Suppr超能文献

大肠杆菌UDP-半乳糖4-差向异构酶与UDP-糖结合的结构分析。

Structural analysis of UDP-sugar binding to UDP-galactose 4-epimerase from Escherichia coli.

作者信息

Thoden J B, Hegeman A D, Wesenberg G, Chapeau M C, Frey P A, Holden H M

机构信息

Institute for Enzyme Research, College of Agricultural and Life Sciences, University of Wisconsin-Madison 53705, USA.

出版信息

Biochemistry. 1997 May 27;36(21):6294-304. doi: 10.1021/bi970025j.

Abstract

UDP-galactose 4-epimerase from Escherichia coli catalyzes the interconversion of UDP-galactose and UDP-glucose through the transient reduction of the tightly bound cofactor NAD+. The enzyme is unique among the NAD+-dependent enzymes in that it promotes stereospecific reduction of the cofactor but nonstereospecific hydride return during normal catalysis. In addition to hydride transfer, the reaction mechanism of epimerase involves two key features: the abstraction of a proton from the 4'-hydroxyl group of glucose or galactose by an active site base and the rotation of a 4-ketopyranose intermediate in the active site pocket. To address the second issue of movement within the active site, the X-ray structures of reduced epimerase complexed with UDP-mannose, UDP-4-deoxy-4-fluoro-alpha-D-galactose, or UDP-4-deoxy-4-fluoro-alpha-D-glucose have been determined and refined to 1.65, 1.8, and 1.65 A resolution, respectively. A comparison of these models to that of the previously determined epimerase/NADH/UDP-glucose abortive complex reveals that the active site accommodates the various sugars by simple rearrangements of water molecules rather than by large changes in side chain conformations. In fact, the polypeptide chains for all of the epimerase/NADH/UDP-sugar complexes studied thus far are remarkably similar and can be superimposed with root-mean-square deviations of not greater than 0.24 A. The only significant differences between the various enzyme/UDP-sugar models occur in two of the dihedral angles defining the conformation of the UDP-sugar ligands.

摘要

来自大肠杆菌的UDP-半乳糖4-差向异构酶通过紧密结合的辅因子NAD+的瞬时还原催化UDP-半乳糖和UDP-葡萄糖的相互转化。该酶在依赖NAD+的酶中是独特的,因为它在正常催化过程中促进辅因子的立体特异性还原,但氢化物返回是非立体特异性的。除了氢化物转移外,差向异构酶的反应机制还涉及两个关键特征:活性位点碱基从葡萄糖或半乳糖的4'-羟基提取一个质子,以及活性位点口袋中4-酮吡喃糖中间体的旋转。为了解决活性位点内运动的第二个问题,已确定与UDP-甘露糖、UDP-4-脱氧-4-氟-α-D-半乳糖或UDP-4-脱氧-4-氟-α-D-葡萄糖复合的还原差向异构酶的X射线结构,并分别精修至1.65、1.8和1.65 Å的分辨率。将这些模型与先前确定的差向异构酶/NADH/UDP-葡萄糖流产复合物的模型进行比较,结果表明活性位点通过水分子的简单重排来容纳各种糖,而不是通过侧链构象的大变化。事实上,迄今为止研究的所有差向异构酶/NADH/UDP-糖复合物的多肽链非常相似,并且可以以不大于0.24 Å的均方根偏差进行叠加。各种酶/UDP-糖模型之间唯一显著的差异发生在定义UDP-糖配体构象的两个二面角中。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验