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酮甾类异构酶催化的酶促增强耦合运动/量子力学氢隧穿的实验证据。

Experimental evidence for enzyme-enhanced coupled motion/quantum mechanical hydrogen tunneling by ketosteroid isomerase.

作者信息

Wilde Thomas C, Blotny Grzegorz, Pollack Ralph M

机构信息

Department of Chemistry and Biochemistry, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, Maryland 21250, USA.

出版信息

J Am Chem Soc. 2008 May 21;130(20):6577-85. doi: 10.1021/ja0732330. Epub 2008 Apr 22.

Abstract

Although there are considerable data demonstrating that quantum mechanical hydrogen tunneling (HT) occurs in both enzymatic and nonenzymatic systems, little data exist that address the question of whether enzymes enhance the amount of HT relative to the corresponding nonenzymatic reactions. To investigate whether 3-oxo-Delta (5)-steroid isomerase (ketosteroid isomerase, KSI) enhances HT relative to the nonenzymatic (acetate-catalyzed) isomerization of Delta (5)-androstene-3,17-dione ( 1) to Delta (4)-androstene-3,17-dione ( 3), alpha-secondary deuterium kinetic isotope effects (KIE) at C-6 of the steroid were determined for both the KSI- and acetate-catalyzed isomerizations. The normal intrinsic secondary KIE for both wild type (WT) KSI (1.073 +/- 0.023) and acetate (1.031 +/- 0.010) suggest the possibility of coupled motion (CM)/HT in both the enzymatic and nonenzymatic systems. To assess the contribution of CM/HT in these reactions, the secondary KIE were also measured under conditions in which deuterium instead of hydrogen is transferred. The decrease in secondary KIE for WT (1.035 +/- 0.011) indicates the presence of CM/HT in the enzymatic reaction, whereas the acetate reaction shows no change in secondary KIE for deuterium transfer (1.030 +/- 0.009) and therefore no evidence for CM/HT. On the basis of these experiments, we propose that KSI enhances the CM/HT contribution to the rate acceleration over the solution reaction. Active site mutants of KSI (Y14F and D99A) yield secondary KIEs similar to that of WT, indicating that mutations at the hydrogen-bonding residues do not significantly decrease the contribution of CM/HT to the KSI reaction.

摘要

尽管有大量数据表明量子力学氢隧穿(HT)在酶促和非酶促系统中均会发生,但关于酶相对于相应非酶促反应是否会增加HT量这一问题的数据却很少。为了研究3-氧代-Δ(5)-甾体异构酶(酮甾体异构酶,KSI)相对于Δ(5)-雄烯-3,17-二酮(1)向Δ(4)-雄烯-3,17-二酮(3)的非酶促(乙酸盐催化)异构化反应是否会增强HT,我们测定了甾体C-6位的α-二级氘动力学同位素效应(KIE),用于KSI催化和乙酸盐催化的异构化反应。野生型(WT)KSI(1.073±0.023)和乙酸盐(1.031±0.010)的正常固有二级KIE表明在酶促和非酶促系统中均存在耦合运动(CM)/HT的可能性。为了评估CM/HT在这些反应中的贡献,我们还在氘而非氢转移的条件下测量了二级KIE。WT的二级KIE降低(1.035±0.011)表明酶促反应中存在CM/HT,而乙酸盐反应在氘转移时二级KIE没有变化(1.030±0.009),因此没有CM/HT的证据。基于这些实验,我们提出KSI增强了CM/HT对溶液反应速率加速的贡献。KSI(Y14F和D99A)的活性位点突变体产生的二级KIE与WT相似,表明氢键残基处的突变不会显著降低CM/HT对KSI反应的贡献。

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