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pH对辅酶与肝脏乙醇脱氢酶结合的影响。

Effect of pH on coenzyme binding to liver alcohol dehydrogenase.

作者信息

Kvassman J, Pettersson G

出版信息

Eur J Biochem. 1979 Oct;100(1):115-23. doi: 10.1111/j.1432-1033.1979.tb02039.x.

Abstract
  1. The transient-state kinetics of ligand-displacement reactions have been analyzed. Methods based on this analysis have been used to obtain reliable estimates of on-velocity and off-velocity constants for coenzyme binding to liver alcohol dehydrogenase at different pH values between 6 and 10. 2. The rate of NADH dissociation from the enzyme shows no pronounced dependence on pH. The rate of NAD+ dissociation is controlled by a group with a pKa of 7.6, agreeing with the pKa reported to regulate the binding of certain inhibitory substrate analogues to the enzyme . NAD+ complex. 3. Critical experiments have been performed to test a recent proposal that on-velocity constants for the binding of NADH and NAD+ are controlled by proton equilibria exhibiting different pKa values. The results show that association rates for NADH and NAD+ exhibit the same pH dependence corresponding to a pKa of 9.2. Titrimetric evidence is presented indicating that the latter effect of pH derives from ionization of a group which affects the anion-binding capacity of the coenzyme-binding site.
摘要
  1. 对配体置换反应的瞬态动力学进行了分析。基于该分析的方法已被用于可靠估计辅酶在6至10的不同pH值下与肝脏乙醇脱氢酶结合的结合速率常数和解离速率常数。2. NADH从酶上解离的速率对pH没有明显依赖性。NAD⁺解离的速率受pKa为7.6的基团控制,这与报道的调节某些抑制性底物类似物与该酶结合的pKa一致。NAD⁺复合物。3. 已经进行了关键实验,以检验最近提出的关于NADH和NAD⁺结合的结合速率常数受具有不同pKa值的质子平衡控制的提议。结果表明,NADH和NAD⁺的缔合速率表现出相同的pH依赖性,对应于pKa为9.2。提供了滴定证据,表明pH的后一种影响源于影响辅酶结合位点阴离子结合能力的基团的电离。

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