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10.1016/j.devcel.2015.01.005

http://scihub22266oqcxt.onion/10.1016/j.devcel.2015.01.005
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C4357538!4357538!25684354
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suck abstract from ncbi

pmid25684354      Dev+Cell 2015 ; 32 (5): 561-73
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  • Mechanical tension drives cell membrane fusion #MMPMID25684354
  • Kim JH; Ren Y; Ng WP; Li S; Son S; Kee YS; Zhang S; Zhang G; Fletcher DA; Robinson DN; Chen EH
  • Dev Cell 2015[Mar]; 32 (5): 561-73 PMID25684354show ga
  • Membrane fusion is an energy-consuming process that requires tight juxtaposition of two lipid bilayers. Little is known about how cells overcome energy barriers to bring their membranes together for fusion. Previously, we have shown that cell-cell fusion is an asymmetric process in which an ?attacking? cell drills finger-like protrusions into the ?receiving? cell to promote cell fusion. Here we show that the receiving cell mounts a Myosin II (MyoII)-mediated mechanosensory response to its invasive fusion partner. MyoII acts as a mechanosensor, which directs its force-induced recruitment to the fusion site, and the mechanosensory response of MyoII is amplified by cell adhesion molecule-initiated chemical signaling. The accumulated MyoII, in turn, increases cortical tension and promotes fusion pore formation. We propose that the protrusive and resisting forces from two fusion partners put the fusogenic synapse under high mechanical tension, which helps to overcome energy barriers for membrane apposition and drives cell membrane fusion.
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