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Interaction between Trehalose and MTHase from Sulfolobus solfataricus Studied by Theoretical Computation and Site-Directed Mutagenesis

机译:理论计算和定点诱变研究Sulfolobus solfataricus海藻糖与MTHase的相互作用

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摘要

Maltooligosyltrehalose trehalohydrolase (MTHase) catalyzes the release of trehalose by cleaving the α-1,4-glucosidic linkage next to the α-1,1-linked terminal disaccharide of maltooligosyltrehalose. Computer simulation using the hydrogen bond analysis, free energy decomposition, and computational alanine scanning were employed to investigate the interaction between maltooligosyltrehalose and the enzyme. The same residues that were chosen for theoretical investigation were also studied by site-directed mutagenesis and enzyme kinetic analysis. The importance of residues determined either experimentally or computed theoretically were in good accord with each other. It was found that residues Y155, D156, and W218 of subsites -2 and -3 of the enzyme might play an important role in interacting with the ligand. The theoretically constructed structure of the enzyme-ligand complex was further validated through an ab initio quantum chemical calculation using the Gaussian09 package. The activation energy computed from this latter study was very similar to those reported in literatures for the same type of hydrolysis reactions.
机译:麦芽寡糖基海藻糖海藻糖水解酶(MTHase)通过切割与麦芽寡糖基海藻糖的α-1,1连接的末端二糖相邻的α-1,4-糖苷键来催化海藻糖的释放。使用氢键分析,自由能分解和计算丙氨酸扫描的计算机模拟被用来研究麦芽寡糖基海藻糖和酶之间的相互作用。还通过定点诱变和酶动力学分析研究了选择用于理论研究的相同残基。通过实验或理论计算得出的残基的重要性相互吻合。发现该酶亚位点-2和-3的残基Y155,D156和W218可能在与配体相互作用中起重要作用。通过使用Gaussian09软件包从头进行量子化学计算,进一步验证了酶-配体复合物的理论构建结构。后者的研究计算出的活化能与文献中针对相同类型水解反应的活化能非常相似。

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