Arand Michael, Hallberg B Martin, Zou Jinyu, Bergfors Terese, Oesch Franz, van der Werf Mariët J, de Bont Jan A M, Jones T Alwyn, Mowbray Sherry L
Department of Toxicology, University of Würzburg, Versbacher Strasse 9, D-97078 Würzburg, Germany.
EMBO J. 2003 Jun 2;22(11):2583-92. doi: 10.1093/emboj/cdg275.
Epoxide hydrolases are essential for the processing of epoxide-containing compounds in detoxification or metabolism. The classic epoxide hydrolases have an alpha/beta hydrolase fold and act via a two-step reaction mechanism including an enzyme-substrate intermediate. We report here the structure of the limonene-1,2-epoxide hydrolase from Rhodococcus erythropolis, solved using single-wavelength anomalous dispersion from a selenomethionine-substituted protein and refined at 1.2 A resolution. This enzyme represents a completely different structure and a novel one-step mechanism. The fold features a highly curved six-stranded mixed beta-sheet, with four alpha-helices packed onto it to create a deep pocket. Although most residues lining this pocket are hydrophobic, a cluster of polar groups, including an Asp-Arg-Asp triad, interact at its deepest point. Site-directed mutagenesis supports the conclusion that this is the active site. Further, a 1.7 A resolution structure shows the inhibitor valpromide bound at this position, with its polar atoms interacting directly with the residues of the triad. We suggest that several bacterial proteins of currently unknown function will share this structure and, in some cases, catalytic properties.
环氧化物水解酶对于含环氧化物的化合物在解毒或代谢过程中的处理至关重要。经典的环氧化物水解酶具有α/β水解酶折叠结构,并通过包括酶-底物中间体的两步反应机制起作用。我们在此报告了来自红平红球菌的柠檬烯-1,2-环氧化物水解酶的结构,该结构通过硒代蛋氨酸取代蛋白的单波长反常色散解析,并在1.2埃分辨率下进行了精修。这种酶代表了一种完全不同的结构和新颖的一步反应机制。其折叠结构具有高度弯曲的六股混合β-折叠片,上面堆积着四个α-螺旋,形成一个深口袋。尽管这个口袋内衬的大多数残基是疏水的,但在其最深点有一簇极性基团相互作用,包括一个天冬氨酸-精氨酸-天冬氨酸三联体。定点诱变支持这是活性位点的结论。此外,一个1.7埃分辨率的结构显示抑制剂丙戊酰胺结合在这个位置,其极性原子直接与三联体的残基相互作用。我们认为,目前功能未知的几种细菌蛋白将具有这种结构,并且在某些情况下具有催化特性。