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ATRX 中 Snf2 结构域突变的功能意义。

Functional significance of mutations in the Snf2 domain of ATRX.

机构信息

MRC Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, Headington, Oxford, UK.

出版信息

Hum Mol Genet. 2011 Jul 1;20(13):2603-10. doi: 10.1093/hmg/ddr163. Epub 2011 Apr 19.

Abstract

ATRX is a member of the Snf2 family of chromatin-remodelling proteins and is mutated in an X-linked mental retardation syndrome associated with alpha-thalassaemia (ATR-X syndrome). We have carried out an analysis of 21 disease-causing mutations within the Snf2 domain of ATRX by quantifying the expression of the ATRX protein and placing all missense mutations in their structural context by homology modelling. While demonstrating the importance of protein dosage to the development of ATR-X syndrome, we also identified three mutations which primarily affect function rather than protein structure. We show that all three of these mutant proteins are defective in translocating along DNA while one mutant, uniquely for a human disease-causing mutation, partially uncouples adenosine triphosphate (ATP) hydrolysis from DNA binding. Our results highlight important mechanistic aspects in the development of ATR-X syndrome and identify crucial functional residues within the Snf2 domain of ATRX. These findings are important for furthering our understanding of how ATP hydrolysis is harnessed as useful work in chromatin remodelling proteins and the wider family of nucleic acid translocating motors.

摘要

ATRX 是染色质重塑蛋白 Snf2 家族的成员,在与α-地中海贫血症相关的 X 连锁智力迟钝综合征(ATR-X 综合征)中发生突变。我们通过定量分析 ATRX 蛋白的表达,对 ATRX 基因 Snf2 结构域中的 21 种致病突变进行了分析,并通过同源建模将所有错义突变置于其结构背景下。虽然证明了蛋白质剂量对 ATR-X 综合征发展的重要性,但我们还发现了三个主要影响功能而非蛋白质结构的突变。我们表明,所有这三种突变蛋白在沿 DNA 转移时都存在缺陷,而有一种突变蛋白,独特地作为人类致病突变,部分地将三磷酸腺苷(ATP)水解与 DNA 结合解耦。我们的研究结果突出了 ATR-X 综合征发展中的重要机制方面,并确定了 ATRX 的 Snf2 结构域中的关键功能残基。这些发现对于进一步了解如何利用 ATP 水解作为染色质重塑蛋白和更广泛的核酸转运马达家族中的有用工作是重要的。

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