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Psoralen-induced DNA adducts are substrates for the base excision repair pathway in human cells

机译:补骨脂素诱导的DNA加合物是人类细胞中碱基切除修复途径的底物

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摘要

Interstrand cross-link (ICL) is a covalent modification of both strands of DNA, which prevents DNA strand separation during transcription and replication. Upon photoactivation 8-methoxypsoralen (8-MOPUVA) alkylates both strands of DNA duplex at the 5,6-double bond of thymidines, generating monoadducts (MAs) and ICLs. It was thought that bulky DNA lesions such as MAs are eliminated only in the nucleotide excision repair pathway. Instead, non-bulky DNA lesions are substrates for DNA glycosylases and AP endonucleases which initiate the base excision repair (BER) pathway. Here we examined whether BER might be involved in the removal of psoralenDNA photoadducts. The results show that in human cells DNA glycosylase NEIL1 excises the MAs in duplex DNA, subsequently the apurinic/apyrimidinic endonuclease 1, APE1, removes the 3-phosphate residue at single-strand break generated by NEIL1. The apparent kinetic parameters suggest that NEIL1 excises MAs with high efficiency. Consistent with these results HeLa cells lacking APE1 and/or NEIL1 become hypersensitive to 8-MOPUVA exposure. Furthermore, we demonstrate that bacterial homologues of NEIL1, the Fpg and Nei proteins, also excise MAs. New substrate specificity of the Fpg/Nei protein family provides an alternative repair pathway for ICLs and bulky DNA damage.
机译:链间交联(ICL)是DNA两条链的共价修饰,可防止DNA链在转录和复制过程中分离。光活化后,8-甲氧基补骨脂素(8-MOPUVA)在胸苷的5,6-双键处使DNA双链体的两条链烷基化,生成单加合物(MAs)和ICL。认为仅在核苷酸切除修复途径中消除了诸如MAs的大DNA损伤。相反,非大块的DNA损伤是DNA糖基化酶和AP内切核酸酶的底物,可启动碱基切除修复(BER)途径。在这里,我们检查了BER是否可能与去除补骨脂素DNA光加合物有关。结果表明,在人类细胞中,DNA糖基化酶NEIL1切除了双链体DNA中的MA,随后嘌呤/嘧啶内切核酸酶1 APE1去除了NEIL1产生的单链断裂处的3-磷酸残基。明显的动力学参数表明NEIL1高效切除MA。与这些结果一致,缺少APE1和/或NEIL1的HeLa细胞对8-MOPUVA暴露变得高度敏感。此外,我们证明NEIL1,Fpg和Nei蛋白的细菌同源物也切除MA。 Fpg / Nei蛋白家族的新底物特异性为ICL和庞大的DNA损伤提供了另一种修复途径。

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