首页> 外文期刊>Journal of enzyme inhibition >Binding thermodynamics of the transition state analogue coformycin and of the ground state analogue 1-deazaadenosine to bovine adenosine deaminase.
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Binding thermodynamics of the transition state analogue coformycin and of the ground state analogue 1-deazaadenosine to bovine adenosine deaminase.

机译:过渡状态模拟COFORMYCIN的结合热力学和地面态类似物1-甲腺苷的牛腺苷脱氨酶。

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摘要

Binding of the transition state analogue coformycin and the ground state analogue 1-deaazadenosine to bovine adenosine deaminase have been thermodynamically characterized. The heat capacity changes for coformycin and 1-deazaadenosine binding are -4.7 +/- 0.8 kJ/mole-K and -1.2 +/- 0.1 kJ/mole-K, respectively. Since the predominant source of heat capacity change in enzyme interactions are changes in the extent of exposure of nonpolar amino acid side chains to the aqueous environment and the hydrophobic effect is the predominant factor in native structure stabilization, we propose that the binding of either class of ligand is associated with a stabilizing enzyme conformational change with coformycin producing the far greater effect. Analysis of the T dependence of the second order rate constant for formation of the enzyme/coformycin complex further reveals that the conformational change is not rate limiting. We propose that the enzyme may facilitate catalysis via the formation of a stabilizing conformation at the reaction transition state.
机译:过渡状态模拟COFORMYCIN与地态类似物1- deaazenohosine的结合已经热力学表征。 Coformycin和1-deazaanyosine结合的热容量变化分别为-4.7 +/- 0.8kJ / mole-k和-1.2 +/- 0.1kJ / mol-k。由于酶相互作用的主要热容量变化的主要源是非极性氨基酸侧链对含水环境暴露的变化,并且疏水作用是天然结构稳定的主要因素,我们提出了两类的结合配体与稳定的酶构象变化与Coformycin产生的稳定化酶组合有关,产生更大的效果。对二阶率常数形成酶/共核霉素复合物形成的T依赖性的分析进一步揭示了构象变化不是限制性的。我们提出酶可以通过在反应转变状态下形成稳定构象来促进催化。

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