Pursell Zachary F, McDonald J Tyson, Mathews Christopher K, Kunkel Thomas A
Laboratory of Molecular Genetics and Laboratory of Structural Biology, National Institute of Environmental Health Sciences, National Institutes of Health, Department of Health and Human Services, Research Triangle Park, NC 27709, USA.
Nucleic Acids Res. 2008 Apr;36(7):2174-81. doi: 10.1093/nar/gkn062. Epub 2008 Feb 14.
Replication of the mitochondrial genome by DNA polymerase gamma requires dNTP precursors that are subject to oxidation by reactive oxygen species generated by the mitochondrial respiratory chain. One such oxidation product is 8-oxo-dGTP, which can compete with dTTP for incorporation opposite template adenine to yield A-T to C-G transversions. Recent reports indicate that the ratio of undamaged dGTP to dTTP in mitochondrial dNTP pools from rodent tissues varies from approximately 1:1 to >100:1. Within this wide range, we report here the proportion of 8-oxo-dGTP in the dNTP pool that would be needed to reduce the replication fidelity of human DNA polymerase gamma. When various in vivo mitochondrial dNTP pools reported previously were used here in reactions performed in vitro, 8-oxo-dGTP was readily incorporated opposite template A and the resulting 8-oxo-G-A mismatch was not proofread efficiently by the intrinsic 3' exonuclease activity of pol gamma. At the dNTP ratios reported in rodent tissues, whether highly imbalanced or relatively balanced, the amount of 8-oxo-dGTP needed to reduce fidelity was <1% of dGTP. Moreover, direct measurements reveal that 8-oxo-dGTP is present at such concentrations in the mitochondrial dNTP pools of several rat tissues. The results suggest that oxidized dNTP precursors may contribute to mitochondrial mutagenesis in vivo, which could contribute to mitochondrial dysfunction and disease.
线粒体基因组通过DNA聚合酶γ进行复制需要dNTP前体,而这些前体容易被线粒体呼吸链产生的活性氧氧化。一种这样的氧化产物是8-氧代-dGTP,它可以与dTTP竞争,掺入与模板腺嘌呤相对的位置,从而产生A-T到C-G的颠换。最近的报告表明,来自啮齿动物组织的线粒体dNTP库中未受损的dGTP与dTTP的比例约为1:1至>100:1。在此广泛范围内,我们在此报告了降低人类DNA聚合酶γ复制保真度所需的dNTP库中8-氧代-dGTP的比例。当在此前报道的各种体内线粒体dNTP库用于体外反应时,8-氧代-dGTP很容易掺入与模板A相对的位置,并且产生的8-氧代-G-A错配不能被polγ的内在3'核酸外切酶活性有效校正。在啮齿动物组织中报道的dNTP比例下,无论是高度失衡还是相对平衡,降低保真度所需的8-氧代-dGTP量均<dGTP的1%。此外,直接测量表明,8-氧代-dGTP在几种大鼠组织的线粒体dNTP库中的浓度就是如此。结果表明,氧化的dNTP前体可能在体内导致线粒体诱变,这可能导致线粒体功能障碍和疾病。