Schimo Sonja, Wittig Ilka, Pos Klaas M, Ludwig Bernd
Institute of Biochemistry, Membrane Transport Machineries, Goethe-University, Frankfurt am Main, Germany.
Functional Proteomics, SFB 815 Core Unity, Faculty of Medicine, Goethe-University, Frankfurt am Main, Germany.
PLoS One. 2017 Jan 20;12(1):e0170037. doi: 10.1371/journal.pone.0170037. eCollection 2017.
Biogenesis of mitochondrial cytochrome c oxidase (COX) is a complex process involving the coordinate expression and assembly of numerous subunits (SU) of dual genetic origin. Moreover, several auxiliary factors are required to recruit and insert the redox-active metal compounds, which in most cases are buried in their protein scaffold deep inside the membrane. Here we used a combination of gel electrophoresis and pull-down assay techniques in conjunction with immunostaining as well as complexome profiling to identify and analyze the composition of assembly intermediates in solubilized membranes of the bacterium Paracoccus denitrificans. Our results show that the central SUI passes through at least three intermediate complexes with distinct subunit and cofactor composition before formation of the holoenzyme and its subsequent integration into supercomplexes. We propose a model for COX biogenesis in which maturation of newly translated COX SUI is initially assisted by CtaG, a chaperone implicated in CuB site metallation, followed by the interaction with the heme chaperone Surf1c to populate the redox-active metal-heme centers in SUI. Only then the remaining smaller subunits are recruited to form the mature enzyme which ultimately associates with respiratory complexes I and III into supercomplexes.
线粒体细胞色素c氧化酶(COX)的生物合成是一个复杂的过程,涉及多种具有双重遗传起源的亚基(SU)的协同表达和组装。此外,还需要几个辅助因子来招募和插入氧化还原活性金属化合物,在大多数情况下,这些化合物埋藏在膜内深处的蛋白质支架中。在这里,我们结合凝胶电泳和下拉分析技术,以及免疫染色和复合物组分析,来鉴定和分析反硝化副球菌溶解膜中组装中间体的组成。我们的结果表明,核心SUI在全酶形成及其随后整合到超复合物之前,至少会通过三种具有不同亚基和辅因子组成的中间复合物。我们提出了一个COX生物合成模型,其中新翻译的COX SUI的成熟最初由参与CuB位点金属化的伴侣蛋白CtaG协助,随后与血红素伴侣蛋白Surf1c相互作用,以填充SUI中的氧化还原活性金属-血红素中心。只有在那时,其余较小的亚基才会被招募形成成熟的酶,该酶最终与呼吸复合物I和III结合形成超复合物。