Shen Xi, Jun Sohee, O'Neal Lindsey E, Sonoda Eiichiro, Bemark Mats, Sale Julian E, Li Lei
Department of Experimental Radiation Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
J Biol Chem. 2006 May 19;281(20):13869-72. doi: 10.1074/jbc.C600071200. Epub 2006 Mar 29.
DNA interstrand cross-links (ICLs) are the most cytotoxic lesions to eukaryotic genome and are repaired by both homologous recombination-dependent and -independent mechanisms. To better understand the role of lesion bypass polymerases in ICL repair, we investigated recombination-independent repair of ICLs in REV3 and REV1 deletion mutants constructed in avian DT40 cells and mouse embryonic fibroblast cells. Our results showed that Rev3 plays a major role in recombination-independent ICL repair, which may account for the extreme sensitivity of REV3 mutants to cross-linking agents. This result raised the possibility that the NER gap synthesis, when encountering an adducted base present in the ICL repair intermediate, can lead to recruitment of Rev3, analogous to the recruitment of polymerase eta during replicative synthesis. Indeed, the monoubiquitination-defective Proliferating Cell Nuclear Antigen (PCNA) mutant exhibits impaired recombination-independent ICL repair as well as drastically reduced mutation rate, indicating that the PCNA switch is utilized to enable lesion bypass during DNA repair synthesis. Analyses of a REV1 deletion mutant also revealed a significant reduction in recombination-independent ICL repair, suggesting that Rev1 cooperates with Rev3 in recombination-independent ICL repair. Moreover, deletion of REV3 or REV1 significantly altered the spectrum of mutations resulting from ICL repair, further confirming their involvement in mutagenic repair of ICLs.
DNA链间交联(ICLs)是对真核基因组最具细胞毒性的损伤,可通过同源重组依赖和非依赖机制进行修复。为了更好地理解损伤跨越聚合酶在ICL修复中的作用,我们研究了在禽DT40细胞和小鼠胚胎成纤维细胞中构建的REV3和REV1缺失突变体中ICL的非重组依赖性修复。我们的结果表明,Rev3在非重组依赖性ICL修复中起主要作用,这可能解释了REV3突变体对交联剂的极端敏感性。这一结果提出了一种可能性,即核苷酸切除修复(NER)间隙合成在遇到ICL修复中间体中存在的加合物碱基时,可能会导致Rev3的募集,类似于复制合成过程中聚合酶η的募集。事实上,单泛素化缺陷的增殖细胞核抗原(PCNA)突变体表现出非重组依赖性ICL修复受损以及突变率大幅降低,表明PCNA转换在DNA修复合成过程中用于实现损伤跨越。对REV1缺失突变体的分析还显示非重组依赖性ICL修复显著减少,表明Rev1在非重组依赖性ICL修复中与Rev3协同作用。此外,REV3或REV1的缺失显著改变了ICL修复产生的突变谱,进一步证实了它们参与ICL的诱变修复。