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F1F0-ATP合酶复合体影响细胞色素bc1-细胞色素氧化酶超复合体的组装状态及其与TIM23机制的关联。

The F1F0-ATP synthase complex influences the assembly state of the cytochrome bc1-cytochrome oxidase supercomplex and its association with the TIM23 machinery.

作者信息

Saddar Sonika, Dienhart Mary K, Stuart Rosemary A

机构信息

Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin 53233, USA.

出版信息

J Biol Chem. 2008 Mar 14;283(11):6677-86. doi: 10.1074/jbc.M708440200. Epub 2008 Jan 10.

Abstract

The enzyme complexes involved in mitochondrial oxidative phosphorylation are organized into higher ordered assemblies termed supercomplexes. Subunits e and g (Su e and Su g, respectively) are catalytically nonessential subunits of the F1F0-ATP synthase whose presence is required to directly support the stable dimerization of the ATP synthase complex. We report here that Su g and Su e are also important for securing the correct organizational state of the cytochrome bc1-cytochrome oxidase (COX) supercomplex. Mitochondria isolated from the Delta su e and Delta su g null mutant strains exhibit decreased levels of COX enzyme activity but appear to have normal COX subunit protein levels. An altered stoichiometry of the cytochrome bc1-COX supercomplex was observed in mitochondria deficient in Su e and/or Su g, and a perturbation in the association of Cox4, a catalytically important subunit of the COX complex, was also detected. In addition, an increase in the level of the TIM23 translocase associated with the cytochrome bc1-COX supercomplex is observed in the absence of Su e and Su g. Together, our data highlight that a further level of complexity exists between the oxidative phosphorylation supercomplexes, whereby the organizational state of one complex, i.e. the ATP synthase, may influence that of another supercomplex, namely the cytochrome bc1-COX complex.

摘要

参与线粒体氧化磷酸化的酶复合物被组织成称为超复合物的更高阶组装体。亚基e和g(分别为Su e和Su g)是F1F0 - ATP合酶的催化非必需亚基,其存在是直接支持ATP合酶复合物稳定二聚化所必需的。我们在此报告,Su g和Su e对于确保细胞色素bc1 - 细胞色素氧化酶(COX)超复合物的正确组织状态也很重要。从Delta su e和Delta su g缺失突变株中分离出的线粒体显示COX酶活性水平降低,但COX亚基蛋白水平似乎正常。在缺乏Su e和/或Su g的线粒体中观察到细胞色素bc1 - COX超复合物的化学计量发生改变,并且还检测到COX复合物的催化重要亚基Cox4的结合受到干扰。此外,在没有Su e和Su g的情况下,观察到与细胞色素bc1 - COX超复合物相关的TIM23转位酶水平增加。总之,我们的数据突出表明氧化磷酸化超复合物之间存在进一步的复杂程度,即一种复合物(即ATP合酶)的组织状态可能会影响另一种超复合物(即细胞色素bc1 - COX复合物)的组织状态。

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