Allard Simon T M, Cleland W W, Holden Hazel M
Department of Biochemistry, University of Wisconsin, Madison, WI 53706, USA.
J Biol Chem. 2004 Jan 16;279(3):2211-20. doi: 10.1074/jbc.M310134200. Epub 2003 Oct 21.
Desosamine is a 3-(dimethylamino)-3,4,6-trideoxyhexose found in some macrolide antibiotics. In Streptomyces venezuelae, there are seven genes required for the biosynthesis of this unusual sugar. One of the genes, desIV, codes for a dTDP-glucose 4,6-dehydratase, which is referred to as DesIV. The reaction mechanisms for these types of dehydratases are quite complicated with proton abstraction from the sugar 4'-hydroxyl group and hydride transfer to NAD+, proton abstraction at C-5, and elimination of the hydroxyl group at C-6 of the sugar, and finally return of a proton to C-5 and a hydride from NADH to C-6. Here we describe the cloning, overexpression, and purification, and high resolution x-ray crystallographic analysis to 1.44 A of wild-type DesIV complexed with dTDP. Additionally, for this study, a double site-directed mutant protein (D128N/E129Q) was prepared, crystallized as a complex with NAD+ and the substrate dTDP-glucose and its structure determined to 1.35 A resolution. In DesIV, the phenolate group of Tyr(151) and O(gamma) of Thr(127) lie at 2.7 and 2.6 A, respectively from the 4'-hydroxyl group of the dTDP-glucose substrate. The side chain of Asp(128) is in the correct position to function as a general acid for proton donation to the 6'-hydroxyl group while the side chain of Glu(129) is ideally situated to serve as the general base for proton abstraction at C-5. This investigation provides further detailed information for understanding the exquisite chemistry that occurs in these remarkable enzymes.
去氧氨基糖是一种存在于某些大环内酯类抗生素中的3-(二甲基氨基)-3,4,6-三脱氧己糖。在委内瑞拉链霉菌中,这种特殊糖类的生物合成需要七个基因。其中一个基因desIV编码一种dTDP-葡萄糖4,6-脱水酶,即DesIV。这类脱水酶的反应机制相当复杂,包括从糖的4'-羟基夺取质子并将氢负离子转移到NAD⁺、在C-5处夺取质子、消除糖C-6处的羟基,最后质子回到C-5且氢负离子从NADH回到C-6。在此,我们描述了野生型DesIV与dTDP复合的克隆、过表达、纯化以及分辨率高达1.44 Å的高分辨率X射线晶体学分析。此外,本研究还制备了一个双位点定向突变蛋白(D128N/E129Q),它与NAD⁺和底物dTDP-葡萄糖形成复合物并结晶,其结构在1.35 Å分辨率下得以确定。在DesIV中,Tyr(151)的酚盐基团和Thr(127)的O(γ)分别距离dTDP-葡萄糖底物的4'-羟基2.7 Å和2.6 Å。Asp(128)的侧链处于正确位置,可作为向6'-羟基供质子的通用酸,而Glu(129)的侧链位置理想,可作为在C-5处夺取质子的通用碱。这项研究为理解这些非凡酶中发生的精妙化学过程提供了更详细的信息。