Bourens Myriam, Barrientos Antoni
Department of Neurology, University of Miami Miller School of Medicine, Miami, FL, USA.
Department of Neurology, University of Miami Miller School of Medicine, Miami, FL, USA
EMBO Rep. 2017 Mar;18(3):477-494. doi: 10.15252/embr.201643103. Epub 2017 Jan 12.
Defects in mitochondrial respiratory chain complex IV (CIV) frequently cause encephalocardiomyopathies. Human CIV assembly involves 14 subunits of dual genetic origin and multiple nucleus-encoded ancillary factors. Biogenesis of the mitochondrion-encoded copper/heme-containing COX1 subunit initiates the CIV assembly process. Here, we show that the intermembrane space twin CXC protein CMC1 forms an early CIV assembly intermediate with COX1 and two assembly factors, the cardiomyopathy proteins COA3 and COX14. A TALEN-mediated knockout HEK293T cell line displayed normal COX1 synthesis but decreased CIV activity owing to the instability of newly synthetized COX1. We demonstrate that CMC1 stabilizes a COX1-COA3-COX14 complex before the incorporation of COX4 and COX5a subunits. Additionally, we show that CMC1 acts independently of CIV assembly factors relevant to COX1 metallation (COX10, COX11, and SURF1) or late stability (MITRAC7). Furthermore, whereas human COX14 and COA3 have been proposed to affect COX1 mRNA translation, our data indicate that CMC1 regulates turnover of newly synthesized COX1 prior to and during COX1 maturation, without affecting the rate of COX1 synthesis.
线粒体呼吸链复合物IV(CIV)缺陷常导致脑心肌病变。人类CIV组装涉及14个具有双重遗传起源的亚基和多个核编码辅助因子。线粒体编码的含铜/血红素的COX1亚基的生物合成启动了CIV组装过程。在此,我们表明,线粒体内膜间隙双CXC蛋白CMC1与COX1以及两个组装因子——心肌病相关蛋白COA3和COX14形成早期CIV组装中间体。一种经TALEN介导的基因敲除HEK293T细胞系显示COX1合成正常,但由于新合成的COX1不稳定,CIV活性降低。我们证明,在COX4和COX5a亚基掺入之前,CMC1可稳定COX1-COA3-COX14复合物。此外,我们表明,CMC1的作用独立于与COX1金属化相关的CIV组装因子(COX10、COX11和SURF1)或后期稳定性因子(MITRAC7)。此外,尽管有人提出人类COX14和COA3会影响COX1 mRNA翻译,但我们的数据表明,CMC1在COX1成熟之前及过程中调节新合成的COX1的周转,而不影响COX1的合成速率。