Li G M, Modrich P
Department of Biochemistry, Duke University Medical Center, Durham, NC.
Proc Natl Acad Sci U S A. 1995 Mar 14;92(6):1950-4. doi: 10.1073/pnas.92.6.1950.
Hypermutable H6 colorectal tumor cells are defective in strand-specific mismatch repair and bear defects in both alleles of the hMLH1 gene. We have purified to near homogeneity an activity from HeLa cells that complements H6 nuclear extracts to restore repair proficiency on a set of heteroduplex DNAs representing the eight base-base mismatches as well as a number of slipped-strand, insertion/deletion mispairs. This activity behaves as a single species during fractionation and copurifies with proteins of 85 and 110 kDa. Microsequence analysis demonstrated both of these proteins to be homologs of bacterial MutL, with the former corresponding to the hMLH1 product and the latter to the product of hPMS2 or a closely related gene. The 1:1 molar stoichiometry of the two polypeptides and their hydrodynamic behavior indicate formation of a heterodimer, which we have designated hMutL alpha. These observations indicate that interactions between members of the family of human MutL homologs may be restricted.
高度易变的H6结肠直肠肿瘤细胞在链特异性错配修复方面存在缺陷,并且hMLH1基因的两个等位基因均有缺陷。我们已从HeLa细胞中纯化出一种活性物质,该物质可补充H6核提取物,以恢复一组代表八种碱基错配以及一些滑链、插入/缺失错配的异源双链DNA的修复能力。在分级分离过程中,这种活性表现为单一成分,并与85 kDa和110 kDa的蛋白质共纯化。微序列分析表明,这两种蛋白质均为细菌MutL同源物,前者对应于hMLH1产物,后者对应于hPMS2或密切相关基因的产物。这两种多肽的1:1摩尔化学计量比及其流体动力学行为表明形成了异源二聚体,我们将其命名为hMutLα。这些观察结果表明,人类MutL同源物家族成员之间的相互作用可能受到限制。