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device engineering at the London Centre for Nanotechnology with quantitative cell and tissue biology at King's Guy's Campus. The successful candidate will join a multidisciplinary environment spanning
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investigating the biology of cell wall-deficient bacteria (CWDB) and their potential to establish long-term endosymbiosis within mammalian cells. The project, led by Dr Maddie Moule, will commence on 1 September
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Biophysics, Physics, Physical Chemistry, biochemistry, Cell Biology or related disciplines that has experience and is interested in different aspects of molecular and cellular mechanobiology. The candidate
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mechanisms. Elucidating Cellular Networks: Linking sensory phenotypes with the molecular and biological functions of GPCRs. Nurturing Young Talent: Supervising and training chemistry and food chemistry
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, developmental biology, cryobiology, cell biology, physiology, biomedical sciences or a closely related discipline, together with knowledge of ovarian biology and demonstrable laboratory-based research experience
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machinery that transports sphingolipids to the surface of Gram-negative bacteria. This exciting project combines cryo-electron microscopy, native mass spectrometry, proteomics, and bacterial cell biology to
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, including RNA work, protein purification, mammalian cell culture, next generation sequencing genome-wide analyses (ChIP) and mass spectrometry. You will establish and optimise protocols, design and accurately
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• Strong understanding of disease pathology and cell biology underlying immune-mediated inflammatory disease • Strong experience in laboratory-based immunology techniques, such as sterile human
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, together with experience in mammalian cell culture, CRISPR/Cas9 genome editing and genomic or epigenomic approaches. Experience analysing genomic datasets and a strong understanding of transcriptional and
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and peptides; experience in using structural guidance for ligand design; and experience in biochemical and cellular assays, including target profiling/target engagement. The post is available from 1