Institute of Biochemistry and Molecular Biology, ZBMZ, Faculty of Medicine, University of Freiburg, D-79104 Freiburg, Germany.
Institute of Biochemistry and Molecular Biology, ZBMZ, Faculty of Medicine, University of Freiburg, D-79104 Freiburg, Germany; BIOSS Centre for Biological Signalling Studies, University of Freiburg, D-79104, Freiburg, Germany.
J Mol Biol. 2017 Jul 7;429(14):2148-2160. doi: 10.1016/j.jmb.2017.05.023. Epub 2017 May 30.
Mitochondrial biogenesis and function depend on the intensive exchange of molecules with other cellular compartments. The mitochondrial outer membrane plays a central role in this communication process. It is equipped with a number of specific protein machineries that enable the transport of proteins and metabolites. Furthermore, the outer membrane forms molecular contact sites with other cell organelles like the endoplasmic reticulum (ER), thus integrating mitochondrial function in cellular physiology. The best-studied mitochondrial organelle contact site, the ER-mitochondria encounter structure (ERMES) has been linked to many vital processes including mitochondrial division, inheritance, mitophagy, and phospholipid transport. Strikingly, ER-mitochondria contact sites are closely connected to outer membrane protein translocases. The translocase of the outer mitochondrial membrane (TOM) represents the general mitochondrial entry gate for precursor proteins that are synthesized on cytosolic ribosomes. The outer membrane also harbors the sorting and assembly machinery (SAM) that mediates membrane insertion of β-barrel proteins. Both of these essential protein translocases are functionally linked to ER-mitochondria contact sites. First, the SAM complex associates with an ERMES core component to promote assembly of the TOM complex. Second, several TOM components have been co-opted as ER-mitochondria tethers. We propose that protein import and organelle contact sites are linked to coordinate processes important for mitochondrial biogenesis.
线粒体生物发生和功能依赖于与其他细胞区室的分子的密集交换。线粒体的外膜在这个通讯过程中起着核心作用。它配备了许多特定的蛋白质机器,使蛋白质和代谢物的运输成为可能。此外,外膜与内质网(ER)等其他细胞细胞器形成分子接触位点,从而将线粒体功能整合到细胞生理学中。研究最充分的线粒体细胞器接触位点 ER-线粒体遭遇结构(ERMES)已与许多重要过程相关联,包括线粒体分裂、遗传、噬线粒体和磷脂转运。引人注目的是,ER-线粒体接触位点与外膜蛋白转运体密切相关。外膜线粒体转位酶(TOM)代表在细胞质核糖体上合成的前体蛋白进入线粒体的一般入口。外膜还含有分选和装配机制(SAM),介导β桶蛋白的膜插入。这两种必需的蛋白转运体在功能上与 ER-线粒体接触位点相连。首先,SAM 复合物与 ERMES 核心成分结合,促进 TOM 复合物的组装。其次,几种 TOM 成分被选为 ER-线粒体系绳。我们提出,蛋白导入和细胞器接触位点与协调线粒体生物发生的重要过程相关联。