Pérez-Mejías Gonzalo, Guerra-Castellano Alejandra, Díaz-Quintana Antonio, De la Rosa Miguel A, Díaz-Moreno Irene
Instituto de Investigaciones Químicas (IIQ), Centro de Investigaciones Científicas Isla de la Cartuja (cicCartuja), Universidad de Sevilla - Consejo Superior de Investigaciones Científicas (CSIC), Avda. Américo Vespucio 49, Sevilla 41092, Spain.
Comput Struct Biotechnol J. 2019 May 13;17:654-660. doi: 10.1016/j.csbj.2019.05.002. eCollection 2019.
The proper arrangement of protein components within the respiratory electron transport chain is nowadays a matter of intense debate, since altering it leads to cell aging and other related pathologies. Here, we discuss three current views-the so-called , and models-which describe the organization of the main membrane-embedded mitochondrial protein complexes and the key elements that regulate and/or facilitate supercomplex assembly. The soluble electron carrier cytochrome has recently emerged as an essential factor in the assembly and function of respiratory supercomplexes. In fact, a 'restricted diffusion pathway' mechanism for electron transfer between complexes III and IV has been proposed based on the secondary, binding sites for cytochrome at its two membrane partners recently discovered. This channeling pathway facilitates the surfing of cytochrome on both respiratory complexes, thereby tuning the efficiency of oxidative phosphorylation and diminishing the production of reactive oxygen species. The well-documented post-translational modifications of cytochrome could further contribute to the rapid adjustment of electron flow in response to changing cellular conditions.
目前,呼吸电子传递链中蛋白质成分的正确排列是一个激烈争论的问题,因为改变它会导致细胞衰老和其他相关病理状况。在此,我们讨论三种当前的观点——即所谓的、和模型——它们描述了主要的膜嵌入线粒体蛋白复合物的组织方式以及调节和/或促进超复合物组装的关键要素。可溶性电子载体细胞色素最近已成为呼吸超复合物组装和功能中的一个关键因素。事实上,基于最近在其两个膜伴侣上发现的细胞色素的二级结合位点,已经提出了一种复合物III和IV之间电子转移的“受限扩散途径”机制。这种通道途径促进细胞色素在两个呼吸复合物上的穿梭,从而调节氧化磷酸化的效率并减少活性氧的产生。细胞色素充分记录的翻译后修饰可能进一步有助于根据不断变化的细胞状况快速调整电子流。