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controlling cancer cell biology. Your research focus will be on (1) the molecular mechanisms underlying the action of the oncoprotein MYC; or 2) the role of chromatin remodeling complexes in regulating access
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, biochemistry and biophysics. Methods including cell painting analysis, immunostaining and confocal imaging, crystallography (practical and analysis) You will report to the Associate Professor Simon Glerup. Your
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If you have extended experience in imaging and imaging analysis from two- and three-dimension (3D) cell culture and your aspiration is to be at the forefront of system biology and single-cell
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Job Description If you have extended experience in imaging and imaging analysis from two- and three-dimension (3D) cell culture and your aspiration is to be at the forefront of system biology and
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the function of risk factors in neurological disorders. By leveraging human-induced pluripotent stem cell (hiPSC) technology, we will establish hiPSC-derived brain cell models relevant to the study of
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. Knowledge of olfaction, calcium, or GPCR signalling is preferred. Experience with biological assay developments such as bulk and single-cell reporter assays. Programming skills (e.g., Python, R). As a formal
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in vitro studies in cells and tissues (gut cell lines, primary blood and immune cells, and tissues) with various analytical techniques and omics technologies, to animal model studies (mainly in piglets
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-generation anti-fungal vaccines. Specifically, the aim is to express antigens and immuno-modulatory proteins on the yeast surface to construct whole-cell yeast immunogens. Combined with immunological assays
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available at the university’s International Staff Mobility (ISM) office , which offers a variety of services to international researchers coming to and working at the University of Copenhagen. The office
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-based genome editing, and bioinformatics. The lab uses diverse cell models, including embryonic stem cells and their differentiated derivatives. The research in the Choudhary group is mainly funded by