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在缺乏功能性F1F0 - ATP合酶的情况下,细胞色素c氧化酶亚基1的合成在翻译水平上被下调。

Synthesis of cytochrome c oxidase subunit 1 is translationally downregulated in the absence of functional F1F0-ATP synthase.

作者信息

Soto Ileana C, Fontanesi Flavia, Valledor Melvys, Horn Darryl, Singh Rajiv, Barrientos Antoni

机构信息

Department of Biochemistry and Molecular Biology, University of Miami Miller School of Medicine. Miami, FL 33136, USA.

出版信息

Biochim Biophys Acta. 2009 Nov;1793(11):1776-86. doi: 10.1016/j.bbamcr.2009.09.002. Epub 2009 Sep 6.

Abstract

The mitochondrial F(1)F(0)-ATP synthase or ATPase is a key enzyme for aerobic energy production in eukaryotic cells. Mutations in ATPase structural and assembly genes are the primary cause of severe human encephalomyopathies, frequently associated with a pleiotropic decrease in cytochrome c oxidase (COX) activity. We have studied the structural and functional constraints underlying the COX defect using Saccharomyces cerevisiae genetic and pharmacological models of ATPase deficiency. In both yeast Deltaatp10 and oligomycin-treated wild type cells, COX assembly is selectively impaired in the absence of functional ATPase. The COX biogenesis defect does not involve a primary alteration in the expression of the COX subunits as previously suggested but in their maturation and/or assembly. Expression of COX subunit 1, however, is translationally regulated as in most bona fide COX assembly mutants. Additionally, the COX defect in oligomycin-inhibited ATPase-deficient yeast cells, but not in atp10 cells could be partially prevented by partially dissipating the mitochondrial membrane potential using the uncoupler CCCP. Similar results were obtained with oligomycin-treated and ATP12-deficient human fibroblasts respectively. Our findings imply that fully assembled ATPase and its proton pumping function are both required for COX biogenesis in yeast and mammalian cells through a mechanism independent of Cox1p synthesis.

摘要

线粒体F(1)F(0)-ATP合酶或ATP酶是真核细胞需氧能量产生的关键酶。ATP酶结构和组装基因的突变是严重人类脑肌病的主要原因,常伴有细胞色素c氧化酶(COX)活性的多效性降低。我们使用ATP酶缺乏的酿酒酵母遗传和药理学模型研究了COX缺陷背后的结构和功能限制。在酵母Deltaatp10和经寡霉素处理的野生型细胞中,在缺乏功能性ATP酶的情况下,COX组装均被选择性损害。COX生物合成缺陷并不像先前认为的那样涉及COX亚基表达的原发性改变,而是涉及其成熟和/或组装。然而,与大多数真正的COX组装突变体一样,COX亚基1的表达受到翻译调控。此外,使用解偶联剂CCCP部分消除线粒体膜电位,可以部分预防寡霉素抑制的ATP酶缺陷酵母细胞中的COX缺陷,但不能预防atp10细胞中的COX缺陷。分别用寡霉素处理的和ATP12缺陷的人成纤维细胞也获得了类似结果。我们的研究结果表明,完全组装的ATP酶及其质子泵功能对于酵母和哺乳动物细胞中的COX生物合成都是必需的,其机制独立于Cox1p的合成。

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