Welch G R
J Theor Biol. 1985 Jun 7;114(3):433-46. doi: 10.1016/s0022-5193(85)80177-6.
The usage of Gibbs free energy (G) in biochemistry is examined critically. The textbook formulation of the Second Law of Thermodynamics as applied to chemically-reacting systems is reviewed. Cognizance of the established theory and terminology of chemical thermodynamics leads to the conclusion that the symbol "delta G", as used in most biochemical calculations of free-energy change (e.g. in freeze-clamp study of steady-state metabolic processes), is erroneous. The instantaneous change, symbolized by the expression (delta G/delta xi) (with xi the degree of advancement of the reaction), is seen to be the correct form for describing the thermodynamic quality of the reactions of cell metabolism. Mathematical and graphical analysis of a sample reaction demonstrates the fundamental difference between delta G and (delta G/delta xi). Some problems in the application and interpretation of free-energy change in biochemical systems are reviewed: (1) Advances in protein dynamics have revealed the free-energy linkage properties of the enzyme molecule in binding/catalytic events of catalysis, demanding that we view the thermodynamics of elementary enzyme reactions with a finer eye. (2) The reality of metabolic microenvironments in vivo leads to equivocation in the significance of free-energy changes measured under macroscopic conditions in vitro. (3) The physicochemical character of reaction dynamics in the living cell may in some cases exceed the domain of validity of such thermodynamic state functions as Gibbs free energy.
对吉布斯自由能(G)在生物化学中的应用进行了批判性审视。回顾了应用于化学反应系统的热力学第二定律的教科书表述。认识到化学热力学的既定理论和术语后得出结论:在大多数自由能变化的生化计算中(例如在稳态代谢过程的冷冻钳研究中)使用的符号“ΔG”是错误的。由表达式(ΔG/Δξ)(其中ξ为反应进度)表示的瞬时变化,被视为描述细胞代谢反应热力学性质的正确形式。对一个示例反应的数学和图形分析证明了ΔG与(ΔG/Δξ)之间的根本差异。回顾了生化系统中自由能变化应用和解释方面的一些问题:(1)蛋白质动力学的进展揭示了酶分子在催化的结合/催化事件中的自由能联系特性,要求我们更细致地看待基本酶反应的热力学。(2)体内代谢微环境的实际情况导致在体外宏观条件下测量的自由能变化的意义存在歧义。(3)活细胞中反应动力学的物理化学特性在某些情况下可能超出吉布斯自由能等热力学状态函数的有效范围。