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Mining yeast in silico unearths a golden nugget for mitochondrial biology

机译:硅酵母开采发掘出金块用于线粒体生物学

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摘要

NADH:ubiquinone oxidoreductase (complex I) of the electron transport chain is a multimeric mitochondrial enzyme of approximately 1000 kDa consisting of 46 different proteins encoded by both the mitochondrial and nuclear genomes. Little is known about the cellular mechanisms and protein chaperones that guide its assembly. In this issue of the JCI, Ogilvie et al. use genomic sequence data to compare the proteins produced by yeasts with and without complex I in order to generate a list of proteins whose human orthologs might serve as complex I assembly proteins. The gene encoding one of these candidate proteins, B17.2L, was found to harbor a nonsense mutation in one of 28 patients with a deficiency of complex I. B17.2L associated with subcomplexes that are seen when complex I assembly is incomplete. The research described here combines clever model organism genomics and bioinformatics with sophisticated human molecular and biochemical genetics to identify the first mammalian protein required for the normal assembly of complex I.
机译:电子传输链的NADH:泛醌氧化还原酶(复合体I)是一种大约1000 kDa的多聚体线粒体酶,由线粒体和核基因组编码的46种不同蛋白质组成。关于指导其组装的细胞机制和蛋白伴侣知之甚少。在JCI的这一期中,Ogilvie等人。使用基因组序列数据比较带有或不带有复合I的酵母产生的蛋白质,从而生成一系列蛋白质,这些蛋白质的人直系同源物可能充当复合I组装蛋白。发现在28位复杂I缺乏的患者中,编码这些候选蛋白之一的基因B17.2L带有无义突变。当复杂I装配不完整时,B17.2L与亚复杂相关。这里描述的研究将聪明的模型有机体基因组学和生物信息学与复杂的人类分子和生化遗传学结合起来,以确定复合物I正常组装所需的第一个哺乳动物蛋白质。

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