Alphey Magnus S, Burton Andrew, Urbaniak Michael D, Boons Geert-Jan, Ferguson Michael A J, Hunter William N
Division of Biological Chemistry and Molecular Microbiology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, Scotland.
Acta Crystallogr Sect F Struct Biol Cryst Commun. 2006 Sep 1;62(Pt 9):829-34. doi: 10.1107/S1744309106028740. Epub 2006 Aug 11.
The structure of the NAD-dependent oxidoreductase UDP-galactose-4'-epimerase from Trypanosoma brucei in complex with cofactor and the substrate analogue UDP-4-deoxy-4-fluoro-alpha-D-galactose has been determined using diffraction data to 2.7 A resolution. Despite the high level of sequence and structure conservation between the trypanosomatid enzyme and those from humans, yeast and bacteria, the binding of the 4-fluoro-alpha-D-galactose moiety is distinct from previously reported structures. Of particular note is the observation that when bound to the T. brucei enzyme, the galactose moiety of this fluoro-derivative is rotated approximately 180 degrees with respect to the orientation of the hexose component of UDP-glucose when in complex with the human enzyme. The architecture of the catalytic centre is designed to effectively bind different orientations of the hexose, a finding that is consistent with a mechanism that requires the sugar to maintain a degree of flexibility within the active site.
利用分辨率为2.7埃的衍射数据,确定了布氏锥虫中依赖烟酰胺腺嘌呤二核苷酸(NAD)的氧化还原酶UDP-半乳糖-4'-表异构酶与辅因子及底物类似物UDP-4-脱氧-4-氟-α-D-半乳糖形成复合物的结构。尽管锥虫酶与人类、酵母和细菌的酶在序列和结构上具有高度保守性,但4-氟-α-D-半乳糖部分的结合与先前报道的结构不同。特别值得注意的是,当与布氏锥虫酶结合时,这种氟衍生物的半乳糖部分相对于与人类酶结合时UDP-葡萄糖己糖成分的方向旋转了约180度。催化中心的结构设计用于有效结合己糖的不同方向,这一发现与一种要求糖在活性位点内保持一定程度灵活性的机制相一致。