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Balanced Biochemical Reactions: A New Approach to Unify Chemical and Biochemical Thermodynamics

机译:平衡的生化反应:统一化学和生化热力学的新方法

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摘要

A novel procedure is presented which, by balancing elements and electric charge of biochemical reactions which occur at constant pH and pMg, allows assessing the thermodynamics properties of reaction ΔrG′0, ΔrH′0, ΔrS′0 and the change in binding of hydrogen and magnesium ions of these reactions. This procedure of general applicability avoids the complex calculations required by the use of the Legendre transformed thermodynamic properties of formation ΔfG′0, ΔfH′0 and ΔfS′0 hitherto considered an obligatory prerequisite to deal with the thermodynamics of biochemical reactions. As a consequence, the term “conditional” is proposed in substitution of “Legendre transformed” to indicate these thermodynamics properties. It is also shown that the thermodynamic potential G is fully adequate to give a criterion of spontaneous chemical change for all biochemical reactions and then that the use of the Legendre transformed G′ is unnecessary. The procedure proposed can be applied to any biochemical reaction, making possible to re-unify the two worlds of chemical and biochemical thermodynamics, which so far have been treated separately.
机译:提出了一种新颖的程序,通过平衡在恒定pH和pMg下发生的生化反应的元素和电荷,可以评估反应ΔrG'0,ΔrH'0,ΔrS'0的热力学性质以及氢和氢键的变化这些反应中的镁离子。该通用性规程避免了迄今被认为是处理生化反应热力学的必不可少的先决条件,即通过使用勒让德变换的地层ΔfG′0,ΔfH′0和ΔfS′0的热力学性质来进行复杂的计算。因此,提出了“有条件的”一词来代替“莱格特变换”以指示这些热力学性质。还显示出热力学势G完全足以为所有生化反应提供自发化学变化的判据,因此不需要使用勒让德转化的G'。所提出的程序可应用于任何生化反应,从而有可能重新统一迄今为止已分别处理过的化学和生化热力学的两个世界。

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