, 2020. Biology Open (2020) 9, bio048942. doi:10.1242/bio.048942 VL - 8 ER - TY - JOUR A1 - Mottola, Austin A1 - Morschhäuser, Joachim T1 - An intragenic recombination event generates a Snf4-independent form of the essential protein kinase SNF1 in Candida albicans JF - mSphere N2 - The heterotrimeric protein kinase SNF1 plays a key role in the metabolic adaptation of the pathogenic yeast Candida albicans. It consists of the essential catalytic α-subunit Snf1, the γ-subunit Snf4, and one of the two β-subunits Kis1 and Kis2. Snf4 is required to release the N-terminal catalytic domain of Snf1 from autoinhibition by the C-terminal regulatory domain, and snf4Δ mutants cannot grow on carbon sources other than glucose. In a screen for suppressor mutations that restore growth of a snf4Δ mutant on alternative carbon sources, we isolated a mutant in which six amino acids between the N-terminal kinase domain and the C-terminal regulatory domain of Snf1 were deleted. The deletion was caused by an intragenic recombination event between two 8-bp direct repeats flanking six intervening codons. In contrast to truncated forms of Snf1 that contain only the kinase domain, the Snf4-independent Snf1\(^{Δ311 − 316}\) was fully functional and could replace wild-type Snf1 for normal growth, because it retained the ability to interact with the Kis1 and Kis2 β-subunits via its C-terminal domain. Indeed, the Snf4-independent Snf1\(^{Δ311 − 316}\) still required the β-subunits of the SNF1 complex to perform its functions and did not rescue the growth defects of kis1Δ mutants. Our results demonstrate that a preprogrammed in-frame deletion event within the SNF1 coding region can generate a mutated form of this essential kinase which abolishes autoinhibition and thereby overcomes growth deficiencies caused by a defect in the γ-subunit Snf4. KW - AMP-activated kinases KW - Candida albicans KW - genetic recombination KW - metabolic adaptation KW - suppressor mutation Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202170 VL - 4 IS - 3 ER - TY - JOUR A1 - Liu, Ruiqi A1 - Kinoshita, Masato A1 - Adolfi, Mateus C. A1 - Schartl, Manfred T1 - Analysis of the role of the Mc4r system in development, growth, and puberty of medaka JF - Frontiers in Endocrinology N2 - In mammals the melanocortin 4 receptor (Mc4r) signaling system has been mainly associated with the regulation of appetite and energy homeostasis. In fish of the genus Xiphophorus (platyfish and swordtails) puberty onset is genetically determined by a single locus, which encodes the mc4r. Wild populations of Xiphophorus are polymorphic for early and late-maturing individuals. Copy number variation of different mc4r alleles is responsible for the difference in puberty onset. To answer whether this is a special adaptation of the Mc4r signaling system in the lineage of Xiphophorus or a more widely conserved mechanism in teleosts, we studied the role of Mc4r in reproductive biology of medaka (Oryzias latipes), a close relative to Xiphophorus and a well-established model to study gonadal development. To understand the potential role of Mc4r in medaka, we characterized the major features of the Mc4r signaling system (mc4r, mrap2, pomc, agrp1). In medaka, all these genes are expressed before hatching. In adults, they are mainly expressed in the brain. The transcript of the receptor accessory protein mrap2 co-localizes with mc4r in the hypothalamus in adult brains indicating a conserved function of modulating Mc4r signaling. Comparing growth and puberty between wild-type and mc4r knockout medaka revealed that absence of Mc4r does not change puberty timing but significantly delays hatching. Embryonic development of knockout animals is retarded compared to wild-types. In conclusion, the Mc4r system in medaka is involved in regulation of growth rather than puberty. KW - medaka KW - Mc4r KW - knockout KW - puberty KW - growth Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-201472 VL - 10 ER -