蛋白质稳态
细胞生物学
内膜转移酶
内质网
线粒体
外膜转位酶
线粒体膜转运蛋白
胞浆
细菌外膜
转运蛋白
线粒体载体
生物
线粒体内膜
过氧化物酶体
线粒体融合
蛋白质折叠
内质网相关蛋白降解
内膜
生物化学
膜蛋白
膜转运
ATP-ADP转位酶
DNAJA3公司
化学
翻译(生物学)
线粒体分裂
焊剂(冶金)
易位
电压依赖性阴离子通道
膜转运蛋白
蛋白质靶向
跨膜蛋白
蛋白质降解
生物物理学
细胞室
作者
Shunsuke Matsumoto,Suzuka Ono,Toshiya Endo
摘要
Mitochondria are enclosed by a double-membrane structure composed of the outer and inner membranes, and this architectural organization underlies their diverse cellular functions. In particular, the mitochondrial outer membrane serves as an essential interface between the cytosol and the mitochondrial interior, regulating the flux of proteins, lipids, small molecules, and ions through the coordinated activities of its resident proteome. Consequently, structural and functional defects of outer membrane proteins are subject to continuous surveillance, and aberrant proteins are rapidly recognized and degraded. Defects in precursor translocation or translation can lead to the stalling of precursor proteins at the primary protein import gate, the TOM complex. Such situations are resolved by multiple quality control systems operating across both the mitochondria and the cytosol. In addition, proteins normally destined for the endoplasmic reticulum or peroxisomes may be mistargeted to mitochondria, and these mislocalized proteins are likewise managed through dedicated mechanisms that promote their degradation or re-targeting. In this review, we summarize current insights into the molecular factors and mechanisms that maintain proteostasis at the mitochondrial outer membrane.
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