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Piezoelectric Theory of Enzymic Catalysis as Inferred from the Electromechanochemical Principles of Bioenergetics

机译:从生物能的机电原理推论压电催化的压电理论

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摘要

Starting from the electromechanochemical principles of bioenergetics formulated by Green and Ji, a theory is proposed which describes enzymic catalysis in terms of piezoelectricity in semiconductors. The choice of this particular physical effect for describing catalytic processes is founded on the following experimental observations: most of the amino-acid residues of enzymes, as well as a large number of other biologically important molecules, exhibit piezoelectric resonances; besides, enzymes can behave like semiconductors. In the proposed theory the catalysis is assumed to be accomplished by means of three fundamental processes: (a) the lowering of the substrate-product energy barrier; (b) the electron-induced selective amplification of the low-frequency vibrational waves present in thermal background in the enzyme structure; and (c) the channeling into the substrate of the energy associated with the amplified waves and utilization of this energy for generating electrical or mechanical fields inside a susceptible region of the substrate. A mathematical description of the theory is outlined, and a rough estimate of some quantities involved in the process of wave amplification is also reported.
机译:从Green和Ji提出的生物能学的机电化学原理出发,提出了一种理论,该理论根据半导体中的压电性描述酶催化。用于描述催化过程的特定物理效应的选择基于以下实验观察:酶的大多数氨基酸残基以及许多其他生物学上重要的分子均表现出压电共振;此外,酶的行为类似于半导体。在提出的理论中,假定催化是通过三个基本过程完成的:(a)降低底物-产品能垒; (b)电子诱导酶结构中热本底中存在的低频振动波的选择性放大; (c)将与放大波相关的能量引导到衬底中,并利用该能量在衬底的敏感区域内产生电场或机械场。概述了该理论的数学描述,还报告了波放大过程中涉及的一些量的粗略估计。

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