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Structural insights into abasic site for Fpg specific binding and catalysis: comparative high-resolution crystallographic studies of Fpg bound to various models of abasic site analogues-containing DNA

机译:Fpg特异性结合和催化的无碱基位点的结构洞察力:Fpg与各种模型的含无碱基位点类似物的DNA结合的高分辨率高分辨率晶体学研究

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摘要

Fpg is a DNA glycosylase that recognizes and excises the mutagenic 8-oxoguanine (8-oxoG) and the potentially lethal formamidopyrimidic residues (Fapy). Fpg is also associated with an AP lyase activity which successively cleaves the abasic (AP) site at the 3′ and 5′ sides by βδ-elimination. Here, we present the high-resolution crystal structures of the wild-type and the P1G defective mutant of Fpg from Lactococcus lactis bound to 14mer DNA duplexes containing either a tetrahydrofuran (THF) or 1,3-propanediol (Pr) AP site analogues. Structures show that THF is less extrahelical than Pr and its backbone C5′–C4′–C3′ diverges significantly from those of Pr, rAP, 8-oxodG and FapydG. Clearly, the heterocyclic oxygen of THF is pushed back by the carboxylate of the strictly conserved E2 residue. We can propose that the ring-opened form of the damaged deoxyribose is the structure active form of the sugar for Fpg catalysis process. Both structural and functional data suggest that the first step of catalysis mediated by Fpg involves the expulsion of the O4′ leaving group facilitated by general acid catalysis (involving E2), rather than the immediate cleavage of the N-glycosic bond of the damaged nucleoside.
机译:Fpg是一种DNA糖基化酶,可识别并切除诱变的8-氧代鸟嘌呤(8-oxoG)和可能致命的甲酰胺基嘧啶残基(Fapy)。 Fpg还与AP裂解酶活性相关,该AP裂解酶活性通过βδ消除连续地切割3'和5'侧的无碱基(AP)位点。在这里,我们提出高分辨率的野生型和P1G有缺陷的Fpg突变体的乳酸乳球菌的晶体结构绑定到包含四氢呋喃(THF)或1,3-丙二醇(Pr)AP位点类似物的14mer DNA双链体。结构表明,THF比Pr少螺旋,其主链C5'–C4'–C3'与Pr,rAP,8-oxodG和FapydG明显不同。显然,THF的杂环氧被严格保守的E2残基的羧酸盐推回。我们可以提出,受损的脱氧核糖的开环形式是用于Fpg催化过程的糖的结构活性形式。结构和功能数据均表明,由Fpg介导的催化的第一步涉及普通酸催化(涉及E2)促进的O4'离开基团的排出,而不是立即裂解受损核苷的N-糖键。

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