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首页> 外文期刊>The Journal of biological chemistry >Assembly of the Rotor Component of Yeast Mitochondrial ATP Synthase Is Enhanced When Atp9p Is Supplied by Atp9p-Cox6p Complexes
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Assembly of the Rotor Component of Yeast Mitochondrial ATP Synthase Is Enhanced When Atp9p Is Supplied by Atp9p-Cox6p Complexes

机译:当ATP9P-COX6P配合物提供ATP9P时,增强了酵母线粒体ATP合酶的转子组件的组装

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The Atp9p ring is one of several assembly modules of yeast mitochondrial ATP synthase. The ring, composed of 10 copies of Atp9p, is part of the rotor that couples proton translocation to synthesis or hydrolysis of ATP. We present evidence that before its assembly with other ATP synthase modules, most of Atp9p is present in at least three complexes with masses of 200–400 kDa that co-immunopurify with Cox6p. Pulse-labeling analysis disclosed a time-dependent reduction of radiolabeled Atp9p in the complexes and an increase of Atp9p in the ring form of wild type yeast and of mss51, pet111, and pet494 mutants lacking Cox1p, Cox2p, and Cox3p, respectively. Ring formation was not significantly different from wild type in an mss51 or atp10 mutant. The atp10 mutation blocks the interaction of the Atp9p ring with other modules of the ATP synthase. In contrast, ring formation was reduced in a cox6 mutant, consistent with a role of Cox6p in oligomerization of Atp9p. Cox6p involvement in ATP synthase assembly is also supported by studies showing that ring formation in cells adapting from fermentative to aerobic growth was less efficient in mitochondria of the cox6 mutant than the parental respiratory-competent strain or a cox4 mutant. We speculate that the constitutive and Cox6p-independent rate of Atp9p oligomerization may be sufficient to produce the level of ATP synthase needed for maintaining a membrane potential but limiting for optimal oxidative phosphorylation.
机译:ATP9P环是酵母线粒体ATP合酶的几个组装模块之一。由10个ATP9P副本组成的环是转子的一部分,其将质子易位耦合到ATP的合成或水解。我们呈现了在其与其他ATP合酶模块组装之前的证据,ATP9P的大部分存在于至少三种复合物中,其中包含200-400kDa的质量,与COX6P共同免疫尿。脉冲标记分析公开了络合物中放射性标记的ATP9p的时间依赖性还原,以及缺乏COX1P,COX2P和COX3P的MSS51,PET111和PET494突变体的环形形式的ATP9P。与MSS51或ATP10突变体中的野生类型没有显着不同的环形形成。 ATP10突变阻断ATP9P环与ATP合酶的其他模块的相互作用。相比之下,在COX6突变体中,在COX6突变体中减少环状,与COX6P在ATP9P的低聚中的作用一致。通过研究还支持COX6P参与ATP合酶组件,表明在COX6突变体的MitoChondria中效率低于父母呼吸道态菌株或COX4突变体的细胞中的环形形成效率较低。我们推测的是,ATP9P低聚的组成型和COX6P无关率可能足以产生保持膜电位但限制性氧化磷酸化所需的ATP合酶水平。

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