Department of Cell and Chemical Biology, Leiden University Medical Center, Leiden, The Netherlands.
Department of Molecular Genetics, Oncode Institute, Erasmus MC Cancer Institute, Erasmus University Medical Center, Rotterdam, The Netherlands.
Nucleic Acids Res. 2022 Jun 24;50(11):6224-6234. doi: 10.1093/nar/gkac432.
DNA mismatch repair removes mis-incorporated bases after DNA replication and reduces the error rate a 100-1000-fold. After recognition of a mismatch, a large section of up to a thousand nucleotides is removed from the daughter strand followed by re-synthesis. How these opposite activities are coordinated is poorly understood. Here we show that the Escherichia coli MutL protein binds to the 3' end of the resected strand and blocks access of Pol I and Pol III. The cryo-EM structure of an 85-kDa MutL-DNA complex, determined to 3.7 Å resolution, reveals a unique DNA binding mode that positions MutL at the 3' end of a primer-template, but not at a 5' resected DNA end or a blunt DNA end. Hence, our work reveals a novel role for MutL in the final stages of mismatch repair by preventing premature DNA synthesis during removal of the mismatched strand.
DNA 错配修复在 DNA 复制后去除错误掺入的碱基,并将错误率降低 100-1000 倍。在识别错配后,从子链上切除多达一千个核苷酸的大片段,然后进行重新合成。这些相反的活性是如何协调的还不太清楚。在这里,我们表明大肠杆菌 MutL 蛋白结合到被切除链的 3' 端,并阻止 Pol I 和 Pol III 的进入。一个 85 kDa MutL-DNA 复合物的 cryo-EM 结构,分辨率为 3.7 Å,揭示了一种独特的 DNA 结合模式,将 MutL 定位在引物-模板的 3' 端,但不在 5' 切除的 DNA 末端或钝末端。因此,我们的工作揭示了 MutL 在错配修复的最后阶段的一个新作用,通过防止在错配链去除过程中过早的 DNA 合成。