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Inactivation of Saccharomyces cerevisiae OGG1 DNA repair gene leads to anincreased frequency of mitochondrial mutants

机译:酿酒酵母OGG1 DNA修复基因的失活导致线粒体突变体的频率增加

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The OGG1 gene encodes a highly conserved DNA glycosylase that repairs oxidized guanines in DNA, We have investigated the in vivo function of the Ogg1 protein in yeast mitochondria, We demonstrate that inactivation of ogg1 leads to at least a 2-fold increase in production of spontaneous mitochondrial mutants compared with wild-type, Using green fluorescent protein (GFP) we show that a GFP-Ogg1 fusion protein is transported to mitochondria, However, deletion of the first 11 amino acids from the N-terminus abolishes the transport of the GFP-Ogg1 fusion protein into the mitochondria. This analysis indicates that the N-terminus of Ogg1 contains the mitochondrial localization signal, We provide evidence that both yeast and human Ogg1 proteins protect the mitochondrial genome from spontaneous, as well as induced, oxidative damage. Genetic analyses revealed that the combined inactivation of OGG1 and OGG2 [encoding an isoform of the Ogg1 protein, also known as endonuclease three-like glycosylase (Ntg1)] leads to suppression of spontaneously arising mutations in the mitochondrial genome when compared with the ogg1 single mutant or the wildtype, Together, these studies provide in vivo evidence for the repair of oxidative lesions in the mitochondrial genome by human and yeast Ogg1 proteins. Our study also identifies Ogg2 as a suppressor of oxidative mutagenesis in mitochondria.
机译:OGG1基因编码一个高度保守的DNA糖基化酶,可修复DNA中的氧化鸟嘌呤。我们研究了Ogg1蛋白在酵母线粒体中的体内功能,我们证明ogg1的失活导致自发产量至少增加2倍线粒体突变体与野生型相比,使用绿色荧光蛋白(GFP),我们显示GFP-Ogg1融合蛋白被转运至线粒体,但是,从N端删除前11个氨基酸可消除GFP- Ogg1融合蛋白进入线粒体。该分析表明,Ogg1的N端包含线粒体定位信号。我们提供了证据,即酵母和人Ogg1蛋白质均能保护线粒体基因组免受自发性和诱导性氧化损伤。遗传分析显示,与ogg1单突变体相比,OGG1和OGG2的联合失活[编码Ogg1蛋白的同种型,也称为内切核酸酶三样糖基化酶(Ntg1)]导致线粒体基因组中自发产生的突变受到抑制。在一起,这些研究为人和酵母Ogg1蛋白修复线粒体基因组中的氧化损伤提供了体内证据。我们的研究还确定Ogg2是线粒体中氧化诱变的抑制剂。

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