Cells integrate mechanical and biochemical signals via a process called mechanotransduction to generate essential gene expression patterns in space and time. This is vital for cell migration and proliferation as well as tissue morphogenesis and remodeling. While the force-sensing and force-transducing mechanisms are generally known, it remains unclear how mechanoresponsive transcription factors (TFs) are selectively translocated into the nucleus upon force activation. Such TFs include Yes-Associated Protein (YAP), Myocardin Related Transcription Factors (MRTFs), Hypoxia Induced Factors (HIFs) and others. Here, we discuss how the nucleocytoplasmic transport machinery intersects with mechanoresponsive TFs to facilitate their selective transport through nuclear pore complexes.
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Queen Mary Univ London, Barts & London Sch Med & Dent, Ctr Cutaneous Res, London E1 2AT, EnglandQueen Mary Univ London, Barts & London Sch Med & Dent, Ctr Cutaneous Res, London E1 2AT, England
Sharili, Amir S.
Connelly, John T.
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Queen Mary Univ London, Barts & London Sch Med & Dent, Ctr Cutaneous Res, London E1 2AT, EnglandQueen Mary Univ London, Barts & London Sch Med & Dent, Ctr Cutaneous Res, London E1 2AT, England
机构:KU Leuven-University of Leuven,Department of Neurosciences, Experimental Neurology and Leuven Research Institute for Neuroscience and Disease (LIND)
Steven Boeynaems
Elke Bogaert
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机构:KU Leuven-University of Leuven,Department of Neurosciences, Experimental Neurology and Leuven Research Institute for Neuroscience and Disease (LIND)
Elke Bogaert
Philip Van Damme
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机构:KU Leuven-University of Leuven,Department of Neurosciences, Experimental Neurology and Leuven Research Institute for Neuroscience and Disease (LIND)
Philip Van Damme
Ludo Van Den Bosch
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机构:KU Leuven-University of Leuven,Department of Neurosciences, Experimental Neurology and Leuven Research Institute for Neuroscience and Disease (LIND)