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首页> 外文期刊>Molecular and Cellular Biology >Functional domains of the Saccharomyces cerevisiae Mlh1p and Pms1p DNA mismatch repair proteins and their relevance to human hereditary nonpolyposis colorectal cancer-associated mutations.
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Functional domains of the Saccharomyces cerevisiae Mlh1p and Pms1p DNA mismatch repair proteins and their relevance to human hereditary nonpolyposis colorectal cancer-associated mutations.

机译:酿酒酵母Mlh1p和Pms1p​​ DNA错配修复蛋白的功能域及其与人类遗传性非息肉病结直肠癌相关突变的相关性。

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The MutL protein is an essential component of the Escherichia coli methyl-directed mismatch repair system but has no known enzymatic function. In the yeast Saccharomyces cerevisiae, the MutL equivalent, an Mlh1p and Pms1p heterodimer, interacts with Msh2p bound to mismatch-containing DNA. Little is known of the functional domains of Mlh1p and Pms1p. In this report, we define the Mlh1p and Pms1p domains required for Mlh1p-Pms1p interaction. The Mlh1p-interactive domain of Pms1p is comprised of 260 amino acids near the carboxyl terminus while the Pms1p-interactive domain of Mlh1p resides in the final 212 residues. The two domains are sufficient for Mlh1p-Pms1p interaction, as determined by the two-hybrid assay and by in vitro protein affinity chromatography. Deletions within the domains completely eliminated Mlh1p-Pms1p interaction. Using site-directed mutagenesis, we altered a number of highly conserved residues in the Mlh1p and Pms1p proteins, including some alterations that mimic germline mutations observed for human hereditary nonpolyposis colorectal cancer. Alterations either in the consensus MutL box located in the amino-terminal portion of each protein or in the carboxyl-terminal homology motif of Mlh1p eliminated DNA mismatch repair function but had no effect on Mlh1p-Pms1p interaction. In addition, certain MLH1 and PMS1 mutant alleles caused a dominant negative mutator effect when overexpressed. We discuss the implications of these findings for the structural organization of the Mlh1p and Pms1p proteins and the importance of Mlh1p-Pms1p interaction.
机译:MutL蛋白是大肠杆菌甲基化错配修复系统的重要组成部分,但没有已知的酶功能。在酵母酿酒酵母中,MutL等同物Mlh1p和Pms1p​​异二聚体与结合到含错配DNA的Msh2p相互作用。关于Mlh1p和Pms1p​​的功能域知之甚少。在此报告中,我们定义了Mlh1p-Pms1p​​交互所需的Mlh1p和Pms1p​​域。 Pms1p​​的Mlh1p交互域由靠近羧基末端的260个氨基酸组成,而Mlh1p的Pms1p​​交互域位于最后的212个残基中。这两个域足以实现Mlh1p-Pms1p​​相互作用,这是通过两次杂交测定法和体外蛋白质亲和色谱法确定的。域内的删除完全消除了Mlh1p-Pms1p​​相互作用。使用定点诱变,我们改变了Mlh1p和Pms1p​​蛋白中的许多高度保守的残基,包括一些模仿人类遗传性非息肉病结直肠癌的种系突变的改变。位于每个蛋白质的氨基末端部分的共有Mut框或Mlh1p的羧基末端同源基序中的改变消除了DNA错配修复功能,但对Mlh1p-Pms1p​​相互作用没有影响。此外,某些MLH1和PMS1突变等位基因在过表达时会引起显性的负突变效应。我们讨论了这些发现对Mlh1p和Pms1p​​蛋白质的结构组织的意义以及Mlh1p-Pms1p​​相互作用的重要性。

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