Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo-motoyama, Kyoto, Japan.
Department of Cell Biology and Anatomy, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Nature. 2021 Feb;590(7844):163-169. doi: 10.1038/s41586-020-03113-7. Epub 2021 Jan 6.
The mitochondrial outer membrane contains so-called β-barrel proteins, which allow communication between the cytosol and the mitochondrial interior. Insertion of β-barrel proteins into the outer membrane is mediated by the multisubunit mitochondrial sorting and assembly machinery (SAM, also known as TOB). Here we use cryo-electron microscopy to determine the structures of two different forms of the yeast SAM complex at a resolution of 2.8-3.2 Å. The dimeric complex contains two copies of the β-barrel channel protein Sam50-Sam50a and Sam50b-with partially open lateral gates. The peripheral membrane proteins Sam35 and Sam37 cap the Sam50 channels from the cytosolic side, and are crucial for the structural and functional integrity of the dimeric complex. In the second complex, Sam50b is replaced by the β-barrel protein Mdm10. In cooperation with Sam50a, Sam37 recruits and traps Mdm10 by penetrating the interior of its laterally closed β-barrel from the cytosolic side. The substrate-loaded SAM complex contains one each of Sam50, Sam35 and Sam37, but neither Mdm10 nor a second Sam50, suggesting that Mdm10 and Sam50b function as placeholders for a β-barrel substrate released from Sam50a. Our proposed mechanism for dynamic switching of β-barrel subunits and substrate explains how entire precursor proteins can fold in association with the mitochondrial machinery for β-barrel assembly.
线粒体的外膜含有所谓的β-桶状蛋白,这些蛋白允许细胞质和线粒体内部之间进行通讯。β-桶状蛋白插入外膜是由多亚基线粒体分拣和装配机制(SAM,也称为 TOB)介导的。在这里,我们使用冷冻电子显微镜以 2.8-3.2Å 的分辨率确定了两种不同形式的酵母 SAM 复合物的结构。二聚体复合物包含两个β-桶通道蛋白 Sam50-Sam50a 和 Sam50b 的拷贝,具有部分打开的侧向门。外周膜蛋白 Sam35 和 Sam37 从细胞质侧覆盖 Sam50 通道,对于二聚体复合物的结构和功能完整性至关重要。在第二个复合物中,Sam50b 被β-桶蛋白 Mdm10 取代。Sam37 与 Sam50a 合作,通过从细胞质侧穿透其侧向关闭的β-桶内部,招募并捕获 Mdm10。负载底物的 SAM 复合物含有一个 Sam50、Sam35 和 Sam37,但没有 Mdm10 或第二个 Sam50,这表明 Mdm10 和 Sam50b 作为从 Sam50a 释放的β-桶底物的占位符发挥作用。我们提出的β-桶亚基和底物的动态切换机制解释了完整的前体蛋白如何与线粒体β-桶组装机制折叠相关联。