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酿酒酵母中与进行性外眼肌麻痹相关的DNA聚合酶γ突变的线粒体和核DNA缺陷

Mitochondrial and nuclear DNA defects in Saccharomyces cerevisiae with mutations in DNA polymerase gamma associated with progressive external ophthalmoplegia.

作者信息

Stuart Gregory R, Santos Janine H, Strand Micheline K, Van Houten Bennett, Copeland William C

机构信息

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

出版信息

Hum Mol Genet. 2006 Jan 15;15(2):363-74. doi: 10.1093/hmg/ddi454. Epub 2005 Dec 20.

Abstract

A number of nuclear mutations have been identified in a variety of mitochondrial diseases including progressive external ophthalmoplegia (PEO), Alpers syndrome and other neuromuscular and oxidative phosphorylation defects. More than 50 mutations have been identified in POLG, which encodes the human mitochondrial DNA (mtDNA) polymerase gamma, PEO and Alpers patients. To rapidly characterize the effects of these mutations, we have developed a versatile system that enables the consequences of homologous mutations, introduced in situ into the yeast mtDNA polymerase gene MIP1, to be evaluated in vivo in haploid and diploid cells. Overall, distinct phenotypes for expression of each of the mip1-PEO mutations were observed, including respiration-defective cells with decreased viability, dominant-negative mutant polymerases, elevated levels of mitochondrial and nuclear DNA damage and chromosomal mutations. Mutations in the polymerase domain caused the most severe phenotype accompanied by loss of mtDNA and cell viability, whereas the mutation in the exonuclease domain showed mild dominance with loss of mtDNA. Interestingly, the linker region mutation caused elevated mitochondrial and nuclear DNA damage. The cellular processes contributing to these observations in the mutant yeast cells are potentially relevant to understanding the pathologies observed in human mitochondrial disease patients.

摘要

在多种线粒体疾病中已鉴定出许多核突变,这些疾病包括进行性眼外肌麻痹(PEO)、阿尔珀斯综合征以及其他神经肌肉和氧化磷酸化缺陷。在编码人类线粒体DNA(mtDNA)聚合酶γ的POLG基因中已鉴定出50多种突变,这些突变存在于PEO和阿尔珀斯综合征患者中。为了快速表征这些突变的影响,我们开发了一种通用系统,该系统能够在单倍体和二倍体细胞中对原位引入酵母mtDNA聚合酶基因MIP1中的同源突变的后果进行体内评估。总体而言,观察到每个mip1 - PEO突变表达的不同表型,包括活力降低的呼吸缺陷细胞、显性负性突变聚合酶、线粒体和核DNA损伤水平升高以及染色体突变。聚合酶结构域中的突变导致最严重的表型,伴有mtDNA丢失和细胞活力丧失,而外切核酸酶结构域中的突变表现出轻度显性,伴有mtDNA丢失。有趣的是,连接区突变导致线粒体和核DNA损伤增加。在突变酵母细胞中导致这些观察结果的细胞过程可能与理解人类线粒体疾病患者中观察到的病理情况相关。

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