Thoden J B, Frey P A, Holden H M
Institute for Enzyme Research, Graduate School, University of Wisconsin, Madison 53705, USA.
Protein Sci. 1996 Nov;5(11):2149-61. doi: 10.1002/pro.5560051102.
UDP-galactose 4-epimerase from Escherichia coli catalyzes the interconversion of UDP-glucose and UDP-galactose. In recent years, the enzyme has been the subject of intensive investigation due in part to its ability to facilitate nonstereospecific hydride transfer between beta-NADH and a 4-keto hexopyranose intermediate. The first molecular model of the epimerase from E. coli was solved to 2.5 A resolution with crystals grown in the presence of a substrate analogue, UDP-phenol (Bauer AJ, Rayment I, Frey PA, Holden HM, 1992, Proteins Struct Funct Genet 12:372-381). There were concerns at the time that the inhibitor did not adequately mimic the sugar moiety of a true substrate. Here we describe the high-resolution X-ray crystal structure of the ternary complex of UDP-galactose 4-epimerase with NADH and UDP-phenol. The model was refined to 1.8 A resolution with a final overall R-factor of 18.6%. This high-resolution structural analysis demonstrates that the original concerns were unfounded and that, in fact, UDP-phenol and UDP-glucose bind similarly. The carboxamide groups of the dinucleotides, in both subunits, are displaced significantly from the planes of the nicotinamide rings by hydrogen bonding interactions with Ser 124 and Tyr 149. UDP-galactose 4-epimerase belongs to a family of enzymes known as the short-chain dehydrogenases, which contain a characteristic Tyr-Lys couple thought to be important for catalysis. The epimerase/NADH/UDP-phenol model presented here represents a well-defined ternary complex for this family of proteins and, as such, provides important information regarding the possible role of the Tyr-Lys couple in the reaction mechanism.
来自大肠杆菌的UDP - 半乳糖4 - 表异构酶催化UDP - 葡萄糖和UDP - 半乳糖的相互转化。近年来,该酶一直是深入研究的对象,部分原因是它能够促进β - NADH和4 - 酮己吡喃糖中间体之间的非立体特异性氢化物转移。在存在底物类似物UDP - 苯酚的情况下生长晶体,将来自大肠杆菌的表异构酶的第一个分子模型解析到2.5 Å分辨率(鲍尔AJ、雷门特I、弗雷PA、霍尔登HM,1992年,《蛋白质结构、功能与遗传学》12:372 - 381)。当时有人担心该抑制剂不能充分模拟真实底物的糖部分。在此我们描述了UDP - 半乳糖4 - 表异构酶与NADH和UDP - 苯酚的三元复合物的高分辨率X射线晶体结构。该模型被精修到1.8 Å分辨率,最终整体R因子为18.6%。这种高分辨率结构分析表明最初的担忧是没有根据的,事实上,UDP - 苯酚和UDP - 葡萄糖的结合方式相似。在两个亚基中,二核苷酸的羧酰胺基团通过与Ser 124和Tyr 149的氢键相互作用而显著偏离烟酰胺环平面。UDP - 半乳糖4 - 表异构酶属于一类被称为短链脱氢酶的酶家族,该家族含有一个被认为对催化作用很重要的特征性Tyr - Lys对。这里展示的表异构酶/NADH/UDP - 苯酚模型代表了该蛋白家族一个明确的三元复合物,因此提供了关于Tyr - Lys对在反应机制中可能作用的重要信息。