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酿酒酵母MLH1基因中错配修复和减数分裂交叉的条件突变分析。

Analysis of conditional mutations in the Saccharomyces cerevisiae MLH1 gene in mismatch repair and in meiotic crossing over.

作者信息

Argueso Juan Lucas, Smith Daniel, Yi James, Waase Marc, Sarin Sumeet, Alani Eric

机构信息

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

出版信息

Genetics. 2002 Mar;160(3):909-21. doi: 10.1093/genetics/160.3.909.

Abstract

In mismatch repair (MMR), members of the MLH gene family have been proposed to act as key molecular matchmakers to coordinate mismatch recognition with downstream repair functions that result in mispair excision. Two members of this gene family, MLH1 and MLH3, have also been implicated in meiotic crossing over. These diverse roles suggest that a mutational analysis of MLH genes could provide reagents required to identify interactions between gene products and to test whether the different roles ascribed to a subset of these genes can be separated. In this report we show that in Saccharomyces cerevisiae the mlh1Delta mutation confers inviability in pol3-01 strain backgrounds that are defective in the Poldelta proofreading exonuclease activity. This phenotype was exploited to identify four mlh1 alleles that each confer a temperature-sensitive phenotype for viability in pol3-01 strains. In three different mutator assays, strains bearing conditional mlh1 alleles displayed wild-type or nearly wild-type mutation rates at 26 degrees. At 35 degrees, these strains exhibited mutation rates that approached those observed in mlh1Delta mutants. The mutator phenotype exhibited in mlh1-I296S strains was partially suppressed at 35 degrees by EXO1 overexpression. The mlh1-F228S and -I296S mutations conferred a separation-of-function phenotype in meiosis; both mlh1-F228S and -I296S strains displayed strong defects in meiotic mismatch repair but showed nearly wild-type levels of crossing over, suggesting that the conditional mutations differentially affected MLH1 functions. These genetic studies suggest that the conditional mlh1 mutations can be used to separate the MMR and meiotic crossing-over functions of MLH1 and to identify interactions between MLH1 and downstream repair components.

摘要

在错配修复(MMR)过程中,有人提出MLH基因家族的成员作为关键的分子媒人,将错配识别与导致错配切除的下游修复功能进行协调。该基因家族的两个成员MLH1和MLH3也与减数分裂交叉互换有关。这些不同的作用表明,对MLH基因进行突变分析可以提供鉴定基因产物之间相互作用以及测试赋予这些基因子集的不同作用是否可以分离所需的试剂。在本报告中,我们表明在酿酒酵母中,mlh1Delta突变在Poldelta校对核酸外切酶活性有缺陷的pol3-01菌株背景中导致 inviability。利用这种表型鉴定了四个mlh1等位基因,每个等位基因在pol3-01菌株中赋予温度敏感的生存力表型。在三种不同的突变检测中,携带条件性mlh1等位基因的菌株在26℃时显示野生型或接近野生型的突变率。在35℃时,这些菌株的突变率接近在mlh1Delta突变体中观察到的突变率。mlh1-I296S菌株中表现出的突变体表型在35℃时被EXO1过表达部分抑制。mlh1-F228S和-I296S突变在减数分裂中赋予功能分离表型;mlh1-F228S和-I296S菌株在减数分裂错配修复中均表现出强烈缺陷,但显示出接近野生型的交叉互换水平,这表明条件性突变对MLH1功能的影响不同。这些遗传学研究表明,条件性mlh1突变可用于分离MLH1的MMR和减数分裂交叉互换功能,并鉴定MLH1与下游修复成分之间的相互作用。

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