首页> 美国卫生研究院文献>Nucleic Acids Research >The interacting domains of three MutL heterodimers in man: hMLH1 interacts with 36 homologous amino acid residues within hMLH3 hPMS1 and hPMS2
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The interacting domains of three MutL heterodimers in man: hMLH1 interacts with 36 homologous amino acid residues within hMLH3 hPMS1 and hPMS2

机译:三个的相互作用域 人类的MutL异二聚体:hMLH1与36个同源氨基相互作用 hMLH3hPMS1和hPMS2中的酸性残基

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摘要

In human cells, hMLH1, hMLH3, hPMS1 and hPMS2 are four recognised and distinctive homologues of MutL, an essential component of the bacterial DNA mismatch repair (MMR) system. The hMLH1 protein forms three different heterodimers with one of the other MutL homologues. As a first step towards functional analysis of these molecules, we determined the interacting domains of each heterodimer and tried to understand their common features. Using a yeast two-hybrid assay, we show that these MutL homologues can form heterodimers by interacting with the same amino acid residues of hMLH1, residues 492–742. In contrast, three hMLH1 partners, hMLH3, hPMS1 and hPMS2 contain the 36 homologous amino acid residues that interact strongly with hMLH1. Contrary to the previous studies, these homologous residues reside at the N-terminal regions of three subdomains conserved in MutL homologues in many species. Interestingly, these residues in hPMS2 and hMLH3 may form coiled-coil structures as predicted by the MULTICOIL program. Furthermore, we show that there is competition for the interacting domain in hMLH1 among the three other MutL homologues. Therefore, the quantitative balance of these three MutL heterodimers may be important in their functions.
机译:在人类细胞中,hMLH1,hMLH3,hPMS1和hPMS2是MutL的四个公认且独特的同源物,MutL是细菌DNA错配修复(MMR)系统的重要组成部分。 hMLH1蛋白与其他MutL同源物中的一种形成三种不同的异二聚体。作为对这些分子进行功能分析的第一步,我们确定了每个异二聚体的相互作用域,并试图了解它们的共同特征。使用酵母双杂交测定法,我们显示这些MutL同源物可以通过与hMLH1的相同氨基酸残基(492-742残基)相互作用而形成异二聚体。相反,三个hMLH1伴侣hMLH3,hPMS1和hPMS2包含36个与hMLH1强烈相互作用的同源氨基酸残基。与先前的研究相反,这些同源残基位于许多物种的MutL同源物中保守的三个亚域的N末端区域。有趣的是,如MULTICOIL程序所预测的,hPMS2和hMLH3中的这些残基可能形成卷曲螺旋结构。此外,我们表明在hMLH1中的相互作用域之间还有其他三个MutL同源物之间存在竞争。 因此,这三种MutL异二聚体的定量平衡 在其功能上可能很重要。

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