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探究D-木糖异构酶活性位点残基的作用。

Probing the roles of active site residues in D-xylose isomerase.

作者信息

Whitaker R D, Cho Y, Cha J, Carrell H L, Glusker J P, Karplus P A, Batt C A

机构信息

Department of Food Science, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Biol Chem. 1995 Sep 29;270(39):22895-906. doi: 10.1074/jbc.270.39.22895.

Abstract

The roles of active site residues His54, Phe94, Lys183, and His220 in the Streptomyces rubiginosus D-xylose isomerase were probed by site-directed mutagenesis. The kinetic properties and crystal structures of the mutant enzymes were characterized. The pH dependence of diethylpyrocarbonate modification of His54 suggests that His54 does not catalyze ring-opening as a general acid. His54 appears to be involved in anomeric selection and stabilization of the acyclic transition state by hydrogen bonding. Phe94 stabilizes the acyclic-extended transition state directly by hydrophobic interactions and/or indirectly by interactions with Trp137 and Phe26. Lys183 and His220 mutants have little or no activity and the structures of these mutants with D-xylose reveal cyclic alpha-D-xylopyranose. Lys183 functions structurally by maintaining the position of Pro187 and Glu186 and catalytically by interacting with acyclic-extended sugars. His220 provides structure for the M2-metal binding site with properties which are necessary for extension and isomerization of the substrate. A second M2 metal binding site (M2') is observed at a relatively lower occupancy when substrate is added consistent with the hypothesis that the metal moves as the hydride is shifted on the extended substrate.

摘要

通过定点诱变探究了链霉菌D - 木糖异构酶中活性位点残基His54、Phe94、Lys183和His220的作用。对突变酶的动力学性质和晶体结构进行了表征。His54的焦碳酸二乙酯修饰的pH依赖性表明His54不作为一般酸催化开环。His54似乎通过氢键参与异头物选择和无环过渡态的稳定。Phe94通过疏水相互作用直接稳定无环伸展过渡态和/或通过与Trp137和Phe26的相互作用间接稳定。Lys183和His220突变体几乎没有或没有活性,这些突变体与D - 木糖形成了环状α - D - 吡喃木糖结构。Lys183在结构上通过维持Pro187和Glu186的位置起作用,在催化上通过与无环伸展糖相互作用起作用。His220为M2 - 金属结合位点提供结构,该结构对于底物的延伸和异构化是必需的。当添加底物时,观察到第二个M2金属结合位点(M2')占有率相对较低,这与金属随着氢化物在延伸底物上移动的假设一致。

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