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大肠杆菌Fpg蛋白与含苯基(三氟甲基)二氮杂环丙烷基团的DNA双链体的光化学交联

Photochemical cross-linking of Escherichia coli Fpg protein to DNA duplexes containing phenyl(trifluoromethyl)diazirine groups.

作者信息

Taranenko Maria, Rykhlevskaya Anna, Mtchedlidze Manana, Laval Jacques, Kuznetsova Svetlana

机构信息

Laboratory of Nucleic Acids Chemistry, Department of Chemistry, Moscow State University, Moscow, Russia.

出版信息

Eur J Biochem. 2003 Jul;270(14):2945-9. doi: 10.1046/j.1432-1033.2003.03662.x.

Abstract

Formamidopyrimidine-DNA glycosylase (Fpg protein) of Escherichia coli is a DNA repair enzyme that excises oxidized purine bases, most notably the mutagenic 7-hydro-8-oxoguanine, from damaged DNA. In order to identify specific contacts between nucleobases of DNA and amino acids from the E. coli Fpg protein, photochemical cross-linking was employed using new reactive DNA duplexes containing 5-[4-[3-(trifluoromethyl)-3H-diazirin-3-yl]phenyl]-2'-deoxyuridine dU* residues near the 7-hydro-8-oxoguanosine (oxoG) lesion. The Fpg protein was found to bind specifically and tightly to the modified DNA duplexes and to incise them. The nicking efficiency of the DNA duplex containing a dU* residue 5' to the oxoG was higher as compared to oxidized native DNA. The conditions for the photochemical cross-linking of the reactive DNA duplexes and the Fpg protein have been optimized to yield as high as 10% of the cross-linked product. Our results suggest that the Fpg protein forms contacts with two nucleosides, one 5' adjacent to oxoG and the other 5' adjacent to the cytidine residue pairing with oxoG in the other strand. The approaches developed may be applicable to pro- and eukaryotic homologues of the E. coli Fpg protein as well as to other repair enzymes.

摘要

大肠杆菌的甲酰胺基嘧啶 - DNA糖基化酶(Fpg蛋白)是一种DNA修复酶,可从受损DNA中切除氧化的嘌呤碱基,最显著的是诱变的7 - 氢 - 8 - 氧代鸟嘌呤。为了确定DNA的核碱基与大肠杆菌Fpg蛋白的氨基酸之间的特定接触,使用了光化学交联技术,该技术采用了新的反应性DNA双链体,其在7 - 氢 - 8 - 氧代鸟苷(oxoG)损伤附近含有5 - [4 - [3 - (三氟甲基) - 3H - 重氮丙啶 - 3 - 基]苯基] - 2'-脱氧尿苷dU残基。发现Fpg蛋白能特异性且紧密地结合到修饰的DNA双链体上并切割它们。与氧化的天然DNA相比,含有位于oxoG 5'端的dU残基的DNA双链体的切口效率更高。已对反应性DNA双链体和Fpg蛋白的光化学交联条件进行了优化,以产生高达10%的交联产物。我们的结果表明,Fpg蛋白与两个核苷形成接触,一个在oxoG的5'相邻位置,另一个在与另一条链中与oxoG配对的胞嘧啶残基的5'相邻位置。所开发的方法可能适用于大肠杆菌Fpg蛋白的原核和真核同源物以及其他修复酶。

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