首页> 外文期刊>Human Molecular Genetics >The DNA polymerase gamma Y955C disease variant associated with PEO and parkinsonism mediates the incorporation and translesion synthesis opposite 7,8-dihydro-8-oxo-2'-deoxyguanosine.
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The DNA polymerase gamma Y955C disease variant associated with PEO and parkinsonism mediates the incorporation and translesion synthesis opposite 7,8-dihydro-8-oxo-2'-deoxyguanosine.

机译:与PEO和帕金森病相关的DNA聚合酶Y955C疾病变异体介导了与7,8-二氢-8-氧代2'-脱氧鸟苷相对的掺入和跨病变合成。

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摘要

Mitochondrial DNA is replicated and repaired by DNA polymerase gamma (pol gamma), encoded by the POLG gene. The Y955C substitution in POLG leads to autosomal dominant progressive external ophthalmoplegia (PEO) with other severe phenotypes. PEO patients with this mutation can further develop parkinsonism or premature ovarian failure. Mouse and yeast models with this mutation show enhanced amounts of oxidative lesions and increased mtDNA damage. In DNA pol gamma, Tyr955 plays a critical role in catalysis and high fidelity DNA synthesis. 7,8-dihydro-8-oxo-2'-deoxyguanosine (8-oxo-dG) is one of the most common oxidative lesions in DNA and can promote transversion mutations. Mitochondria are thought to be a major source of endogenous reactive oxygen species that can react with dG to form 8-oxo-dG as one of the more common products. DNA polymerases can mitigate mutagenesis by 8-oxo-dG through allosteric interactions from amino acid side chains, which limit the anti-conformation of the 8-oxo-dG template base during translesion DNA synthesis. Here, we show that the Y955C pol gamma displays relaxed discrimination when either incorporating 8-oxo-dGTP or translesion synthesis opposite 8-oxo-dG. Molecular modeling and biochemical analysis suggest that this residue, Tyr955, in conjunction with Phe961 helps attenuate the anti-conformation in human pol gamma for error free bypass of 8-oxo-dG and substitution to Cys allows the mutagenic syn conformation. Collectively, these results offer a biochemical link between the observed oxidative stress in model systems and parkinsonism in patients, suggesting that patients harboring the Y955C POLG mutation may undergo enhanced oxidative stress and DNA mutagenesis.
机译:线粒体DNA通过由POLG基因编码的DNA聚合酶gamma(pol gamma)复制和修复。 POLG中的Y955C替代会导致常染色体显性遗传进行性外眼肌麻痹(PEO)和其他严重表型。具有此突变的PEO患者可以进一步发展帕金森氏症或卵巢早衰。具有此突变的小鼠和酵母模型显示出增加的氧化损伤量和增加的mtDNA损伤。在DNA polγ中,Tyr955在催化和高保真DNA合成中起关键作用。 7,8-dihydro-8-oxo-2'-deoxyguanosine(8-oxo-dG)是DNA中最常见的氧化损伤之一,可促进颠覆突变。线粒体被认为是可与dG反应形成8-oxo-dG的内源性活性氧的主要来源,它是较常见的产物之一。 DNA聚合酶可通过氨基酸侧链的变构相互作用减轻8-oxo-dG的诱变作用,这限制了跨病变DNA合成过程中8-oxo-dG模板碱基的反构象。在这里,我们表明,当掺入8-氧代-dGTP或与8-氧代-dG相对的跨病变合成时,Y955C polγ显示出轻松的分辨力。分子建模和生化分析表明,此残基Tyr955与Phe961结合使用有助于弱化人类pol gamma的反构象,从而实现8氧代dG的无错旁路,而Cys的取代则允许诱变的syn构象。总的来说,这些结果提供了在模型系统中观察到的氧化应激与患者帕金森病之间的生化联系,表明具有Y955C POLG突变的患者可能会经历增强的氧化应激和DNA诱变。

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