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Functional analysis of human mismatch repair gene mutations identifies weak alleles and polymorphisms capable of polygenic interactions

机译:人类错配修复基因突变的功能分析确定弱等位基因和多态性能够多基因的相互作用

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摘要

Many of the mutations reported as potentially causing Lynch syndrome are missense mutations in human mismatch repair (MMR) genes. Here, we used a Saccharomyces cerevisiae-based system to study polymorphisms and suspected missense mutations in human MMR genes by modeling them at the appropriate S. cerevisiae chromosomal locus and determining their effect on mutation rates. We identified a number of weak alleles of MMR genes and MMR gene polymorphisms that are capable of interacting with other weak alleles of MMR genes to produce strong polygenic MMR defects. We also identified a number of alleles of MSH2 that act as if they inactivate the Msh2-Msh3 mispair recognition complex thus causing weak MMR defects that interact with an msh6Δ mutation to result in complete MMR defects. These results indicate that weak MMR gene alleles capable of polygenic interactions with other MMR gene alleles may be relatively common.
机译:据报道,可能引起林奇综合征的许多突变是人错配修复(MMR)基因的错义突变。在这里,我们使用了基于酿酒酵母的系统,通过在合适的酿酒酵母染色体基因座上对它们进行建模,并确定它们对突变率的影响,研究了人类MMR基因的多态性和可疑的错义突变。我们确定了许多弱等位基因的MMR基因和MMR基因多态性,能够与MMR基因的其他弱等位基因相互作用,以产生强的多基因MMR缺陷。我们还确定了许多MSH2等位基因,它们的作用就像是使Msh2-Msh3错配识别复合物失活一样,从而导致弱的MMR缺陷与Msh6Δ突变相互作用,导致完整的MMR缺陷。这些结果表明,能够与其他MMR基因等位基因多基因相互作用的弱MMR基因等位基因可能是相对常见的。

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