首页> 外文期刊>Nucleic acids research >Nucleotide incorporation by human DNA polymerase γ opposite benzo[a]pyrene and benzo[c]phenanthrene diol epoxide adducts of deoxyguanosine and deoxyadenosine
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Nucleotide incorporation by human DNA polymerase γ opposite benzo[a]pyrene and benzo[c]phenanthrene diol epoxide adducts of deoxyguanosine and deoxyadenosine

机译:人DNA聚合酶γ与脱氧鸟苷和脱氧腺苷的苯并[a] py和苯并[c]菲二醇环氧化物加合物相对的核苷酸掺入

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Mitochondria are major cellular targets of benzo[a]pyrene (BaP), a known carcinogen that also inhibits mitochondrial proliferation. Here, we report for the first time the effect of site‐specific N2‐deoxyguanosine (dG) and N6‐deoxyadenosine (dA) adducts derived from BaP 7,8‐diol 9,10‐epoxide (BaP DE) and dA adducts from benzo[c]phenanthrene 3,4‐diol 1,2‐epoxide (BcPh DE) on DNA replication by exonuclease‐deficient human mitochondrial DNA polymerase (pol γ) with and without the p55 processivity subunit. The catalytic subunit alone primarily misincorporated dAMP and dGMP opposite the BaP DE–dG adducts, and incorporated the correct dTMP as well as the incorrect dAMP opposite the DE–dA adducts derived from both BaP and BcPh. In the presence of p55 the polymerase incorporated all four nucleotides and catalyzed limited translesion synthesis past BaP DE–dG adducts but not past BaP or BcPh DE–dA adducts. Thus, all these adducts cause erroneous purine incorporation and significant blockage of further primer elongation. Purine misincorporation by pol γ opposite the BaP DE–dG adducts resembles that observed with the Y family pol η. Blockage of translesion synthesis by these DE adducts is consistent with known BaP inhibition of mitochondrial (mt)DNA synthesis and suggests that continued exposure to BaP reduces mtDNA copy number, increasing the opportunity for repopulation with pre‐existing mutant mtDNA and a resultant risk of mitochondrial genetic diseases.
机译:线粒体是苯并[a] re(BaP)的主要细胞靶标,苯并[a] re是一种已知的致癌物,也能抑制线粒体的增殖。在这里,我们首次报告了源自BaP 7,8的位点特异性N 2 -脱氧鸟苷(dG)和N 6 -脱氧腺苷(dA)加合物的作用核酸外切酶不足的人线粒体DNA聚合酶(polγ)与苯并[c]菲3,4-二醇1,2-环氧化物(BcPh DE)的‐9,10-环氧(BaP DE)和dA加合物在DNA复制中的作用并且没有p55合成亚基。单独的催化亚基主要错误地掺入了与BaP DE-dG加合物相对的dAMP和dGMP,并掺入了正确的dTMP以及与从BaP和BcPh衍生的DE-dA加合物相对的不正确的dAMP。在存在p55的情况下,聚合酶掺入了所有四个核苷酸并催化了BaP DE-dG加合物之后的有限转录合成,而不是BaP或BcPh DE-dA加合物之后。因此,所有这些加合物都导致错误的嘌呤掺入并严重阻碍进一步引物的延伸。与BaP DE-dG加合物相反的polγ引起的嘌呤错误掺入与Y家族polη相似。这些DE加合物对跨病变合成的阻止与已知的BaP对线粒体(mt)DNA合成的抑制作用相一致,并表明持续暴露于BaP会降低mtDNA拷贝数,增加了先前存在的突变mtDNA的重新繁殖的机会,并增加了线粒体的风险遗传疾病。

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