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酶促烯醇化反应中的二级氢/氘同位素效应。磷酸丙糖异构酶反应中的耦合运动与隧穿效应。

Secondary H/T and D/T isotope effects in enzymatic enolization reactions. Coupled motion and tunneling in the triosephosphate isomerase reaction.

作者信息

Alston W C, Kanska M, Murray C J

机构信息

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville 72701, USA.

出版信息

Biochemistry. 1996 Oct 1;35(39):12873-81. doi: 10.1021/bi960831a.

Abstract

Secondary kH/kT kinetic isotope effects in H2O and kH/kT or kD/kT isotope effects in D2O have been measured for the triosephosphate isomerase-catalyzed conversion of dihydroxyacetone 3-phosphate (DHAP) to D-glyceraldehyde 3-phosphate. The proton transfer steps are made rate-limiting using [1(R)-2H]-labeled substrate in D2O to slow the chemical steps, relative to product release. After a small correction for the beta-equilibrium isotope effect for dehydration of DHAP, the H/T kinetic isotope effect kH/kT = 1.27 +/- 0.03 for [1(R)-2H,(S)-3H]-labeled substrate in D2O is subtantially larger than the equilibrium isotope effect for enolization of DHAP, KH/KT = 1.12. The H/T isotope effect is related to the D/T isotope effect with a Swain-Schaad exponent y = 4.4 +/- 1.3. These results are consistent with coupled motion of the C-1 primary and secondary hydrogens of DHAP and tunneling. Large secondary kinetic isotope effects are a general feature of enzymatic enolization reactions while nonenzymatic enolization reactions show secondary kinetic isotope effects that are substantially smaller than equilibrium effects [Alston, W. A., II, Haley, K., Kanski, R., Murray, C.J., & Pranata, J. (1996) J. Am. Chem Soc., 118, 6562-6569]. Possible origins for these differences in transition state structure are discussed.

摘要

已测定了在磷酸丙糖异构酶催化下,磷酸二羟丙酮(DHAP)转化为D-甘油醛3-磷酸过程中,在H₂O中的二级kH/kT动力学同位素效应以及在D₂O中的kH/kT或kD/kT同位素效应。在D₂O中使用[1(R)-²H]标记的底物使质子转移步骤成为限速步骤,相对于产物释放而言减缓化学步骤。对DHAP脱水的β-平衡同位素效应进行小的校正后,在D₂O中[1(R)-²H,(S)-³H]标记底物的H/T动力学同位素效应kH/kT = 1.27 ± 0.03,显著大于DHAP烯醇化的平衡同位素效应KH/KT = 1.12。H/T同位素效应与D/T同位素效应相关,斯温-沙德指数y = 4.4 ± 1.3。这些结果与DHAP的C-1一级和二级氢的耦合运动以及隧穿一致。大的二级动力学同位素效应是酶促烯醇化反应的一个普遍特征,而非酶促烯醇化反应的二级动力学同位素效应则显著小于平衡效应[阿尔斯顿,W. A.,二世,海利,K.,坎斯基,R.,默里,C. J.,& 普拉纳塔,J.(1996年)《美国化学会志》,118,6562 - 6569]。讨论了这些过渡态结构差异的可能起源。

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