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An ESCRT-III Polymerization Sequence Drives Membrane Deformation and Fission

机译:ESCRT-III聚合序列驱动膜变形和裂变

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摘要

The endosomal sorting complex required for transport-III (ESCRT-III) catalyzes membrane fission from within membrane necks, a process that is essential for many cellular functions, from cell division to lysosome degradation and autophagy. How it breaks membranes, though, remains unknown. Here, we characterize a sequential polymerization of ESCRT-III subunits that, driven by a recruitment cascade and by continuous subunit-turnover powered by the ATPase Vps4, induces membrane deformation and fission. During this process, the exchange of Vps24 for Did2 induces a tilt in the polymer-membrane interface, which triggers transition from flat spiral polymers to helical filament to drive the formation of membrane protrusions, and ends with the formation of a highly constricted Did2-Ist1 co-polymer that we show is competent to promote fission when bound on the inside of membrane necks. Overall, our results suggest a mechanism of stepwise changes in ESCRT-III filament structure and mechanical properties via exchange of the filament subunits to catalyze ESCRT-III activity.
机译:转运III(ESCRT-III)所需的内体分拣复合物(ESCRT-III)催化膜颈内的膜分裂,这一过程对许多细胞功能至关重要,从细胞分裂到溶酶体降解和自噬。然而,它是如何破坏细胞膜的,目前尚不清楚。在这里,我们描述了ESCRT-III亚单位的顺序聚合,其由招募级联和由ATP酶Vps4驱动的连续亚单位转换驱动,诱导膜变形和分裂。在这个过程中,Vps24与Did2的交换会导致聚合物膜界面发生倾斜,从而触发从平面螺旋聚合物到螺旋丝的转变,从而推动膜突起的形成,并最终形成高度收缩的Did2-Ist1共聚合物,我们证明,当结合在膜颈内侧时,该共聚合物能够促进裂变。总的来说,我们的结果表明,ESCRT-III纤维结构和机械性能的逐步变化机制是通过交换纤维亚基来催化ESCRT-III活性。

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