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Alpers 病突变和生化变异中催化缺陷的聚类揭示了人类线粒体复制酶 Pol γ 的分子机制的新特征。

Clustering of Alpers disease mutations and catalytic defects in biochemical variants reveal new features of molecular mechanism of the human mitochondrial replicase, Pol γ.

机构信息

Research Programs Unit, Molecular Neurology, Biomedicum-Helsinki, University of Helsinki, Haartmaninkatu 8, 00290 Helsinki, Finland.

出版信息

Nucleic Acids Res. 2011 Nov;39(21):9072-84. doi: 10.1093/nar/gkr618. Epub 2011 Aug 8.

Abstract

Mutations in Pol γ represent a major cause of human mitochondrial diseases, especially those affecting the nervous system in adults and in children. Recessive mutations in Pol γ represent nearly half of those reported to date, and they are nearly uniformly distributed along the length of the POLG1 gene (Human DNA Polymerase gamma Mutation Database); the majority of them are linked to the most severe form of POLG syndrome, Alpers-Huttenlocher syndrome. In this report, we assess the structure-function relationships for recessive disease mutations by reviewing existing biochemical data on site-directed mutagenesis of the human, Drosophila and yeast Pol γs, and their homologs from the family A DNA polymerase group. We do so in the context of a molecular model of Pol γ in complex with primer-template DNA, which we have developed based upon the recently solved crystal structure of the apoenzyme form. We present evidence that recessive mutations cluster within five distinct functional modules in the catalytic core of Pol γ. Our results suggest that cluster prediction can be used as a diagnosis-supporting tool to evaluate the pathogenic role of new Pol γ variants.

摘要

聚合酶 γ 突变是人类线粒体疾病的主要原因,尤其是那些影响成年人和儿童神经系统的疾病。聚合酶 γ 的隐性突变占目前报道的突变的近一半,它们几乎均匀地分布在 POLG1 基因的全长上(人类 DNA 聚合酶 γ 突变数据库);其中大多数与最严重的 POLG 综合征,即 Alpers-Huttenlocher 综合征有关。在本报告中,我们通过回顾人类、果蝇和酵母 Pol γ 以及来自 A 家族 DNA 聚合酶组的同源物的定点诱变的现有生化数据,评估隐性疾病突变的结构-功能关系。我们在聚合酶 γ 与引物-模板 DNA 复合物的分子模型的背景下这样做,该模型是基于最近解决的酶原形式的晶体结构开发的。我们提供的证据表明,隐性突变聚集在聚合酶 γ 的催化核心的五个不同的功能模块内。我们的结果表明,簇预测可作为一种支持诊断的工具,用于评估新聚合酶 γ 变体的致病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b48b/3241644/0bfa3b135f0c/gkr618f1.jpg

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