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与POLG1核酸外切酶结构域突变相关的聚合酶γA的显著错配。

Remarkable infidelity of polymerase gammaA associated with mutations in POLG1 exonuclease domain.

作者信息

Del Bo R, Bordoni A, Sciacco M, Di Fonzo A, Galbiati S, Crimi M, Bresolin N, Comi G P

机构信息

Centro Dino Ferrari, Dipartimento di Scienze Neurologiche, Università degli Studi di Milano, I.R.C.C.S. Ospedale Maggiore Policlinico, Milan.

出版信息

Neurology. 2003 Oct 14;61(7):903-8. doi: 10.1212/01.wnl.0000092303.13864.be.

Abstract

OBJECTIVE

To better understand the still unknown pathologic mechanism involved in the accumulation of multiple mtDNA deletions in stable tissues.

METHODS

A large-scale screening of mtDNA molecules from skeletal muscle was performed in 14 patients with progressive external ophthalmoplegia (PEO) and 2 patients with mitochondrial neurogastrointestinal encephalomyopathy carrying mutations on ANT1, C10ORF2 or POLG1, and TP genes.

RESULTS

Patients with at least one mutation in the exonuclease domain of POLG1 showed the highest frequency of individually rare point mutations only in the mtDNA control region; in addition, high levels, in terms of frequency and heteroplasmy, of recurrent mutations (A189G, T408A, and T414G) and alterations affecting the (HT)D310 region were detectable in many of the patients. Two homozygous POLG1 mutations, within the exonuclease domain, were able to induce an increased mutational burden also in fibroblasts from patients with PEO.

CONCLUSIONS

Specific POLG1 mutations directly affect the integrity of the mtDNA by reducing its proof-reading exonuclease activity, resulting in the accumulation of heteroplasmic levels of both randomly rare and recurrent point mutations in the skeletal muscle tissue and fibroblasts.

摘要

目的

为了更好地理解稳定组织中多个线粒体DNA(mtDNA)缺失积累所涉及的仍不明的病理机制。

方法

对14例进行性眼外肌麻痹(PEO)患者以及2例携带ANT1、C10ORF2、POLG1或TP基因突变的线粒体神经胃肠性脑肌病患者的骨骼肌mtDNA分子进行了大规模筛查。

结果

POLG1核酸外切酶结构域至少有一个突变的患者仅在mtDNA控制区显示出个体罕见点突变的最高频率;此外,在许多患者中可检测到复发突变(A189G、T408A和T414G)以及影响(HT)D310区域的改变在频率和异质性方面处于高水平。核酸外切酶结构域内的两个纯合POLG1突变也能够在PEO患者的成纤维细胞中诱导增加的突变负担。

结论

特定的POLG1突变通过降低其校对核酸外切酶活性直接影响mtDNA的完整性,导致骨骼肌组织和成纤维细胞中随机罕见和复发点突变的异质性水平积累。

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