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错配修复在酿酒酵母中对同源重组起到阻碍作用。

Mismatch correction acts as a barrier to homeologous recombination in Saccharomyces cerevisiae.

作者信息

Selva E M, New L, Crouse G F, Lahue R S

机构信息

Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester 01655, USA.

出版信息

Genetics. 1995 Mar;139(3):1175-88. doi: 10.1093/genetics/139.3.1175.

Abstract

A homeologous mitotic recombination assay was used to test the role of Saccharomyces cerevisiae mismatch repair genes PMS1, MSH2 and MSH3 on recombination fidelity. A homeologous gene pair consisting of S. cerevisiae SPT15 and its S. pombe homolog were present as a direct repeat on chromosome V, with the exogenous S. pombe sequences inserted either upstream or downstream of the endogenous S. cerevisiae gene. Each gene carried a different inactivating mutation, rendering the starting strain Spt15-. Recombinants that regenerated SPT15 function were scored after nonselective growth of the cells. In strains wild type for mismatch repair, homeologous recombination was depressed 150- to 180-fold relative to homologous controls, indicating that recombination between diverged sequences is inhibited. In one orientation of the homeologous gene pair, msh2 or msh3 mutations resulted in 17- and 9.6-fold elevations in recombination and the msh2 msh3 double mutant exhibited an 43-fold increase, implying that each MSH gene can function independently in trans to prevent homeologous recombination. Homologous recombination was not significantly affected by the msh mutations. In the other orientation, only msh2 strains were elevated (12-fold) for homeologous recombination. A mutation in MSH3 did not affect the rate of recombination in this orientation. Surprisingly, a pms1 deletion mutant did not exhibit elevated homeologous recombination.

摘要

利用同源有丝分裂重组试验来检测酿酒酵母错配修复基因PMS1、MSH2和MSH3在重组保真度方面的作用。由酿酒酵母SPT15及其粟酒裂殖酵母同源基因组成的一对同源基因作为直接重复序列存在于第五条染色体上,外源粟酒裂殖酵母序列插入到内源性酿酒酵母基因的上游或下游。每个基因都携带不同的失活突变,使起始菌株为Spt15-。在细胞非选择性生长后,对恢复SPT15功能的重组体进行评分。在错配修复野生型菌株中,同源重组相对于同源对照降低了150至180倍,这表明分歧序列之间的重组受到抑制。在同源基因对的一个方向上,msh2或msh3突变导致重组分别升高了17倍和9.6倍,msh2 msh3双突变体则升高了43倍,这意味着每个MSH基因可以独立发挥反式作用以防止同源重组。同源重组不受msh突变的显著影响。在另一个方向上,只有msh2菌株的同源重组升高了(12倍)。MSH3中的突变不影响该方向上的重组率。令人惊讶的是,pms1缺失突变体并未表现出同源重组升高。

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