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Restoration Of Electron Transport Without Proton Pumping In Mammalian Mitochondria

机译:哺乳动物线粒体中不带质子泵浦的电子传输的恢复

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We have restored the CoQ oxidative capacity of mouse mtDNA-less cells (ρ° cells) by transforming them with the alternative oxidase Aox of Emericella nidulans. Cotransforming ρ° cells with the NADH dehydrogenase of Saccharomyces cerevisiae, Ndi1 and Aox recovered the NADH DH/CoQ reductase and the CoQ oxidase activities. CoQ oxidation by AOX reduces the dependence of ρ° cells on pyruvate and uridine. Coexpression of AOX and NDI1 further improves the recycling of NAD~+. Therefore, 2 single-protein enzymes restore the electron transport in mammalian mitochondria substituting >80 nuclear DNA-encoded and 11 mtDNA-encoded proteins. Because those enzymes do not pump protons, we were able to split electron transport and proton pumping (ATP synthesis) and inquire which of the metabolic deficiencies associated with the loss of oxidative phosphorylation should be attributed to each of the 2 processes.
机译:我们已通过用构巢龙虾的替代氧化酶Aox转化了小鼠无mtDNA的细胞(ρ°细胞),恢复了CoQ的氧化能力。与酿酒酵母,Ndi1和Aox的NADH脱氢酶共转化ρ°细胞可恢复NADH DH / CoQ还原酶和CoQ氧化酶的活性。通过AOX进行的辅酶Q氧化可降低ρ°细胞对丙酮酸和尿苷的依赖性。 AOX和NDI1的共表达进一步改善了NAD〜+的回收利用。因此,有2种单蛋白酶恢复了哺乳动物线粒体中的电子传输,从而取代了> 80种核DNA编码的蛋白和11种mtDNA编码的蛋白。因为这些酶不泵送质子,所以我们能够拆分电子传输和质子泵送(ATP合成),并询问与氧化磷酸化丧失相关的哪些代谢缺陷应归因于这两个过程。

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