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通过定点诱变对酵母转酮醇酶中硫胺素二磷酸结合位点的研究。

Examination of the thiamin diphosphate binding site in yeast transketolase by site-directed mutagenesis.

作者信息

Meshalkina L, Nilsson U, Wikner C, Kostikowa T, Schneider G

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institute, Stockholm, Sweden.

出版信息

Eur J Biochem. 1997 Mar 1;244(2):646-52. doi: 10.1111/j.1432-1033.1997.t01-1-00646.x.

Abstract

The role of two conserved amino acid residues in the thiamin diphosphate binding site of yeast transketolase has been analyzed by site-directed mutagenesis. Replacement of E162, which is part of a cluster of glutamic acid residues at the subunit interface, by alanine or glutamine results in mutant enzymes with most catalytic properties similar to wild-type enzyme. The two mutant enzymes show, however, significant increases in the K0.5 values for thiamin diphosphate in the absence of substrate and in the lag of the reaction progress curves. This suggests that the interaction of E162 with residue E418, and possibly E167, from the second subunit is important for formation and stabilization of the transketolase dimer. Replacement of the conserved residue D382, which is buried upon binding of thiamin diphosphate, by asparagine and alanine, results in mutant enzymes severely impaired in thiamin diphosphate binding and catalytic efficiency. The 25-80-fold increase in K0.5 for thiamin diphosphate suggests that D382 is involved in cofactor binding, probably by electrostatic compensation of the positive charge of the thiazolium ring and stabilization of a flexible loop at the active site. The decrease in catalytic activities in the D382 mutants indicates that this residue might also be important in subsequent steps in catalysis.

摘要

通过定点诱变分析了酵母转酮醇酶硫胺素二磷酸结合位点中两个保守氨基酸残基的作用。位于亚基界面谷氨酸残基簇中的E162被丙氨酸或谷氨酰胺取代后,产生的突变酶的大多数催化特性与野生型酶相似。然而,这两种突变酶在无底物时硫胺素二磷酸的K0.5值以及反应进程曲线的延迟方面均显著增加。这表明E162与来自第二个亚基的E418残基(可能还有E167)之间的相互作用对于转酮醇酶二聚体的形成和稳定很重要。将在硫胺素二磷酸结合时被掩埋的保守残基D382分别用天冬酰胺和丙氨酸取代后,产生的突变酶在硫胺素二磷酸结合和催化效率方面严重受损。硫胺素二磷酸的K0.5增加25至80倍表明D382参与辅因子结合,可能是通过对噻唑鎓环正电荷的静电补偿以及稳定活性位点的一个柔性环来实现。D382突变体催化活性的降低表明该残基在催化的后续步骤中可能也很重要。

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