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host of actin-binding proteins (ABPs) modulate the growth and stability of individual filaments or organise multiple filaments into various bundled and branched networks. This role will focus on a family
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candidate will lead computational lab analysis work across multiple projects, largely focussing on the perturbation of skeletal muscle cells (myofibres) during periods of environmental and/or genetic
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data science techniques to model and classify population health risk and disease dynamics at multiple spatial and temporal scales. The PDRA will lead the development of novel approaches for managing
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to understand how striated muscle is regulated during health, disease and stress-response contexts. The successful candidate will lead computational lab analysis work across multiple projects, largely focussing
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Formstone (see Panousopoulou et al. J. Cell Sci. 2016 (https://doi.org/10.1242/jcs.180703) and Prof. Philippa Francis-West (Mao et al. Nature Comms. 2016 (https://doi: 10.1038/ncomms11469 and Prof. Philippa
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: 20-Feb-2026 Contact Person : Elena Simperl Contact Details : Elena.simperl@kcl.ac.uk Where to apply Website https://www.timeshighereducation.com/unijobs/listing/406292/post-doctoral-resea
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epidermis grow around the viscera. The work will be in close collaboration with Dr. Caroline Formstone (see Panousopoulou et al. J. Cell Sci. 2016 (https://doi.org/10.1242/jcs.180703) and Prof. Philippa
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at King's, which brings together a unique range of internationally recognised scientists and clinicians from across the School and King’s College London. More information: https://www.kcl.ac.uk/scmms About
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the growth and stability of individual filaments or organise multiple filaments into various bundled and branched networks. This role will focus on a family of actin-binding proteins that regulates the actin
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ID: 134807 Close Date: 01-Feb-2026 Contact Person: Dr Matheus Alves Duarte da Silva Contact Details: matheus.alves_duarte_da_silva@kcl.ac.uk Where to apply Website https://www.timeshighereducation.com