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血红素蛋白动力学的速率理论与谜题。

Rate theories and puzzles of hemeprotein kinetics.

作者信息

Frauenfelder H, Wolynes P G

出版信息

Science. 1985 Jul 26;229(4711):337-45. doi: 10.1126/science.4012322.

Abstract

The binding of dioxygen and carbon monoxide to heme proteins such as myoglobin and hemoglobin has been studied with flash photolysis. At temperatures below 200 K, binding occurs from within the heme pocket and, contrary to expectation, with nearly equal rates for both ligands. This observation has led to a reexamination of the theory of the association reaction taking into account friction, protein structure, and the nature of electronic transitions. The rate coefficients for the limiting cases of large and small friction are found with simple arguments that use characteristic lengths and times. The arguments indicate how transition state theory as well as calculations based on nonadiabatic perturbation theory, which is called the Golden Rule, may fail. For ligand-binding reactions the data suggest the existence of intermediate states not directly observed so far. The general considerations may also apply to other biomolecular processes such as electron transport.

摘要

利用闪光光解技术研究了双原子氧和一氧化碳与肌红蛋白和血红蛋白等血红素蛋白的结合。在低于200K的温度下,结合发生在血红素口袋内部,并且与预期相反,两种配体的结合速率几乎相等。这一观察结果促使人们重新审视结合反应理论,该理论考虑了摩擦力、蛋白质结构和电子跃迁的性质。通过使用特征长度和时间的简单论证,得出了大摩擦力和小摩擦力极限情况下的速率系数。这些论证表明了过渡态理论以及基于非绝热微扰理论(即黄金规则)的计算可能会失效的情况。对于配体结合反应,数据表明存在迄今尚未直接观测到的中间态。这些一般性的考虑也可能适用于其他生物分子过程,如电子传输。

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