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胸苷酸合成酶与5-硝基-2'-脱氧尿苷酸的相互作用。

Interaction of thymidylate synthetase with 5-nitro-2'-deoxyuridylate.

作者信息

Wataya Y, Matsuda A, Santi D V

出版信息

J Biol Chem. 1980 Jun 25;255(12):5538-44.

PMID:6769917
Abstract

5-Nitro-2'-deoxyuridylate (NO2dUMP) is a potent mechanism-based inhibitor of dTMP synthetase. After formation of a reversible enzymeìnhibitor complex, there is a rapid first order loss of enzyme activity which can be protected against by the nucleotide substrate dUMP. From studies of model chemical counterparts and the NO2dUMPdTMP synthetase complex, it has been demonstrated that a covalent bond is formed between a nucleophile of the enzyme and carbon 6 of NO2dUMP. The covalent NO2dUMPènzyme complex is sufficiently stable to permit isolation on nitrocellulose membranes, and dissociates to give unchanged NO2-dUMP with a first order rate constant of 8.9 x 10(-3) min-1. Dissociation of the complex formed with [6-3H]NO2dUMP shows a large alpha-secondary isotope effect of 19%, verifying that within the covalent complex, carbon 6 of the heterocycle is sp3-hybridized. The spectral changes which accompany formation of the NO2dUMPènzyme complex support the structural assignment and, when used to tritrate the binding sites, demonstrate that 2 mol of NO2dUMP are bound/mol of dimeric enzyme. The interaction of NO2dUMP with dTMP synthetase is quite different than that of other mechanism-based inhibitors such as 5-fluoro-2'-deoxyuridylate in that it neither requires nor is facilitated by the concomitant interaction of the folate cofactor, 5,10-CH2-H4folate, and that the covalent complex formed is unstable to protein denaturants.

摘要

5-硝基-2'-脱氧尿苷酸(NO2dUMP)是一种基于机制的胸苷酸合成酶强效抑制剂。在形成可逆的酶-抑制剂复合物后,酶活性会快速一级丧失,而核苷酸底物dUMP可对其起到保护作用。通过对模型化学类似物和NO2dUMP-胸苷酸合成酶复合物的研究表明,在酶的亲核试剂与NO2dUMP的碳6之间形成了共价键。共价的NO2dUMP-酶复合物足够稳定,能够在硝酸纤维素膜上分离,并且会解离生成未改变的NO2-dUMP,一级速率常数为8.9×10⁻³ min⁻¹。用[6-³H]NO2dUMP形成的复合物的解离显示出19%的大α-二级同位素效应,证实了在共价复合物中,杂环的碳6是sp³杂化的。伴随NO2dUMP-酶复合物形成的光谱变化支持了结构归属,并且当用于滴定结合位点时,表明每摩尔二聚体酶结合2摩尔的NO2dUMP。NO2dUMP与胸苷酸合成酶的相互作用与其他基于机制的抑制剂(如5-氟-2'-脱氧尿苷酸)有很大不同,因为它既不需要叶酸辅因子5,10-CH₂-H₄叶酸的伴随相互作用来促进,也不受其促进,并且形成的共价复合物对蛋白质变性剂不稳定。

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