Mu D, Tursun M, Duckett D R, Drummond J T, Modrich P, Sancar A
Department of Biochemistry and Biophysics, University of North Carolina School of Medicine, Chapel Hill 27599-7260, USA.
Mol Cell Biol. 1997 Feb;17(2):760-9. doi: 10.1128/MCB.17.2.760.
Nucleotide excision repair and the long-patch mismatch repair systems correct abnormal DNA structures arising from DNA damage and replication errors, respectively. DNA synthesis past a damaged base (translesion replication) often causes misincorporation at the lesion site. In addition, mismatches are hot spots for DNA damage because of increased susceptibility of unpaired bases to chemical modification. We call such a DNA lesion, that is, a base damage superimposed on a mismatch, a compound lesion. To learn about the processing of compound lesions by human cells, synthetic compound lesions containing UV photoproducts or cisplatin 1,2-d(GpG) intrastrand cross-link and mismatch were tested for binding to the human mismatch recognition complex hMutS alpha and for excision by the human excision nuclease. No functional overlap between excision repair and mismatch repair was observed. The presence of a thymine dimer or a cisplatin diadduct in the context of a G-T mismatch reduced the affinity of hMutS alpha for the mismatch. In contrast, the damaged bases in these compound lesions were excised three- to fourfold faster than simple lesions by the human excision nuclease, regardless of the presence of hMutS alpha in the reaction. These results provide a new perspective on how excision repair, a cellular defense system for maintaining genomic integrity, can fix mutations under certain circumstances.
核苷酸切除修复和长片段错配修复系统分别纠正由DNA损伤和复制错误产生的异常DNA结构。DNA绕过受损碱基进行合成(跨损伤复制)通常会在损伤位点导致错配掺入。此外,错配是DNA损伤的热点,因为未配对碱基对化学修饰的敏感性增加。我们将这样一种DNA损伤,即叠加在错配上的碱基损伤,称为复合损伤。为了了解人类细胞对复合损伤的处理过程,我们测试了含有紫外线光产物或顺铂1,2-d(GpG)链内交联和错配的合成复合损伤与人类错配识别复合物hMutSα的结合以及人类切除核酸酶的切除情况。未观察到切除修复和错配修复之间的功能重叠。在G-T错配的情况下,胸腺嘧啶二聚体或顺铂双加合物的存在降低了hMutSα对错配的亲和力。相反,无论反应中是否存在hMutSα,这些复合损伤中的受损碱基被人类切除核酸酶切除的速度比简单损伤快三到四倍。这些结果为维持基因组完整性的细胞防御系统——切除修复如何在某些情况下修复突变提供了新的视角。