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p53 in the mitochondria as a trans-acting protein provides error-correction activities during the incorporation of non-canonical dUTP into DNA

机译:线粒体中的p53作为反式作用蛋白在将非经典dUTP掺入DNA的过程中提供了纠错功能

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摘要

Mutations in mitochondrial DNA is an outcome of errors produced by DNA polymerase γ during replication and failure of the repair mechanism. Misincorporation of non-canonical dUTP leads to mutagenesis or apoptosis, and may contribute to the cytotoxic effects of 5′-fluorouracil chemotherapy. Tumor suppressor p53 protein in the mitochondria displays physical and functional interactions with mitochondrial DNA and polymerase γ, and by its intrinsic 3′→5′ exonuclease activity can diminish the polymerization errors. Here we demonstrate the impact of p53 on incorporation of uracil into DNA examined with mitochondrial fractions, as the source of polymerase γ. p53 in mitochondria facilitates DNA damage repair functions resulting from uracil–DNA misincorporation. Our biochemical studies revealed that the procession of U:A and mismatched U:G lesions enhances in the presence of recombinant or endogenous cytoplasmic p53. p53 in mitochondria can function as an exonuclease/proofreader for polymerase γ by either decreasing the incorporation of non-canonical dUTP into DNA or by promoting the excision of incorporated nucleotide from nascent DNA, thus expanding the spectrum of DNA damage sites exploited for proofreading as a trans-acting protein. The data suggest that p53 may contribute to defense of the cells from consequences of dUTP misincorporation in both normal and tumor cells.
机译:线粒体DNA的突变是DNA聚合酶γ在复制和修复机制失败期间产生的错误的结果。非规范性dUTP的错误掺入会导致诱变或细胞凋亡,并可能有助于5'-氟尿嘧啶化疗的细胞毒性作用。线粒体中的抑癌基因p53蛋白与线粒体DNA和聚合酶γ表现出物理和功能相互作用,并通过其固有的3'→5'核酸外切酶活性可以减少聚合错误。在这里,我们证明了p53对将尿嘧啶掺入以线粒体级分作为聚合酶γ来源的DNA中的影响。线粒体中的p53促进了尿嘧啶-DNA错掺导致的DNA损伤修复功能。我们的生化研究表明,在存在重组或内源性细胞质p53的情况下,U:A和错配的U:G病变的进程会增强。线粒体中的p53可以通过减少非典型dUTP向DNA中的掺入或促进从新生DNA中掺入核苷酸的切除来充当聚合酶γ的核酸外切酶/校对剂,从而扩大了DNA损伤位点的光谱,从而可以作为反式作用蛋白。数据表明,p53可能有助于防御正常细胞和肿瘤细胞中dUTP掺入错误的后果。

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