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DNA聚合酶γ的突变会导致人类线粒体疾病中出现易出错的DNA合成。

Mutations in DNA polymerase gamma cause error prone DNA synthesis in human mitochondrial disorders.

作者信息

Copeland William C, Ponamarev Mikhail V, Nguyen Dinh, Kunkel Thomas A, Longley Matthew J

机构信息

Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences,Research Triangle Park, North Carolina 27709, USA.

出版信息

Acta Biochim Pol. 2003;50(1):155-67.

Abstract

This paper summarizes recent advances in understanding the links between the cell's ability to maintain integrity of its mitochondrial genome and mitochondrial genetic diseases. Human mitochondrial DNA is replicated by the two-subunit DNA polymerase gamma (polgamma). We investigated the fidelity of DNA replication by polgamma with and without exonucleolytic proofreading and its p55 accessory subunit. Polgamma has high base substitution fidelity due to efficient base selection and exonucleolytic proofreading, but low frameshift fidelity when copying homopolymeric sequences longer than four nucleotides. Progressive external ophthalmoplegia (PEO) is a rare disease characterized by the accumulation of large deletions in mitochondrial DNA. Recently, several mutations in the polymerase and exonuclease domains of the human polgamma have been shown to be associated with PEO. We are analyzing the effect of these mutations on the human polgamma enzyme. In particular, three autosomal dominant mutations alter amino acids located within polymerase motif B of polgamma. These residues are highly conserved among family A DNA polymerases, which include T7 DNA polymerase and E.coli pol I. These PEO mutations have been generated in polgamma to analyze their effects on overall polymerase function as well as the effects on the fidelity of DNA synthesis. One mutation in particular, Y955C, was found in several families throughout Europe, including one Belgian family and five unrelated Italian families. The Y955C mutant polgamma retains a wild-type catalytic rate but suffers a 45-fold decrease in apparent binding affinity for the incoming dNTP. The Y955C derivative is also much less accurate than is wild-type polgamma, with error rates for certain mismatches elevated by 10- to 100-fold. The error prone DNA synthesis observed for the Y955C polgamma is consistent with the accumulation of mtDNA mutations in patients with PEO. The effects of other polgamma mutations associated with PEO are discussed.

摘要

本文总结了在理解细胞维持线粒体基因组完整性的能力与线粒体遗传疾病之间联系方面的最新进展。人类线粒体DNA由双亚基DNA聚合酶γ(polγ)进行复制。我们研究了有或没有核酸外切校正功能的polγ及其p55辅助亚基进行DNA复制的保真度。由于有效的碱基选择和核酸外切校正功能,polγ具有较高的碱基替换保真度,但在复制长度超过四个核苷酸的同聚物序列时移码保真度较低。进行性眼外肌麻痹(PEO)是一种罕见疾病,其特征是线粒体DNA中出现大量缺失的积累。最近,已证明人类polγ的聚合酶和核酸外切酶结构域中的几种突变与PEO相关。我们正在分析这些突变对人类polγ酶的影响。特别是,三个常染色体显性突变改变了位于polγ聚合酶基序B内的氨基酸。这些残基在A族DNA聚合酶中高度保守,其中包括T7 DNA聚合酶和大肠杆菌pol I。已在polγ中产生这些PEO突变,以分析它们对整体聚合酶功能的影响以及对DNA合成保真度的影响。特别是,在欧洲各地的几个家族中发现了一种Y955C突变,包括一个比利时家族和五个无关的意大利家族。Y955C突变型polγ保留了野生型催化速率,但对进入的dNTP的表观结合亲和力下降了45倍。Y955C衍生物也比野生型polγ准确性低得多,某些错配的错误率提高了10至100倍。Y955C polγ观察到的易出错DNA合成与PEO患者中线粒体DNA突变的积累一致。还讨论了与PEO相关的其他polγ突变的影响。

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