Thomaeus Ann, Carlsson Jens, Aqvist Johan, Widersten Mikael
Department of Biochemistry and Organic Chemistry, Box 576, Uppsala University, BMC, SE-751 23 Uppsala, Sweden.
Biochemistry. 2007 Mar 6;46(9):2466-79. doi: 10.1021/bi062052s. Epub 2007 Feb 7.
The carboxylate of Glu35 in the active site of potato epoxide hydrolase StEH1 interacts with the catalytic water molecule and is the first link in a chain of hydrogen bonds connecting the active site with bulk solvent. To probe its importance to catalysis, the carboxylate was replaced with an amide through an E35Q mutation. Comparing enzyme activities using the two trans-stilbene oxide (TSO) enantiomers as substrates revealed the reaction with R,R-TSO to be the one more severely affected by the E35Q mutation, as judged by determined kinetic parameters describing the pre-steady states or the steady states of the catalyzed reactions. The hydrolysis of S,S-TSO afforded by the E35Q mutant was comparable with that of the wild-type enzyme, with only a minor decrease in activity, or a change in pH dependencies of kcat, and the rate of alkylenzyme hydrolysis, k3. The pH dependence of E35Q-catalyzed hydrolysis of R,R-TSO, however, exhibited an inverted titration curve as compared to that of the wild-type enzyme, with a minimal catalytic rate at pH values where the wild-type enzyme exhibited maximum rates. To simulate the pH dependence of the E35Q mutant, a shift in the acidity of the alkylenzyme had to be invoked. The proposed decrease in the pKa of His300 in the E35Q mutant was supported by computer simulations of the active site electrostatics. Hence, Glu35 participates in activation of the Asp nucleophile, presumably by facilitating channeling of protons out of the active site, and during the hydrolysis half-reaction by orienting the catalytic water for optimal hydrogen bonding, to fine-tune the acid-base characteristics of the general base His300.
马铃薯环氧化物水解酶StEH1活性位点中的Glu35羧酸盐与催化水分子相互作用,是将活性位点与大量溶剂相连的氢键链中的第一个环节。为探究其对催化作用的重要性,通过E35Q突变将羧酸盐替换为酰胺。以两种反式芪氧化物(TSO)对映体为底物比较酶活性,根据描述催化反应预稳态或稳态的动力学参数判断,与R,R - TSO的反应受E35Q突变影响更严重。E35Q突变体对S,S - TSO的水解作用与野生型酶相当,活性仅略有下降,或kcat的pH依赖性及烯醇酶水解速率k3发生变化。然而,与野生型酶相比,E35Q催化R,R - TSO水解的pH依赖性呈现出倒转的滴定曲线,在野生型酶表现出最大速率的pH值处催化速率最小。为模拟E35Q突变体的pH依赖性,必须假定烯醇酶酸度发生变化。活性位点静电作用的计算机模拟支持了E35Q突变体中His300的pKa降低的推测。因此,Glu35参与Asp亲核试剂的活化,可能是通过促进质子从活性位点流出,以及在水解半反应期间通过定向催化水以实现最佳氢键作用,来微调通用碱His300的酸碱特性。