Centre de Génétique Moléculaire du CNRS, FRE3144, FRC3115, Gif sur Yvette cedex, France.
Mol Microbiol. 2010 Jan;75(2):474-88. doi: 10.1111/j.1365-2958.2009.07001.x. Epub 2009 Dec 16.
The Oxa1/YidC/Alb3 family plays a key role in the biogenesis of the respiratory and photosynthetic complexes in bacteria and organelles. In Saccharomyces cerevisiae, Oxa1 mediates the co-translational insertion of mitochondrially encoded subunits of the three respiratory complexes III, IV and V within the inner membrane and also controls a late step in complex V assembly. No crystal structure of YidC or Oxa1 is available and little is known about the respective role of each transmembrane segment (TM) and hydrophilic loop of this polytopic protein on the biogenesis of the three complexes. Here, we have generated a collection of random point mutations located in the hydrophobic and hydrophilic domains of the protein and characterized their effects on the assembly of the three respiratory complexes. Our results show mutant-dependent differential effects, particularly on complex V. In order to identify tertiary interactions within Oxa1, we have also isolated revertants carrying second-site compensatory mutations able to restore respiration. This analysis reveals the existence of functional interactions between TM2 and TM5, TM4 and TM5 as well as between TM4 and loop 2, highlighting the key position of TM4 and TM5 in the Oxa1 protein.
Oxa1/YidC/Alb3 家族在细菌和细胞器的呼吸和光合复合物的生物发生中起着关键作用。在酿酒酵母中,Oxa1 介导在线粒体编码的三个呼吸复合物 III、IV 和 V 的亚基的共翻译插入到内膜中,并且还控制复合物 V 组装的后期步骤。目前还没有 YidC 或 Oxa1 的晶体结构,并且对于这种多跨膜蛋白的每个跨膜片段 (TM) 和亲水环在三个复合物的生物发生中的各自作用知之甚少。在这里,我们生成了一组位于蛋白质的疏水区和亲水区的随机点突变,并表征了它们对三个呼吸复合物组装的影响。我们的结果表明,突变依赖性的差异效应,特别是对复合物 V。为了确定 Oxa1 内的三级相互作用,我们还分离了带有能够恢复呼吸的第二位置补偿突变的回复突变体。该分析揭示了 TM2 和 TM5、TM4 和 TM5 以及 TM4 和环 2 之间的功能相互作用的存在,突出了 TM4 和 TM5 在 Oxa1 蛋白中的关键位置。