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on the structure–function relationship of the bacterial chromosome. How bacteria organize their DNA and how this structure influences gene expression remain open questions. For example: How is the chromosome
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) and offers a wide range of support structures, including state-of-the-art light microscopy and advanced bio-image data science facilities in the outstanding Dresden environment. Tasks: Dr. Xingbo Yang’s
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relevant field such as Structural Biology, Biochemistry, or Molecular Biology Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7257-FLOVIN-001/Default.aspx Work Location(s) Number
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career. Information on CGEN and its individual groups can be found at: https://cgen.ku.dk/ and on ICMM at: https://icmm.ku.dk/english/ . Project description The project will be decided in consultation
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circuits. We pursue a multi-disciplinary approach integrating data across biological scales in the brain, including molecular Chromosome-Conformation-Capture sequencing technologies, single-cell imaging
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results for coding and non-coding genome alterations, chromosome copy number alterations, genome rearrangements, 3D structure, and mutational signatures Collaboration and Communication - 10% - Actively
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-fate determination, genome editing, the role of chromosome structure and chromatin modification in gene regulation, and the molecular evolution of chromosome-wide mechanisms of gene control in
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diseased neural circuits. We pursue a multi-disciplinary approach integrating data across biological scales in the brain, including molecular Chromosome-Conformation-Capture sequencing technologies, single
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biomedical engineering, bioinformatics, biotechnology, molecular imaging and biomaterials. Training within the RegSci PhD programme takes place across three levels: students carry out their own research