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mechanisms that control meiotic chromosome organization and homologous recombination. We are particularly interested in understanding how recombination intermediates are formed and processed, how meiotic
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bioinformatic skills and willingness to embrace novel bioinformatic approaches to analyse large datasets Desirable skills: Supervision and teaching experience Experience with mollusc physiology, cell biology and
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Biology. Dedicated to a mechanistic understanding of fundamental biomedical processes, scientists at the Max Perutz Labs aim to link breakthroughs in basic research to advances in human health. The Max
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in the field of Molecular Biology. Dedicated to a mechanistic understanding of fundamental biomedical processes, scientists at the Max Perutz Labs aim to link breakthroughs in basic research
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regulation and related biological processes Strong expertise in genetic engineering (CRISPR/Cas9 genome editing), mammalian cell culture (BSL1/BSL2), flow cytometry, transcriptomics and next-generation
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RNA decay and turnover, RNA exosome biology, and the molecular mechanisms of (post-transcriptional) gene regulation and related biological processes Strong expertise in genetic engineering (CRISPR/Cas9
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will combine state-of-the-art molecular biology, biochemistry, and bioinformatics to map the regulation and function of this lncRNA under conditions relevant to metabolic disease, including ER stress
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interactions, involving experimental work Comprehensive understanding of gut microbial- and/or neurophysiology, with a strong preference for experience with both Excellent bioinformatics skills, including
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experimental work Comprehensive understanding of gut microbial- and/or neurophysiology, with a strong preference for experience with both Excellent bioinformatics skills, including working knowledge of R and
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the Faculty of Social Sciences. The aim of the CCL is to improve our understanding of the causes, processes and effects of mediated communication using computational methods. We strive to advance core