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作为pH值和离子强度函数的生化半反应的标准表观还原电位。

Standard apparent reduction potentials for biochemical half reactions as a function of pH and ionic strength.

作者信息

Alberty R A

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Arch Biochem Biophys. 2001 May 1;389(1):94-109. doi: 10.1006/abbi.2001.2318.

Abstract

Standard apparent reduction potentials are important because they give a more global view of the driving forces for redox reactions than do the standard transformed Gibbs energies of formation of the reactants. This paper emphasizes the effects of pH on biochemical half reactions in the range pH 5 to 9, but it also shows the effect of ionic strength. These effects can be calculated if the pKs of acid groups in the reactants are known in the range pH 4 to 10. Raising the pH decreases the standard apparent reduction potentials of half reactions when it has an effect, and the slope is proportional to minus one times the ratio of the change in binding of hydrogen ions in the half reaction to the number of electrons transferred. These effects are discussed for 19 biochemical reactions. This effect is most striking for the nitrogenase reaction, where the apparent equilibrium constant is proportional to 10(-10 pH) and is unfavorable for nitrogen fixation above pH 8.

摘要

标准表观还原电位很重要,因为与反应物的标准转化吉布斯生成能相比,它们能更全面地展现氧化还原反应的驱动力。本文着重探讨了pH值在5至9范围内对生化半反应的影响,但同时也展示了离子强度的影响。如果已知反应物中酸性基团在pH值4至10范围内的pK值,就可以计算出这些影响。当pH值产生影响时,提高pH值会降低半反应的标准表观还原电位,其斜率与半反应中氢离子结合变化量与转移电子数之比的负一倍成正比。本文针对19个生化反应讨论了这些影响。这种影响在固氮酶反应中最为显著,其表观平衡常数与10^(-10pH)成正比,在pH值高于8时不利于固氮作用。

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