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假定的MLH3核酸内切酶结构域中的突变导致酿酒酵母的错配修复和减数分裂均出现缺陷。

A mutation in the putative MLH3 endonuclease domain confers a defect in both mismatch repair and meiosis in Saccharomyces cerevisiae.

作者信息

Nishant K T, Plys Aaron J, Alani Eric

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853-2703, USA.

出版信息

Genetics. 2008 Jun;179(2):747-55. doi: 10.1534/genetics.108.086645. Epub 2008 May 27.

Abstract

Interference-dependent crossing over in yeast and mammalian meioses involves the mismatch repair protein homologs MSH4-MSH5 and MLH1-MLH3. The MLH3 protein contains a highly conserved metal-binding motif DQHA(X)(2)E(X)(4)E that is found in a subset of MLH proteins predicted to have endonuclease activities (Kadyrov et al. 2006). Mutations within this motif in human PMS2 and Saccharomyces cerevisiae PMS1 disrupted the endonuclease and mismatch repair activities of MLH1-PMS2 and MLH1-PMS1, respectively (Kadyrov et al. 2006, 2007; Erdeniz et al. 2007). As a first step in determining whether such an activity is required during meiosis, we made mutations in the MLH3 putative endonuclease domain motif (-D523N, -E529K) and found that single and double mutations conferred mlh3-null-like defects with respect to meiotic spore viability and crossing over. Yeast two-hybrid and chromatography analyses showed that the interaction between MLH1 and mlh3-D523N was maintained, suggesting that the mlh3-D523N mutation did not disrupt the stability of MLH3. The mlh3-D523N mutant also displayed a mutator phenotype in vegetative growth that was similar to mlh3Delta. Overexpression of this allele conferred a dominant-negative phenotype with respect to mismatch repair. These studies suggest that the putative endonuclease domain of MLH3 plays an important role in facilitating mismatch repair and meiotic crossing over.

摘要

酵母和哺乳动物减数分裂中依赖干涉的交叉互换涉及错配修复蛋白同源物MSH4 - MSH5和MLH1 - MLH3。MLH3蛋白包含一个高度保守的金属结合基序DQHA(X)(2)E(X)(4)E,该基序存在于预测具有内切核酸酶活性的一部分MLH蛋白中(卡迪罗夫等人,2006年)。人类PMS2和酿酒酵母PMS1中该基序内的突变分别破坏了MLH1 - PMS2和MLH1 - PMS1的内切核酸酶和错配修复活性(卡迪罗夫等人,2006年、2007年;埃尔德尼兹等人,2007年)。作为确定减数分裂期间是否需要这种活性的第一步,我们对MLH3假定的内切核酸酶结构域基序进行了突变(-D523N、-E529K),发现单突变和双突变在减数分裂孢子活力和交叉互换方面产生了类似mlh3缺失的缺陷。酵母双杂交和色谱分析表明,MLH1与mlh3 - D523N之间的相互作用得以维持,这表明mlh3 - D523N突变并未破坏MLH3的稳定性。mlh3 - D523N突变体在营养生长中也表现出与mlh3缺失类似的突变体表型。该等位基因的过表达在错配修复方面表现出显性负性表型。这些研究表明,MLH3假定的内切核酸酶结构域在促进错配修复和减数分裂交叉互换中起重要作用。

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