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hMutLbeta的鉴定,hMLH1和hPMS1的异二聚体。

Identification of hMutLbeta, a heterodimer of hMLH1 and hPMS1.

作者信息

Räschle M, Marra G, Nyström-Lahti M, Schär P, Jiricny J

机构信息

Institute of Medical Radiobiology, University of Zürich August Forel-Strasse 7, CH-8008 Zürich, Switzerland.

出版信息

J Biol Chem. 1999 Nov 5;274(45):32368-75. doi: 10.1074/jbc.274.45.32368.

Abstract

hMLH1 and hPMS2 function in postreplicative mismatch repair in the form of a heterodimer referred to as hMutLalpha. Tumors or cell lines lacking this factor display mutator phenotypes and microsatellite instability, and mutations in the hMLH1 and hPMS2 genes predispose to hereditary non-polyposis colon cancer. A third MutL homologue, hPMS1, has also been reported to be mutated in one cancer-prone kindred, but the protein encoded by this locus has so far remained without function. We now show that hPMS1 is expressed in human cells and that it interacts with hMLH1 with high affinity to form the heterodimer hMutLbeta. Recombinant hMutLalpha and hMutLbeta, expressed in the baculovirus system, were tested for their activity in an in vitro mismatch repair assay. While hMutLalpha could fully complement extracts of mismatch repair-deficient cell lines lacking hMLH1 or hPMS2, hMutLbeta failed to do so with any of the different substrates tested in this assay. The involvement of the latter factor in postreplicative mismatch repair thus remains to be demonstrated.

摘要

hMLH1和hPMS2以一种称为hMutLα的异二聚体形式参与复制后错配修复。缺乏该因子的肿瘤或细胞系表现出突变体表型和微卫星不稳定性,并且hMLH1和hPMS2基因的突变易导致遗传性非息肉病性结肠癌。据报道,第三个MutL同源物hPMS1在一个易患癌症的家族中发生了突变,但该基因座编码的蛋白质迄今为止仍无功能。我们现在表明,hPMS1在人类细胞中表达,并且它与hMLH1以高亲和力相互作用形成异二聚体hMutLβ。在杆状病毒系统中表达的重组hMutLα和hMutLβ在体外错配修复试验中检测其活性。虽然hMutLα可以完全补充缺乏hMLH1或hPMS2的错配修复缺陷细胞系的提取物,但hMutLβ在该试验中测试的任何不同底物上均未能做到这一点。因此,后一个因子在复制后错配修复中的参与仍有待证明。

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