Department of Biological Sciences, Columbia University, New York, NY, United States of America.
Department of Microbiology, University of São Paulo, São Paulo, SP, Brazil.
PLoS One. 2020 May 15;15(5):e0233177. doi: 10.1371/journal.pone.0233177. eCollection 2020.
Mitochondrial oxidative phosphorylation (oxphos) is the process by which the ATP synthase conserves the energy released during the oxidation of different nutrients as ATP. The yeast ATP synthase consists of three assembly modules, one of which is a ring consisting of 10 copies of the Atp9 subunit. We previously reported the existence in yeast mitochondria of high molecular weight complexes composed of mitochondrially encoded Atp9 and of Cox6, an imported structural subunit of cytochrome oxidase (COX). Pulse-chase experiments indicated a correlation between the loss of newly translated Atp9 complexed to Cox6 and an increase of newly formed Atp9 ring, but did not exclude the possibility of an alternate source of Atp9 for ring formation. Here we have extended studies on the functions and structure of this complex, referred to as Atco. We show that Atco is the exclusive source of Atp9 for the ATP synthase assembly. Pulse-chase experiments show that newly translated Atp9, present in Atco, is converted to a ring, which is incorporated into the ATP synthase with kinetics characteristic of a precursor-product relationship. Even though Atco does not contain the ring form of Atp9, cross-linking experiments indicate that it is oligomeric and that the inter-subunit interactions are similar to those of the bona fide ring. We propose that, by providing Atp9 for biogenesis of ATP synthase, Atco complexes free Cox6 for assembly of COX. This suggests that Atco complexes may play a role in coordinating assembly and maintaining proper stoichiometry of the two oxphos enzymes.
线粒体氧化磷酸化(oxphos)是指 ATP 合酶将不同营养物质氧化释放的能量转化为 ATP 的过程。酵母 ATP 合酶由三个组装模块组成,其中一个是由 10 个 Atp9 亚基组成的环。我们之前曾报道过酵母线粒体中存在由线粒体编码的 Atp9 和细胞色素氧化酶(COX)的结构亚基 Cox6 组成的高分子量复合物。脉冲追踪实验表明,新翻译的与 Cox6 结合的 Atp9 复合物的丢失与新形成的 Atp9 环的增加之间存在相关性,但不能排除 Atp9 环形成的替代来源。在这里,我们扩展了对这个复合物(称为 Atco)的功能和结构的研究。我们表明 Atco 是 ATP 合酶组装中 Atp9 的唯一来源。脉冲追踪实验表明,存在于 Atco 中的新翻译的 Atp9 被转化为环,该环以与前体-产物关系特征的动力学方式掺入 ATP 合酶中。尽管 Atco 不包含 Atp9 的环形式,但交联实验表明它是寡聚的,并且亚基间的相互作用与真正的环相似。我们提出,通过为 ATP 合酶的生物发生提供 Atp9,Atco 复合物使 Cox6 自由组装 COX。这表明 Atco 复合物可能在协调组装和维持两种 oxphos 酶的适当化学计量方面发挥作用。