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A Study on the Active site of Glucoamylase from Aspergillus shirousamii

机译:shirousamii曲霉葡糖淀粉酶活性位点的研究

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Glucoamylase was inactivated with 1-ethyl-2-(dimethylaminopropyl)carbodiimide (EDC) at pH 5.0. Time course of inactivation of glucoamylase was at least biphasic. From the results of the titration of SH groups with Ellman`s reagent and hydroxylamine treatment at pH 7.0, it was concluded that the crucial sites of modification were carboxyl groups of glucoamylase. The CD spectrum of EDC-modified glucoamylase suggested that the gross conformation of the native enzyme was retained. The inactivation of glucoamylase was reduced remarkably in the presence of maltose. The logarithm of the half-life of the inactivation of glucoamylase by EDC was a linear function of log[EDC] in each stage indicating that one carboxyl group among the modified ones was crucial for inactivation of glucoamylase. The change in the binding affinity due to modification was determined by using an affinity column. It indicates that the carboxyl group of glucoamylase seems to play a role in both, the catalysis and substrate binding in the first stage, but in the second stage the binding affinity is recovered almost up to that of native enzyme.
机译:在pH 5.0用1-乙基-2-(二甲基氨基丙基)碳二亚胺(EDC)灭活葡糖淀粉酶。葡糖淀粉酶失活的时间过程至少是双相的。从用Ellman试剂滴定SH基团和在pH 7.0下羟胺处理的结果可以得出结论,修饰的关键部位是葡糖淀粉酶的羧基。 EDC修饰的葡糖淀粉酶的CD光谱表明保留了天然酶的总体构象。在麦芽糖的存在下,葡糖淀粉酶的失活显着减少。 EDC灭活淀粉淀粉酶的半衰期的对数是每个阶段中log [EDC]的线性函数,表明修饰的羧基中的一个羧基对于灭活淀粉淀粉酶至关重要。通过使用亲和力列确定由于修饰引起的结合亲和力的变化。这表明在第一阶段,葡糖淀粉酶的羧基似乎在催化和底物结合中都起作用,但是在第二阶段,结合亲和力几乎恢复到天然酶的结合亲和力。

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