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结合位点水与不太完美的过渡态类似物的缺点。

Site-bound water and the shortcomings of a less than perfect transition state analogue.

作者信息

Snider M J, Wolfenden R

机构信息

Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill, North Carolina 27599-7260, USA.

出版信息

Biochemistry. 2001 Sep 25;40(38):11364-71. doi: 10.1021/bi011189+.

DOI:10.1021/bi011189+
PMID:11560484
Abstract

Kinetic measurements have shown that substantial enthalpy changes accompany substrate binding by cytidine deaminase, increasing markedly as the reaction proceeds from the ground state (1/K(m), DeltaH = -13 kcal/mol) to the transition state (1/K(tx), DeltaH = -20 kcal/mol) [Snider, M. J., et al. (2000) Biochemistry 39, 9746-9753]. In the present work, we determined the thermodynamic changes associated with the equilibrium binding of inhibitors by cytidine deaminase by isothermal titration calorimetry and van't Hoff analysis of the temperature dependence of their inhibition constants. The results indicate that the binding of the transition state analogue 3,4-dihydrouridine DeltaH = -21 kcal/mol), like that of the transition state itself (DeltaH = -20 kcal/mol), is associated with a large favorable change in enthalpy. The significantly smaller enthalpy change that accompanies the binding of 3,4-dihydrozebularine (DeltaH = -10 kcal/mol), an analogue of 3,4-dihydrouridine in which a hydrogen atom replaces this inhibitor's 4-OH group, is consistent with the view that polar interactions with the substrate at the site of its chemical transformation play a critical role in reducing the enthalpy of activation for substrate hydrolysis. The entropic shortcomings of 3,4-dihydrouridine, in capturing all of the free energy involved in binding the actual transition state, may arise from its inability to displace a water molecule that occupies the binding site normally occupied by product ammonia.

摘要

动力学测量表明,胞苷脱氨酶与底物结合时会伴随大量的焓变,随着反应从基态(1/K(m),ΔH = -13 kcal/mol)进行到过渡态(1/K(tx),ΔH = -20 kcal/mol),焓变显著增加[斯奈德,M. J.等人(2000年)《生物化学》39卷,9746 - 9753页]。在本研究中,我们通过等温滴定量热法以及对抑制剂抑制常数的温度依赖性进行范特霍夫分析,确定了胞苷脱氨酶与抑制剂平衡结合相关的热力学变化。结果表明,过渡态类似物3,4 - 二氢尿苷(ΔH = -21 kcal/mol)的结合,与过渡态本身(ΔH = -20 kcal/mol)的结合一样,伴随着大量有利的焓变。3,4 - 二氢泽布勒林(ΔH = -10 kcal/mol)是3,4 - 二氢尿苷的类似物,其中一个氢原子取代了该抑制剂的4 - OH基团,其结合时伴随的焓变明显较小,这与以下观点一致:在底物化学转化位点与底物的极性相互作用在降低底物水解的活化焓方面起着关键作用。3,4 - 二氢尿苷在捕获结合实际过渡态所涉及的所有自由能方面的熵缺陷,可能源于其无法取代占据通常由产物氨占据的结合位点的水分子。

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