Biomedical Research Centre, Cockcroft Building, University of Salford, Salford, M5 4NT, UK.
Ecole Pratique des Hautes Etudes, Paris, France Laboratoire de Génétique Oncologique EPHE, INSERM U753, Villejuif, France; Faculté de Médecine, Université Paris-Sud, Kremlin-Bicêtre, France.
Sci Rep. 2017 Dec 12;7(1):17438. doi: 10.1038/s41598-017-17693-4.
Interstrand cross-links (ICLs) are highly cytotoxic DNA lesions that block DNA replication and transcription by preventing strand separation. Previously, we demonstrated that the bacterial and human DNA glycosylases Nei and NEIL1 excise unhooked psoralen-derived ICLs in three-stranded DNA via hydrolysis of the glycosidic bond between the crosslinked base and deoxyribose sugar. Furthermore, NEIL3 from Xenopus laevis has been shown to cleave psoralen- and abasic site-induced ICLs in Xenopus egg extracts. Here we report that human NEIL3 cleaves psoralen-induced DNA-DNA cross-links in three-stranded and four-stranded DNA substrates to generate unhooked DNA fragments containing either an abasic site or a psoralen-thymine monoadduct. Furthermore, while Nei and NEIL1 also cleave a psoralen-induced four-stranded DNA substrate to generate two unhooked DNA duplexes with a nick, NEIL3 targets both DNA strands in the ICL without generating single-strand breaks. The DNA substrate specificities of these Nei-like enzymes imply the occurrence of long uninterrupted three- and four-stranded crosslinked DNA-DNA structures that may originate in vivo from DNA replication fork bypass of an ICL. In conclusion, the Nei-like DNA glycosylases unhook psoralen-derived ICLs in various DNA structures via a genuine repair mechanism in which complex DNA lesions can be removed without generation of highly toxic double-strand breaks.
链间交联(ICLs)是高度细胞毒性的 DNA 损伤,通过阻止链分离来阻止 DNA 复制和转录。以前,我们证明了细菌和人类 DNA 糖苷酶 Nei 和 NEIL1 通过水解交联碱基和脱氧核糖糖之间的糖苷键,从三链 DNA 中切除未钩住的补骨脂素衍生的 ICL。此外,来自非洲爪蟾的 NEIL3 已被证明可在非洲爪蟾卵提取物中切割补骨脂素和碱基缺失诱导的 ICL。在这里,我们报告人类 NEIL3 可在三链和四链 DNA 底物中切割补骨脂素诱导的 DNA-DNA 交联,生成未钩住的 DNA 片段,其中包含碱基缺失或补骨脂素-胸腺嘧啶单加合物。此外,虽然 Nei 和 NEIL1 也可切割补骨脂素诱导的四链 DNA 底物,生成带有缺口的两个未钩住的 DNA 双链体,但 NEIL3 不产生单链断裂即可靶向 ICL 中的两条 DNA 链。这些 Nei 样酶的 DNA 底物特异性表明存在长而不间断的三链和四链交联 DNA-DNA 结构,这些结构可能源自体内 ICL 绕过 DNA 复制叉。总之,Nei 样 DNA 糖苷酶通过一种真正的修复机制,在各种 DNA 结构中解开补骨脂素衍生的 ICL,在此过程中可以去除复杂的 DNA 损伤,而不会产生高度毒性的双链断裂。