Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, Wuhan University, Wuhan, Hubei, 430072, China.
Cardiovascular Research Institute, University of California, San Francisco, FL, USA.
Cell Death Differ. 2020 Jan;27(1):146-160. doi: 10.1038/s41418-019-0345-2. Epub 2019 May 16.
Mitochondrial cristae are critical for efficient oxidative phosphorylation, however, how cristae architecture is precisely organized remains largely unknown. Here, we discovered that Mic19, a core component of MICOS (mitochondrial contact site and cristae organizing system) complex, can be cleaved at N-terminal by mitochondrial protease OMA1 under certain physiological stresses. Mic19 directly interacts with mitochondrial outer-membrane protein Sam50 (the key subunit of SAM complex) and inner-membrane protein Mic60 (the key component of MICOS complex) to form Sam50-Mic19-Mic60 axis, which dominantly connects SAM and MICOS complexes to assemble MIB (mitochondrial intermembrane space bridging) supercomplex for mediating mitochondrial outer- and inner-membrane contact. OMA1-mediated Mic19 cleavage causes Sam50-Mic19-Mic60 axis disruption, which separates SAM and MICOS and leads to MIB disassembly. Disrupted Sam50-Mic19-Mic60 axis, even in the presence of SAM and MICOS complexes, causes the abnormal mitochondrial morphology, loss of mitochondrial cristae junctions, abnormal cristae distribution and reduced ATP production. Importantly, Sam50 displays punctate distribution at mitochondrial outer membrane, and acts as an anchoring point to guide the formation of mitochondrial cristae junctions. Therefore, we propose that Sam50-Mic19-Mic60 axis-mediated SAM-MICOS complexes integration determines mitochondrial cristae architecture.
线粒体嵴对于高效的氧化磷酸化至关重要,然而,嵴结构是如何精确组织的仍然很大程度上未知。在这里,我们发现 MICOS(线粒体接触和嵴组织系统)复合物的核心组成部分 Mic19,在某些生理应激下,可以在线粒体蛋白酶 OMA1 作用下在 N 端被切割。Mic19 直接与线粒体外膜蛋白 Sam50(SAM 复合物的关键亚基)和内膜蛋白 Mic60(MICOS 复合物的关键组成部分)相互作用,形成 Sam50-Mic19-Mic60 轴,该轴主要连接 SAM 和 MICOS 复合物,组装 MIB(线粒体间空间桥接)超级复合物,介导线粒体外膜和内膜的接触。OMA1 介导的 Mic19 切割导致 Sam50-Mic19-Mic60 轴的破坏,从而分离 SAM 和 MICOS,并导致 MIB 解体。即使存在 SAM 和 MICOS 复合物,破坏的 Sam50-Mic19-Mic60 轴也会导致线粒体形态异常、线粒体嵴连接丢失、嵴分布异常和 ATP 产生减少。重要的是,Sam50 在线粒体外膜上呈点状分布,并作为一个锚定点来指导线粒体嵴连接的形成。因此,我们提出 Sam50-Mic19-Mic60 轴介导的 SAM-MICOS 复合物的整合决定了线粒体嵴的结构。