Biomedical Research Centre, School of Environment and Life Sciences, Peel Building, University of Salford, Salford, M5 4NT, UK.
Chemical Biology, Diagnostics and Therapeutics Group, Chemistry Faculty, University of Southampton, Southampton, SO17 1BJ, UK.
Genes (Basel). 2019 Apr 23;10(4):315. doi: 10.3390/genes10040315.
Endonuclease VIII-like (NEIL) 1 and 3 proteins eliminate oxidative DNA base damage and psoralen DNA interstrand crosslinks through initiation of base excision repair. Current evidence points to a DNA replication associated repair function of NEIL1 and NEIL3, correlating with induced expression of the proteins in S/G2 phases of the cell cycle. However previous attempts to express and purify recombinant human NEIL3 in an active form have been challenging. In this study, both human NEIL1 and NEIL3 have been expressed and purified from , and the DNA glycosylase activity of these two proteins confirmed using single- and double-stranded DNA oligonucleotide substrates containing the oxidative bases, 5-hydroxyuracil, 8-oxoguanine and thymine glycol. To determine the biochemical role that NEIL1 and NEIL3 play during DNA replication, model replication fork substrates were designed containing the oxidized bases at one of three specific sites relative to the fork. Results indicate that whilst specificity for 5- hydroxyuracil and thymine glycol was observed, NEIL1 acts preferentially on double-stranded DNA, including the damage upstream to the replication fork, whereas NEIL3 preferentially excises oxidized bases from single stranded DNA and within open fork structures. Thus, NEIL1 and NEIL3 act in concert to remove oxidized bases from the replication fork.
内切核酸酶 VIII 样蛋白 1 和 3 通过启动碱基切除修复来消除氧化 DNA 碱基损伤和补骨脂素 DNA 链间交联。目前的证据表明,NEIL1 和 NEIL3 具有与 DNA 复制相关的修复功能,与细胞周期 S/G2 期蛋白的诱导表达相关。然而,以前尝试以活性形式表达和纯化重组人 NEIL3 一直具有挑战性。在这项研究中,我们从 中表达和纯化了人 NEIL1 和 NEIL3,并使用含有氧化碱基 5-羟尿嘧啶、8-氧鸟嘌呤和胸腺嘧啶二醇的单链和双链 DNA 寡核苷酸底物证实了这两种蛋白质的 DNA 糖苷酶活性。为了确定 NEIL1 和 NEIL3 在 DNA 复制过程中发挥的生化作用,我们设计了含有氧化碱基的模型复制叉底物,相对于复制叉,这些氧化碱基位于三个特定位置之一。结果表明,虽然观察到了对 5-羟尿嘧啶和胸腺嘧啶二醇的特异性,但 NEIL1 优先作用于双链 DNA,包括复制叉上游的损伤,而 NEIL3 则优先从单链 DNA 和开放叉结构中切除氧化碱基。因此,NEIL1 和 NEIL3 协同作用从复制叉上去除氧化碱基。