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Synthesis DNA Polymerase Incorporation and Enzymatic Phosphate Hydrolysis of Formamidopyrimidine Nucleoside Triphosphates

机译:甲酰胺基嘧啶核苷三磷酸的合成DNA聚合酶掺入和酶促磷酸水解。

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摘要

The nucleoside triphosphates of N6-(2-deoxy-α,β-d-erythro-pentofuranosyl)-2,6-diamino-4-hydroxy-5-formamidopyrimidine (Fapy·dGTP) and its C-nucleoside analogue (β-C-Fapy·dGTP) were synthesized. The lability of the formamide group required that nucleoside triphosphate formation be carried out using an umpolung strategy in which pyrophosphate was activated toward nucleophilic attack. The Klenow fragment of DNA polymerase I from Escherichia coli accepted Fapy·dGTP and β-C-Fapy·dGTP as substrates much less efficiently than it did dGTP. Subsequent extension of a primer containing either modified nucleotide was less affected compared to when the native nucleotide is present at the 3′-terminus. The specificity constants are sufficiently large that nucleoside triphosphate incorporation could account for the level of Fapy·dG observed in cells if 1% of the dGTP pool is converted to Fapy·dGTP. Similarly, polymerase-mediated introduction of β-C-Fapy·dG could be useful for incorporating useful amounts of this nonhydrolyzable analogue for use as an inhibitor of base excision repair. The kinetic viability of these processes is enhanced by inefficient hydrolysis of Fapy·dGTP and β-C-Fapy·dGTP by MutT, the E. coli enzyme that releases pyrophosphate and the corresponding nucleoside monophosphate upon reaction with structurally related nucleoside triphosphates.
机译:N6-(2-脱氧-α,β-d-赤型戊呋喃糖基)-2,6-二氨基-4-羟基-5-甲酰胺基嘧啶(Fapy·dGTP)的核苷三磷酸及其C-核苷类似物(β-C -Fapy·dGTP)被合成。甲酰胺基团的不稳定性要求使用可将焦磷酸盐活化为亲核攻击的物质转运策略来形成三磷酸核苷。大肠杆菌DNA聚合酶I的Klenow片段接受Fapy·dGTP和β-C-Fapy·dGTP作为底物的效率比dGTP低得多。与当天然核苷酸存在于3'末端时相比,包含任一经修饰的核苷酸的引物的后续延伸受到的影响较小。特异性常数足够大,如果将1%的dGTP池转化为Fapy·dGTP,三核苷的掺入可解释细胞中Fapy·dG的水平。类似地,聚合酶介导的β-C-Fapy·dG的导入可用于掺入有用量的这种不可水解的类似物,用作碱基切除修复的抑制剂。通过与结构相关的核苷三磷酸反应后释放焦磷酸和相应核苷单磷酸的大肠埃希菌MutT水解Fapy·dGTP和β-C-Fapy·dGTP不能有效地水解这些过程的动力学可行性。

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