首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Nucleotide pyrophosphatase employs a P-loop-like motif to enhance catalytic power and NDP/NTP discrimination
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Nucleotide pyrophosphatase employs a P-loop-like motif to enhance catalytic power and NDP/NTP discrimination

机译:核苷酸焦磷酸酶采用P环样基序来增强催化能力和NDP / NTP区分

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摘要

We investigated the potential (d)NDP/(d)NTP discrimination mechanisms in nucleotide pyrophosphatases. Here, we report that dUTPase, an essential nucleotide pyrophosphatase, uses a C-terminal P-loop-like sequence in a unique mechanism for substrate discrimination and efficient hydrolysis. Our spectroscopy and transient kinetics results on human dUTPase mutants combined with previous structural studies indicate that (i) H-bond interactions between the γ-phosphate and the P-loop-like motif V promote the catalytically competent conformation of the reaction center at the α-phosphate group; (ii) these interactions accelerate the chemical step of the kinetic cycle and that (iii) hydrolysis occurs very slowly or not at all in the absence of the γ-phosphate—motif V interactions, i.e., in dUDP, dUDP.BeFx, or in the motif V-deleted mutant. The physiological role of dUTPase is to set cellular dUTP∶dTTP ratios and prevent injurious uracil incorporation into DNA. Based upon comparison with related pyrophosphate generating (d)NTPases, we propose that the unusual use of a P-loop-like motif enables dUTPases to achieve efficient catalysis of dUTP hydrolysis and efficient discrimination against dUDP at the same time. These specifics might have been advantageous on the appearance of uracil-DNA repair. The similarities and differences between dUTPase motif V and the P-loop (or Walker A sequence) commonly featured by ATP- and GTPases offer insight into functional adaptation to various nucleotide hydrolysis tasks.
机译:我们调查了核苷酸焦磷酸酶中潜在的(d)NDP /(d)NTP区分机制。在这里,我们报告dUTPase,一种必不可少的核苷酸焦磷酸酶,在独特的机制中使用C末端P环样序列进行底物识别和有效水解。我们对人dUTPase突变体的光谱学和瞬态动力学结果与先前的结构研究相结合,表明(i)γ磷酸酯和P环样基序V之间的H键相互作用促进了反应中心在α处的催化能构象-磷酸盐基团; (ii)这些相互作用加速了动力学循环的化学步骤,并且(iii)在不存在γ-磷酸盐-基序V相互作用的情况下,即dUDP,dUDP.BeFx或V基序缺失的突变体。 dUTPase的生理作用是设定细胞的dUTP∶dTTP比例,并防止伤害性尿嘧啶掺入DNA。基于与相关焦磷酸盐生成(d)NTPases的比较,我们提出异常使用P环样基序使dUTPases能够实现dUTP水解的有效催化并同时有效区分dUDP。这些细节在尿嘧啶-DNA修复的外观上可能是有利的。 dUTPase基序V与ATP和GTPases通常具有的P环(或Walker A序列)之间的相似性和差异为深入了解功能适应各种核苷酸水解任务提供了见识。

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