脂质双层融合
圈套复合体
螺旋(腹足类)
细胞生物学
两亲性
终端(电信)
生物物理学
膜
融合
结晶学
化学
生物
生物化学
计算机科学
共聚物
电信
生态学
哲学
有机化学
聚合物
语言学
蜗牛
作者
Kevin C. Courtney,Lanxi Wu,Taraknath Mandal,Mark F. Swift,Zhao Zhang,Mohammad Alaghemandi,Zhenyong Wu,Mazdak M. Bradberry,Claire Deo,Luke D. Lavis,Niels Volkmann,Dorit Hanein,Qiang Cui,Huan Bao,Edwin R. Chapman
标识
DOI:10.1038/s41594-021-00716-0
摘要
Neurotransmitter release is mediated by proteins that drive synaptic vesicle fusion with the presynaptic plasma membrane. While soluble N-ethylmaleimide sensitive factor attachment protein receptors (SNAREs) form the core of the fusion apparatus, additional proteins play key roles in the fusion pathway. Here, we report that the C-terminal amphipathic helix of the mammalian accessory protein, complexin (Cpx), exerts profound effects on membranes, including the formation of pores and the efficient budding and fission of vesicles. Using nanodisc-black lipid membrane electrophysiology, we demonstrate that the membrane remodeling activity of Cpx modulates the structure and stability of recombinant exocytic fusion pores. Cpx had particularly strong effects on pores formed by small numbers of SNAREs. Under these conditions, Cpx increased the current through individual pores 3.5-fold, and increased the open time fraction from roughly 0.1 to 1.0. We propose that the membrane sculpting activity of Cpx contributes to the phospholipid rearrangements that underlie fusion by stabilizing highly curved membrane fusion intermediates.
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