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首页> 外文期刊>Biochemistry >Primary C-13 and beta-secondary H-2 KIEs for trans-sialidase. A snapshot of nucleophilic participation during catalysis
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Primary C-13 and beta-secondary H-2 KIEs for trans-sialidase. A snapshot of nucleophilic participation during catalysis

机译:反唾液酸酶的一级C-13和二级βH-2 KIE。催化过程中亲核参与的快照

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Trypanosoma cruzi trans-sialidase catalyzes a novel reaction that involves the transfer of sialic acid between host and parasite glycoconjugates. In this paper, we report kinetic isotope effect studies on recombinant trans-sialidase. beta-Dideuterium and primary C-13 isotope effects were measured for a good substrate, sialyl-lactose, and a slow substrate, sialyl-galactose, in both acid-catalyzed solvolysis and enzymatic transfer reactions. The beta-dideuterium isotope effect for sialyl-lactose in the acid hydrolysis reaction was 1.113 +/- 0.012, The primary C-13 isotope effects for hydrolysis of sialyl-lactose and sialyl-galactose were 1.016 +/- 0.011 and 1.015 +/- 0.008, respectively. III the enzymatic transfer reactions, the B-dideuterium and primary C-13 effects for sialyl-galactose were 1.060 +/- 0.008 and 1.032 +/- 0.008, respectively. The isotope effects for hydrolysis describe a dissociative S(N)1-like mechanism, and these data are contrasted by the data for the enzyme-catalyzed reaction. The enzymatic deuterium isotope effects are lower by a factor of 2, but the primary carbon isotope effects are higher by a factor of 2. This pattern describes a mechanism involving nucleophilic participation in the rate-determining transition state. [References: 76]
机译:克鲁氏锥虫转唾液酸酶催化一种新型反应,该反应涉及唾液酸在宿主和寄生虫糖缀合物之间的转移。在本文中,我们报告了对重组反式唾液酸酶的动力学同位素效应研究。在酸催化的溶剂分解和酶促转移反应中,测定了良好的底物唾液酸-乳糖和慢速的底物唾液酸-半乳糖的β-二氘和主要的C-13同位素效应。酸水解反应中唾液酸基-乳糖的β-二氘同位素效应为1.113 +/- 0.012,水解唾液酸基-乳糖和唾液酸基-半乳糖的主要C-13同位素效应为1.016 +/- 0.011和1.015 +/-分别为0.008 III。酶促转移反应,唾液酸半乳糖的B-二氘和主要的C-13作用分别为1.060 +/- 0.008和1.032 +/- 0.008。水解的同位素效应描述了解离的S(N)1样机制,这些数据与酶催化反应的数据形成对比。酶的氘同位素效应降低了2倍,而初级碳同位素效应升高了2倍。该模式描述了亲核参与速率决定过渡态的机制。 [参考:76]

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