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Cellular zwitterionic metabolite analogs simultaneously enhance reaction rate, thermostability, salt tolerance, and substrate specificity of alpha-glucosidase.

机译:细胞两性离子代谢物类似物可同时提高反应速度,热稳定性,耐盐性和α-葡萄糖苷酶的底物特异性。

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摘要

We investigated the structural effects of metabolite analogs derived from a naturally-occurring zwitterionic metabolite, glycine betaine, on the activity of several hydrolases. The initial velocities of the hydrolases were enhanced by the addition of the solutes into the buffer solution. Based on a detailed study using alpha-glucosidases, the acceleration efficiency of the enzymatic activity was strongly induced by solutes possessing bulky and aliphatic ammonium cations, indicating that enhancement of activity by the solutes depended on their chemical structures. Kinetic analysis revealed that the acceleration of the hydrolysis reaction was related to both the decrement of K(m) and increment of V(max) values. Furthermore, the addition of the metabolite analogs enhanced not only the rate constant but also the thermostability, salt tolerance, and substrate specificity of alpha-glucosidase simultaneously through the reduction of conformational perturbation of the enzyme.
机译:我们研究了天然存在的两性离子代谢产物甘氨酸甜菜碱的代谢类似物对几种水解酶活性的结构影响。通过将溶质添加到缓冲液中来提高水解酶的初始速度。基于使用α-葡萄糖苷酶的详细研究,酶活性的加速效率是由具有庞大和脂肪族铵阳离子的溶质强烈诱导的,表明溶质对活性的增强取决于其化学结构。动力学分析表明,水解反应的加速与K(m)的减少和V(max)值的增加有关。此外,通过减少酶的构象扰动,代谢物类似物的添加不仅增强了速率常数,而且还增强了α-葡萄糖苷酶的热稳定性,耐盐性和底物特异性。

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