Celebi Nil, Yi Liang, Facey Sandra J, Kuhn Andreas, Dalbey Ross E
Department of Chemistry, The Ohio State University, Columbus, OH 43210, USA.
J Mol Biol. 2006 Apr 14;357(5):1428-36. doi: 10.1016/j.jmb.2006.01.030. Epub 2006 Jan 26.
The membrane assembly of the respiratory complexes requires the membrane insertases Oxa1 in mitochondria and YidC in bacteria. Oxa1 is responsible for the insertion of the mitochondrial cytochrome c oxidase subunit II (CoxII). Here, we investigated whether YidC, the bacterial Oxa1 homolog, plays a crucial role in the assembly of the bacterial subunit II (CyoA) of cytochrome bo oxidase. CyoA spans the membrane twice and is made with a cleavable signal peptide. We find that translocation of the short N-terminal domain of CyoA is YidC-dependent. In contrast, both the SecA/SecYEG complex and YidC are required for translocation of the large C-terminal domain. By studying the N-terminal domain of CyoA alone, we find that translocation is unaffected when SecE is depleted, suggesting that the YidC insertase on its own catalyzes membrane insertion of the N-terminal region of CyoA. Strikingly, we find that the translocation of the N-terminal domain is a prerequisite for translocation of the C-terminal domain in the full-length CyoA protein because translocation of the large C-terminal domain alone in a truncated CyoA derivative was observed in the absence of YidC. This work shows that the distinct domains of CyoA have different translocation requirements (YidC only and Sec/YidC) and confirms that the membrane biogenesis of subunit II of cytochrome oxidase in bacteria and mitochondria have conserved features.
呼吸复合物的膜组装需要线粒体中的膜插入酶Oxa1和细菌中的YidC。Oxa1负责线粒体细胞色素c氧化酶亚基II(CoxII)的插入。在此,我们研究了细菌Oxa1同源物YidC是否在细胞色素bo氧化酶的细菌亚基II(CyoA)的组装中起关键作用。CyoA跨膜两次,由一个可切割的信号肽构成。我们发现CyoA短N端结构域的转运依赖于YidC。相比之下,大C端结构域的转运则需要SecA/SecYEG复合物和YidC两者。通过单独研究CyoA的N端结构域,我们发现当SecE缺失时转运不受影响,这表明YidC插入酶自身催化CyoA N端区域的膜插入。令人惊讶的是,我们发现N端结构域的转运是全长CyoA蛋白中C端结构域转运的先决条件,因为在缺失YidC的情况下,在截短的CyoA衍生物中仅观察到了大C端结构域的转运。这项工作表明CyoA的不同结构域有不同的转运需求(仅YidC和Sec/YidC),并证实了细菌和线粒体中细胞色素氧化酶亚基II的膜生物合成具有保守特征。