Kadyrov Farid A, Dzantiev Leonid, Constantin Nicoleta, Modrich Paul
Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.
Cell. 2006 Jul 28;126(2):297-308. doi: 10.1016/j.cell.2006.05.039.
Half of hereditary nonpolyposis colon cancer kindreds harbor mutations that inactivate MutLalpha (MLH1*PMS2 heterodimer). MutLalpha is required for mismatch repair, but its function in this process is unclear. We show that human MutLalpha is a latent endonuclease that is activated in a mismatch-, MutSalpha-, RFC-, PCNA-, and ATP-dependent manner. Incision of a nicked mismatch-containing DNA heteroduplex by this four-protein system is strongly biased to the nicked strand. A mismatch-containing DNA segment spanned by two strand breaks is removed by the 5'-to-3' activity of MutSalpha-activated exonuclease I. The probable endonuclease active site has been localized to a PMS2 DQHA(X)(2)E(X)(4)E motif. This motif is conserved in eukaryotic PMS2 homologs and in MutL proteins from a number of bacterial species but is lacking in MutL proteins from bacteria that rely on d(GATC) methylation for strand discrimination in mismatch repair. Therefore, the mode of excision initiation may differ in these organisms.
一半的遗传性非息肉病性结直肠癌家系携带使MutLα(MLH1*PMS2异二聚体)失活的突变。错配修复需要MutLα,但其在此过程中的功能尚不清楚。我们发现人类MutLα是一种潜在的核酸内切酶,它以错配、MutSα、RFC、PCNA和ATP依赖的方式被激活。这个四蛋白系统对含切口错配的DNA异源双链体的切割强烈偏向于切口链。由两个链断裂跨越的含错配的DNA片段通过MutSα激活的核酸外切酶I的5'至3'活性被去除。可能的核酸内切酶活性位点已定位到PMS2的DQHA(X)(2)E(X)(4)E基序。该基序在真核生物PMS2同源物和许多细菌物种的MutL蛋白中保守,但在依赖d(GATC)甲基化进行错配修复中的链区分的细菌的MutL蛋白中不存在。因此,这些生物体中切除起始的模式可能不同。