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Yeast models of mutations in the mitochondrial ATP6 gene found in human cancer cells

机译:在人类癌细胞中发现的线粒体ATP6基因突变的酵母模型

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Since the discovery of somatic mtDNA mutations in tumor cells, multiple studies have focused on establishing a causal relationship between those changes and alterations in energy metabolism, a hallmark of cancer cells. Yet the consequences of these mutations on mitochondrial function remain largely unknown. In this study, Saccharomyces cerevisiae has been used as a model to investigate the functional consequences of four cancer-associated missense mutations (8914C>A, 8932C>T, 8953A>G, 9131T>C) found in the mitochondrial MT-ATP6 gene. This gene encodes the a-subunit of F1FO-ATP synthase, which catalyzes the last steps of ATP production in mitochondria. Although the four studied mutations affected well-conserved residues of the a-subunit, only one of them (8932C>T) had a significant impact on mitochondrial function, due to a less efficient incorporation of the a subunit into ATP synthase. Our findings indicate that these ATP6 genetic variants found in human tumors are neutral mitochondrial genome substitutions with a limited, if any, impact on the energetic function of mitochondria. (C) 2016 Elsevier B.V. and Mitochondria Research Society. All rights reserved.
机译:自从在肿瘤细胞中发现体细胞线粒体DNA突变以来,多项研究集中于在能量代谢的改变和变化之间建立因果关系,能量代谢是癌细胞的标志。然而,这些突变对线粒体功能的影响仍然未知。在这项研究中,酿酒酵母已被用作研究线粒体MT-ATP6基因中四个与癌症相关的错义突变(8914C> A,8932C> T,8953A> G,9191T> C)的功能后果的模型。该基因编码F1FO-ATP合酶的a-亚基,催化线粒体中ATP生成的最后步骤。尽管研究的这四个突变影响了a-亚基的保守保守性,但由于a亚基掺入ATP合酶的效率较低,其中只有一个(8932C> T)对线粒体功能有重大影响。我们的发现表明,在人类肿瘤中发现的这些ATP6遗传变异是中性线粒体基因组替代,对线粒体的能量功能有有限的影响(如果有的话)。 (C)2016 Elsevier B.V.和线粒体研究学会。版权所有。

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