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低频振动(声子)的生物学功能。4. 共振效应和别构转变。

The biological functions of low-frequency vibrations (phonons). 4. Resonance effects and allosteric transition.

作者信息

Chou K C

出版信息

Biophys Chem. 1984 Aug;20(1-2):61-71. doi: 10.1016/0301-4622(84)80005-8.

Abstract

Based on the internal structure of oligoprotein as well as the basic physical characteristics+ of vibrations, it is deduced that the low-frequency vibrations possess some exceptional functions in transmitting biological information at the molecular level. In particular, according to the viewpoint of energy exchange and intramolecular displacement, it is demonstrated that the low-frequency resonance plays a very significant role during the dynamic process of allosterism of an oligomeric protein molecule. Furthermore, the cooperative reaction between hemoglobins and ligands is taken as an example, through which it is seen that some observed phenomena, whose dynamic principle has thus far been unclear, can be explicitly interpreted in terms of the concept of low-frequency resonance.

摘要

基于寡聚蛋白的内部结构以及振动的基本物理特性,推断出低频振动在分子水平传递生物信息方面具有一些特殊功能。特别是,根据能量交换和分子内位移的观点,证明了低频共振在寡聚蛋白分子变构的动态过程中起着非常重要的作用。此外,以血红蛋白与配体之间的协同反应为例,可以看出一些迄今其动态原理尚不清楚的观察到的现象,可以用低频共振的概念得到明确解释。

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