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Base-excision repair deficiency alone or combined with increased oxidative stress does not increase mtDNA point mutations in mice

机译:单独进行碱基切除修复不足或与氧化应激增加并不能增加小鼠的mtDNA点突变

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摘要

Mitochondrial DNA (mtDNA) mutations become more prevalent with age and are postulated to contribute to the ageing process. Point mutations of mtDNA have been suggested to originate from two main sources, i.e. replicative errors and oxidative damage, but the contribution of each of these processes is much discussed. To elucidate the origin of mtDNA mutations, we measured point mutation load in mice with deficient mitochondrial base-excision repair (BER) caused by knockout alleles preventing mitochondrial import of the DNA repair glycosylases OGG1 and MUTYH (Ogg1 dMTS, Mutyh dMTS). Surprisingly, we detected no increase in the mtDNA mutation load in old Ogg1 dMTS mice. As DNA repair is especially important in the germ line, we bred the BER deficient mice for five consecutive generations but found no increase in the mtDNA mutation load in these maternal lineages. To increase reactive oxygen species (ROS) levels and oxidative damage, we bred the Ogg1 dMTS mice with tissue specific Sod2 knockout mice. Although increased superoxide levels caused a plethora of changes in mitochondrial function, we did not detect any changes in the mutation load of mtDNA or mtRNA. Our results show that the importance of oxidative damage as a contributor of mtDNA mutations should be re-evaluated.
机译:线粒体DNA(mtDNA)突变随着年龄的增长而变得越来越普遍,并被认为有助于衰老。 mtDNA的点突变已被认为起源于两个主要来源,即复制错误和氧化损伤,但这些过程中的每一个的贡献已被广泛讨论。为了阐明mtDNA突变的起源,我们在线粒体碱基切除修复(BER)不足的小鼠中测量了点突变负荷,该缺陷由敲除等位基因导致阻止线粒体导入DNA修复糖基化酶OGG1和MUTYH(Ogg1 dMTS,Mutyh dMTS)引起。出乎意料的是,我们没有发现老的Ogg1 dMTS小鼠的mtDNA突变负荷增加。由于DNA修复在种系中尤其重要,因此我们连续五代繁殖了BER缺陷小鼠,但未发现这些母系的mtDNA突变量增加。为了增加活性氧(ROS)水平和氧化损伤,我们将Ogg1 dMTS小鼠与组织特异性Sod2敲除小鼠进行了繁殖。尽管增加的超氧化物水平引起线粒体功能的大量变化,但我们并未检测到mtDNA或mtRNA突变负载的任何变化。我们的结果表明,应重新评估氧化损伤作为mtDNA突变贡献者的重要性。

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