锚固
酵母
领域(数学分析)
融合
跨膜结构域
跨膜蛋白
脂质双层融合
细胞生物学
芽殖酵母
化学
生物
计算生物学
酿酒酵母
遗传学
心理学
膜
认知科学
受体
哲学
数学分析
语言学
数学
作者
Raphaëlle Versini,Marc Baaden,Laetitia Cavellini,Mickaël M. Cohen,Antoine Taly,Patrick Fuchs
标识
DOI:10.1016/j.str.2024.08.017
摘要
Outer mitochondrial membrane fusion, a vital cellular process, is mediated by mitofusins. However, the underlying molecular mechanism remains elusive. We have performed extensive multiscale molecular dynamics simulations to predict a model of the transmembrane (TM) domain of the yeast mitofusin Fzo1. Coarse-grained simulations of the two TM domain helices, TM1 and TM2, reveal a stable interface, which is controlled by the charge status of residue Lys716. Atomistic replica-exchange simulations further tune our model, which is confirmed by a remarkable agreement with an independent AlphaFold2 (AF2) prediction of Fzo1 in complex with its fusion partner Ugo1. Furthermore, the presence of the TM domain destabilizes the membrane, even more if Lys716 is charged, which can be an asset for initiating fusion. The functional role of Lys716 was confirmed with yeast experiments, which show that mutating Lys716 to a hydrophobic residue prevents mitochondrial fusion.
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