首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Role of Human DNA Glycosylase Nei-like 2 (NEIL2) and Single Strand Break Repair Protein Polynucleotide Kinase 3′-Phosphatase in Maintenance of Mitochondrial Genome
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Role of Human DNA Glycosylase Nei-like 2 (NEIL2) and Single Strand Break Repair Protein Polynucleotide Kinase 3′-Phosphatase in Maintenance of Mitochondrial Genome

机译:人DNA糖基化酶Nei-like 2(NEIL2)和单链断裂修复蛋白多核苷酸激酶3-磷酸酶在维持线粒体基因组中的作用

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摘要

The repair of reactive oxygen species-induced base lesions and single strand breaks (SSBs) in the nuclear genome via the base excision (BER) and SSB repair (SSBR) pathways, respectively, is well characterize, and important for maintaining genomic integrity. However, the role of mitochondrial (mt) BER and SSBR proteins in mt genome maintenance is not completely clear. Here we show the presence of the oxidized base-specific DNA glycosylase Nei-like 2 (NEIL2) and the DNA end-processing enzyme polynucleotide kinase 3′-phosphatase (PNKP) in purified human mitochondrial extracts (MEs). Confocal microscopy revealed co-localization of PNKP and NEIL2 with the mitochondrion-specific protein cytochrome c oxidase subunit 2 (MT-CO2). Further, chromatin immunoprecipitation analysis showed association of NEIL2 and PNKP with the mitochondrial genes MT-CO2 and MT-CO3 (cytochrome c oxidase subunit 3); importantly, both enzymes also associated with the mitochondrion-specific DNA polymerase γ. In cell association of NEIL2 and PNKP with polymerase γ was further confirmed by proximity ligation assays. PNKP-depleted ME showed a significant decrease in both BER and SSBR activities, and PNKP was found to be the major 3′-phosphatase in human ME. Furthermore, individual depletion of NEIL2 and PNKP in human HEK293 cells caused increased levels of oxidized bases and SSBs in the mt genome, respectively. Taken together, these studies demonstrate the critical role of NEIL2 and PNKP in maintenance of the mammalian mitochondrial genome.
机译:分别通过碱基切除(BER)和SSB修复(SSBR)途径修复核基因组中反应性氧引起的碱基损伤和单链断裂(SSB),具有良好的特性,对于维持基因组完整性至关重要。然而,线粒体(mt)BER和SSBR蛋白在mt基因组维持中的作用尚不完全清楚。在这里,我们显示了在纯化的人线粒体提取物(MEs)中存在氧化的碱基特异性DNA糖基化酶Nei-like 2(NEIL2)和DNA末端加工酶多核苷酸激酶3'-磷酸酶(PNKP)。共聚焦显微镜显示PNKP和NEIL2与线粒体特异性蛋白细胞色素c氧化酶亚基2(MT-CO2)的共定位。此外,染色质的免疫沉淀分析表明NEIL2和PNKP与线粒体基因MT-CO2和MT-CO3(细胞色素c氧化酶亚基3)相关。重要的是,这两种酶都与线粒体特异性DNA聚合酶γ有关。通过邻近连接测定进一步证实了NEIL2和PNKP在细胞中与聚合酶γ的结合。耗尽PNKP的ME显示BER和SSBR活性均显着降低,并且PNKP被发现是人ME中主要的3'-磷酸酶。此外,人HEK293细胞中NEIL2和PNKP的个体消耗分别导致mt基因组中氧化碱基和SSB的水平升高。综上所述,这些研究证明了NEIL2和PNKP在维持哺乳动物线粒体基因组中的关键作用。

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