缺乏编码ATP合酶亚基6的线粒体基因的酵母细胞表现出复合物IV的选择性缺失和异常的线粒体形态。

Yeast cells lacking the mitochondrial gene encoding the ATP synthase subunit 6 exhibit a selective loss of complex IV and unusual mitochondrial morphology.

作者信息

Rak Malgorzata, Tetaud Emmanuel, Godard François, Sagot Isabelle, Salin Bénédicte, Duvezin-Caubet Stéphane, Slonimski Piotr P, Rytka Joanna, di Rago Jean-Paul

机构信息

Institut de Biochimie et Génétique Cellulaires, Université Victor Segalen, 1 Rue Camille Saint-Saëns, 33077 Bordeaux cedex, France.

出版信息

J Biol Chem. 2007 Apr 13;282(15):10853-64. doi: 10.1074/jbc.M608692200. Epub 2007 Jan 29.

Abstract

Atp6p is an essential subunit of the ATP synthase proton translocating domain, which is encoded by the mitochondrial DNA (mtDNA) in yeast. We have replaced the coding sequence of Atp6p gene with the non-respiratory genetic marker ARG8m. Due to the presence of ARG8m, accumulation of rho-/rho0 petites issued from large deletions in mtDNA could be restricted to 20-30% by growing the atp6 mutant in media lacking arginine. This moderate mtDNA instability created favorable conditions to investigate the consequences of a specific lack in Atp6p. Interestingly, in addition to the expected loss of ATP synthase activity, the cytochrome c oxidase respiratory enzyme steady-state level was found to be extremely low (<5%) in the atp6 mutant. We show that the cytochrome c oxidase-poor accumulation was caused by a failure in the synthesis of one of its mtDNA-encoded subunits, Cox1p, indicating that, in yeast mitochondria, Cox1p synthesis is a key target for cytochrome c oxidase abundance regulation in relation to the ATP synthase activity. We provide direct evidence showing that in the absence of Atp6p the remaining subunits of the ATP synthase can still assemble. Mitochondrial cristae were detected in the atp6 mutant, showing that neither Atp6p nor the ATP synthase activity is critical for their formation. However, the atp6 mutant exhibited unusual mitochondrial structure and distribution anomalies, presumably caused by a strong delay in inner membrane fusion.

摘要

Atp6p是ATP合酶质子转运结构域的一个必需亚基,由酵母中的线粒体DNA(mtDNA)编码。我们用非呼吸性遗传标记ARG8m取代了Atp6p基因的编码序列。由于存在ARG8m,通过在缺乏精氨酸的培养基中培养atp6突变体,mtDNA大片段缺失产生的rho-/rho0小菌落的积累可被限制在20%-30%。这种适度的mtDNA不稳定性为研究Atp6p特异性缺失的后果创造了有利条件。有趣的是,除了预期的ATP合酶活性丧失外,在atp6突变体中还发现细胞色素c氧化酶呼吸酶的稳态水平极低(<5%)。我们表明,细胞色素c氧化酶积累不足是由其mtDNA编码的亚基之一Cox1p合成失败所致,这表明在酵母线粒体中,Cox1p合成是与ATP合酶活性相关的细胞色素c氧化酶丰度调节的关键靶点。我们提供了直接证据表明,在没有Atp6p的情况下,ATP合酶的其余亚基仍能组装。在atp6突变体中检测到线粒体嵴,表明Atp6p和ATP合酶活性对其形成都不是关键的。然而,atp6突变体表现出异常的线粒体结构和分布异常,可能是由内膜融合的强烈延迟引起的。

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