首页> 美国卫生研究院文献>Molecular and Cellular Biology >Separation-of-Function Mutations in Saccharomyces cerevisiae MSH2 That Confer Mismatch Repair Defects but Do Not Affect Nonhomologous-Tail Removal during Recombination
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Separation-of-Function Mutations in Saccharomyces cerevisiae MSH2 That Confer Mismatch Repair Defects but Do Not Affect Nonhomologous-Tail Removal during Recombination

机译:酿酒酵母MSH2中的功能分离突变可导致错配修复缺陷但不会影响重组过程中非同源尾巴的去除

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摘要

Yeast Msh2p forms complexes with Msh3p and Msh6p to repair DNA mispairs that arise during DNA replication. In addition to their role in mismatch repair (MMR), the MSH2 and MSH3 gene products are required to remove 3′ nonhomologous DNA tails during genetic recombination. The mismatch repair genes MSH6, MLH1, and PMS1, whose products interact with Msh2p, are not required in this process. We have identified mutations in MSH2 that do not disrupt genetic recombination but confer a strong defect in mismatch repair. Twenty-four msh2 mutations that conferred a dominant negative phenotype for mismatch repair were isolated. A subset of these mutations mapped to residues in Msh2p that were analogous to mutations identified in human nonpolyposis colorectal cancer msh2 kindreds. Approximately half of the these MMR-defective mutations retained wild-type or nearly wild-type activity for the removal of nonhomologous DNA tails during genetic recombination. The identification of mutations in MSH2 that disrupt mismatch repair without affecting recombination provides a first step in dissecting the Msh-effector protein complexes that are thought to play different roles during DNA repair and genetic recombination.
机译:酵母Msh2p与Msh3p和Msh6p形成复合物,以修复DNA复制过程中出现的DNA错误配对。除了在错配修复(MMR)中的作用外,还需要MSH2和MSH3基因产物在基因重组过程中去除3'非同源DNA尾巴。此过程中不需要杂配修复基因MSH6,MLH1和PMS1,其产物与Msh2p相互作用。我们已经鉴定出MSH2中的突变不会破坏基因重组,但在错配修复中具有很强的缺陷。分离出二十四个msh2突变,这些突变赋予错配修复显性负显性表型。这些突变的一个子集映射到Msh2p中的残基,类似于在人类非息肉病结直肠癌msh2亲属中鉴定的突变。这些MMR缺陷突变中约有一半保留了野生型或近乎野生型的活性,可在基因重组过程中去除非同源DNA尾巴。鉴定不匹配修复而不会影响重组的MSH2突变,是剖析Msh效应蛋白复合物的第一步,该复合物被认为在DNA修复和遗传重组中起不同作用。

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