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酶催化效率的进化优化。

Evolutionary optimization of the catalytic effectiveness of an enzyme.

作者信息

Burbaum J J, Raines R T, Albery W J, Knowles J R

机构信息

Department of Chemistry, Harvard University, Cambridge, Massachusetts 02138.

出版信息

Biochemistry. 1989 Nov 28;28(24):9293-305. doi: 10.1021/bi00450a009.

Abstract

The kinetic and thermodynamic features of reactions catalyzed by present-day enzymes appear to be the consequence of the evolution of these proteins toward maximal catalytic effectiveness. These features are identified and analyzed (in detail for one substrate-one product enzymes) by using ideas that link the energetics of the reaction catalyzed by an enzyme to the maximization of its catalytic efficiency. A catalytically optimized enzyme will have a value for the "internal" equilibrium constant (Kint, the equilibrium constant between the substrates and the products of the enzyme when all are bound productively) that depends on how close to equilibrium the enzyme maintains its reaction in vivo. Two classes are apparent. For an enzyme that operates near equilibrium, the catalytic efficiency is sensitive to the value of Kint, and the optimum value of Kint is near unity. For an enzyme that operates far from equilibrium, the catalytic efficiency is less sensitive to the value of Kint, and Kint assumes a value that ensures that the rate of the chemical transformation is equal to the rate of product release. In each of these cases, the internal thermodynamics is "dynamically matched", where the concentrations of substrate- and product-containing complexes are equal at the steady state in vivo.

摘要

当今酶催化反应的动力学和热力学特征似乎是这些蛋白质朝着最大催化效率进化的结果。通过运用将酶催化反应的能量学与催化效率最大化联系起来的观点,对这些特征进行了识别和分析(针对单底物-单产物酶进行了详细分析)。经过催化优化的酶会有一个“内部”平衡常数(Kint,即当所有底物和产物都有效结合时,酶的底物与产物之间的平衡常数),其数值取决于该酶在体内使反应维持在多接近平衡的状态。明显有两类情况。对于在接近平衡状态下运行的酶,催化效率对Kint的值敏感,且Kint的最佳值接近1。对于在远离平衡状态下运行的酶,催化效率对Kint的值不太敏感,Kint取一个能确保化学转化速率等于产物释放速率的值。在上述每种情况下,内部热力学都是“动态匹配”的,即在体内稳态时,含底物和产物的复合物浓度相等。

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