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N-terminus of hMLH1 confers interaction of hMutLα and hMutLβ with hMutSα

机译:hMLH1的N末端使hMutLα和hMutLβ与hMutSα相互作用

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Mismatch repair is a highly conserved system that ensures replication fidelity by repairing mispairs after DNA synthesis. In humans, the two protein heterodimers hMutSα (hMSH2-hMSH6) and hMutLα (hMLH1-hPMS2) constitute the centre of the repair reaction. After recognising a DNA replication error, hMutSα recruits hMutLα, which then is thought to transduce the repair signal to the excision machinery. We have expressed an ATPase mutant of hMutLα as well as its individual subunits hMLH1 and hPMS2 and fragments of hMLH1, followed by examination of their interaction properties with hMutSα using a novel interaction assay. We show that, although the interaction requires ATP, hMutLα does not need to hydrolyse this nucleotide to join hMutSα on DNA, suggesting that ATP hydrolysis by hMutLα happens downstream of complex formation. The analysis of the individual subunits of hMutLα demonstrated that the hMutSα-hMutLα interaction is predominantly conferred by hMLH1. Further experiments revealed that only the N-terminus of hMLH1 confers this interaction. In contrast, only the C-terminus stabilised and co-immunoprecipitated hPMS2 when both proteins were co-expressed in 293T cells, indicating that dimerisation and stabilisation are mediated by the C-terminal part of hMLH1. We also examined another human homologue of bacterial MutL, hMutLβ (hMLH1-hPMS1). We show that hMutLβ interacts as efficiently with hMutSα as hMutLα, and that it predominantly binds to hMutSα via hMLH1 as well.
机译:错配修复是一个高度保守的系统,可通过修复DNA合成后的错配来确保复制保真度。在人类中,两种蛋白质异二聚体hMutSα(hMSH2-hMSH6)和hMutLα(hMLH1-hPMS2)构成了修复反应的中心。识别出DNA复制错误后,hMutSα募集了hMutLα,后者被认为将修复信号转导至切除机械。我们已经表达了hMutLα的ATPase突变体,以及它的各个亚基hMLH1和hPMS2以及hMLH1的片段,然后使用新颖的相互作用测定法检查了它们与hMutSα的相互作用特性。我们显示,尽管相互作用需要ATP,但hMutLα不需要水解该核苷酸即可将hMutSα加入DNA上,这表明hMutLα进行的ATP水解发生在复合物形成的下游。对hMutLα的各个亚基的分析表明,hMutSα-hMutLα的相互作用主要由hMLH1赋予。进一步的实验表明,只有hMLH1的N末端赋予了这种相互作用。相反,当两种蛋白在293T细胞中共表达时,只有C端稳定并共同免疫沉淀的hPMS2,表明二聚化和稳定化是由hMLH1的C端介导的。我们还检查了细菌MutL的另一个人类同源物hMutLβ(hMLH1-hPMS1)。我们表明,hMutLβ与hMutSα的相互作用与hMutLα一样有效,并且它主要也通过hMLH1与hMutSα结合。

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