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人类内样蛋白NEIL3具有对单链DNA特异的AP裂解酶活性,并赋予大肠杆菌突变体氧化应激抗性。

Human Nei-like protein NEIL3 has AP lyase activity specific for single-stranded DNA and confers oxidative stress resistance in Escherichia coli mutant.

作者信息

Takao Masashi, Oohata Yoshitsugu, Kitadokoro Kengo, Kobayashi Kumiko, Iwai Shigenori, Yasui Akira, Yonei Shuji, Zhang Qiu-Mei

机构信息

Department of Molecular Genetics, Institute of Development, Aging and Cancer, Tohoku University, Aoba-ku, Sendai, Japan.

出版信息

Genes Cells. 2009 Feb;14(2):261-70. doi: 10.1111/j.1365-2443.2008.01271.x. Epub 2008 Jan 15.

Abstract

Oxidative base damage leads to alteration of genomic information and is implicated as a cause of aging and carcinogenesis. To combat oxidative damage to DNA, cells contain several DNA glycosylases including OGG1, NTH1 and the Nei-like proteins, NEIL1 and NEIL2. A third Nei-like protein, NEIL3, is composed of an amino-terminal Nei-like domain and an unknown carboxy-terminal domain. In contrast to the other well-described DNA glycosylases, the DNA glycosylase activity and in vivo repair function of NEIL3 remains unclear. We show here that the structural modeling of the putative NEIL3 glycosylase domain (1-290) fits well to the known Escherichia coli Fpg crystal structure. In spite of the structural similarity, the recombinant NEIL3 and NEIL3(1-290) proteins do not cleave any of several test oligonucleotides containing a single modified base. Within the substrates, we detected AP lyase activity for single-stranded (ss) DNA but double-stranded (ds) DNA. The activity is abrogated completely in mutants with an amino-terminal deletion and at the zinc-finger motif. Surprisingly, NEIL3 partially rescues an E. coli nth nei mutant from hydrogen peroxide sensitivity. Taken together, repair of certain base damage including base loss in ssDNA may be mediated by NEIL3.

摘要

氧化性碱基损伤会导致基因组信息改变,并被认为是衰老和致癌的原因之一。为了对抗DNA的氧化损伤,细胞含有多种DNA糖基化酶,包括OGG1、NTH1以及Nei样蛋白NEIL1和NEIL2。第三种Nei样蛋白NEIL3由一个氨基末端的Nei样结构域和一个未知的羧基末端结构域组成。与其他已详细描述的DNA糖基化酶不同,NEIL3的DNA糖基化酶活性和体内修复功能仍不清楚。我们在此表明,推测的NEIL3糖基化酶结构域(1-290)的结构模型与已知的大肠杆菌Fpg晶体结构非常吻合。尽管结构相似,但重组NEIL3和NEIL3(1-290)蛋白不能切割任何含有单个修饰碱基的测试寡核苷酸。在底物中,我们检测到单链(ss)DNA的AP裂解酶活性,但双链(ds)DNA没有。在氨基末端缺失和锌指基序的突变体中,该活性完全丧失。令人惊讶的是,NEIL可以部分挽救大肠杆菌nth nei突变体对过氧化氢的敏感性。综上所述,包括单链DNA中碱基丢失在内的某些碱基损伤的修复可能由NEIL3介导。

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