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A Single Mutation in Human Mitochondrial DNA Polymerase Pol γA Affects Both Polymerization and Proofreading Activities of Only the Holoenzyme*

机译:人类线粒体DNA聚合酶PolγA的单一突变会影响仅全酶的聚合和校对活性*

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摘要

Common causes of human mitochondrial diseases are mutations affecting DNA polymerase (Pol) γ, the sole polymerase responsible for DNA synthesis in mitochondria. Although the polymerase and exonuclease active sites are located on the catalytic subunit Pol γA, in holoenzyme both activities are regulated by the accessory subunit Pol γB. Several patients with severe neurological and muscular disorders were reported to carry the Pol γA substitutions R232G or R232H, which lie outside of either active site. We report that Arg232 substitutions have no effect on independent Pol γA activities but show major defects in the Pol γA-Pol γB holoenzyme, including decreased polymerase and increased exonuclease activities, the latter with decreased selectivity for mismatches. We show that Pol γB facilitates distinguishing mismatched from base-paired primer termini and that Pol γA Arg232 is essential for mediating this regulatory function of the accessory subunit. This study provides a molecular basis for the disease symptoms exhibited by patients carrying those substitutions.
机译:人类线粒体疾病的常见原因是影响DNA聚合酶(Pol)γ的突变,γ是线粒体中负责DNA合成的唯一聚合酶。尽管聚合酶和核酸外切酶的活性位点位于催化亚基PolγA上,但在全酶中,这两种活性均由辅助亚基PolγB调节。据报道,几名患有严重神经系统和肌肉疾病的患者携带了位于任一活动位点之外的PolγA替代R232G或R232H。我们报告说,Arg232取代对独立的PolγA活性没有影响,但在PolγA-PolγB全酶中显示出主要缺陷,包括聚合酶降低和核酸外切酶活性增加,后者与错配的选择性降低。我们表明,PolγB有助于区分碱基配对引物末端的错配,PolγAArg232对于介导辅助亚基的这种调节功能至关重要。这项研究为携带这些替代品的患者表现出的疾病症状提供了分子基础。

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