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来自大肠杆菌的UDP-半乳糖4-差向异构酶对UDP-半乳糖和UDP-葡萄糖的结合存在显著差异。

Dramatic differences in the binding of UDP-galactose and UDP-glucose to UDP-galactose 4-epimerase from Escherichia coli.

作者信息

Thoden J B, Holden H M

机构信息

Department of Biochemistry, University of Wisconsin-Madison 53705, USA.

出版信息

Biochemistry. 1998 Aug 18;37(33):11469-77. doi: 10.1021/bi9808969.

Abstract

UDP-galactose 4-epimerase catalyzes the interconversion of UDP-galactose and UDP-glucose during normal galactose metabolism. Within recent years the enzyme from Escherichia coli has been studied extensively by both biochemical and X-ray crystallographic techniques. One of several key features in the catalytic mechanism of the enzyme involves the putative rotation of a 4'-ketopyranose intermediate within the active site region. The mode of binding of UDP-glucose to epimerase is well understood on the basis of previous high-resolution X-ray crystallographic investigations from this laboratory with an enzyme/NADH/UDP-glucose abortive complex. Attempts to prepare an enzyme/NADH/UDP-galactose abortive complex always failed, however, in that UDP-glucose rather than UDP-galactose was observed binding in the active site. In an effort to prepare an abortive complex with UDP-galactose, a site-directed mutant protein was constructed in which Ser 124 and Tyr 149, known to play critical roles in catalysis, were substituted with alanine and phenylalanine residues, respectively. With this double mutant it was possible to crystallize and solve the three-dimensional structures of reduced epimerase in the presence of UDP-glucose or UDP-galactose to high resolution. This study represents the first direct observation of UDP-galactose binding to epimerase and lends strong structural support for a catalytic mechanism in which there is free rotation of a 4'-ketopyranose intermediate within the active site cleft of the enzyme.

摘要

UDP-半乳糖4-差向异构酶在正常半乳糖代谢过程中催化UDP-半乳糖和UDP-葡萄糖的相互转化。近年来,来自大肠杆菌的这种酶已通过生化和X射线晶体学技术进行了广泛研究。该酶催化机制的几个关键特征之一涉及活性位点区域内假定的4'-酮吡喃糖中间体的旋转。基于本实验室先前对酶/NADH/UDP-葡萄糖流产复合物的高分辨率X射线晶体学研究,UDP-葡萄糖与差向异构酶的结合模式已得到很好的理解。然而,制备酶/NADH/UDP-半乳糖流产复合物的尝试总是失败,因为观察到在活性位点结合的是UDP-葡萄糖而不是UDP-半乳糖。为了制备与UDP-半乳糖的流产复合物,构建了一种定点突变蛋白,其中已知在催化中起关键作用的Ser 124和Tyr 149分别被丙氨酸和苯丙氨酸残基取代。利用这种双突变体,可以在存在UDP-葡萄糖或UDP-半乳糖的情况下结晶并解析还原型差向异构酶的三维结构,分辨率很高。这项研究首次直接观察到UDP-半乳糖与差向异构酶的结合,并为一种催化机制提供了有力的结构支持,即在该酶的活性位点裂隙内4'-酮吡喃糖中间体可自由旋转。

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