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Functional analysis of human MutSalpha and MutSbeta complexes in yeast.

机译:酵母中人MutSalpha和MutSbeta复合物的功能分析。

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摘要

Mismatch repair (MMR) is initiated when a heterodimer of hMSH2*hMSH6 or hMSH2*hMSH3 binds to mismatches. Here we perform functional analyses of these human protein complexes in yeast. We use a sensitive genetic system wherein the rate of single-base deletions in a homopolymeric run in the LYS2 gene is 10 000-fold higher in an msh2 mutant than in a wild-type strain. Expression of the human proteins alone or in combination does not reduce the mutation rate of the msh2 strain, and expression of the individual human proteins does not increase the low mutation rate of a wild-type strain. However, co-expression of hMSH2 and hMSH6 in wild-type yeast increases the mutation rate 4000-fold, while co-expression of hMSH2 and hMSH3 elevates the rate 5-fold. Analysis of cell extracts indicates that the proteins are expressed and bind to mismatched DNA. The results suggest that hMutSalpha and hMutSbeta complexes form, bind to and prevent correction of replication slippage errors in yeast. Expression of hMSH6 with hMSH2 containing a proline substituted for a conserved Arg524 eliminates the mutator effect and reduces mismatch binding. The analogous mutation in humans is associated with microsatellite instability, defective MMR and cancer, illustrating the utility of the yeast system for studying human disease alleles.
机译:当hMSH2 * hMSH6或hMSH2 * hMSH3的异二聚体结合到错配时,就会启动错配修复(MMR)。在这里,我们对酵母中的这些人类蛋白质复合物进行功能分析。我们使用一种敏感的遗传系统,其中在LYS2基因的同聚物运行中单碱基缺失的速率在msh2突变体中比在野生型菌株中高10 000倍。单独或组合表达人蛋白不会降低msh2株的突变率,单独人蛋白的表达不会提高野生型株的低突变率。但是,在野生型酵母中共表达hMSH2和hMSH6可使突变率增加4000倍,而hMSH2和hMSH3的共表达则使突变率增加5倍。细胞提取物的分析表明蛋白质表达并结合错配的DNA。结果表明,hMutSalpha和hMutSbeta复合物形成,结合并阻止了酵母中复制滑动错误的纠正。用含有脯氨酸代替保守的Arg524的脯氨酸的hMSH2表达hMSH6消除了突变效应并减少了错配结合。人类中的类似突变与微卫星不稳定性,缺陷性MMR和癌症有关,这说明酵母系统可用于研究人类疾病等位基因。

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