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在完全解偶联的条件下,膜结合的ATP合酶复合物从介质32Pi合成ATP。

The synthesis of ATP by the membrane-bound ATP synthase complex from medium 32Pi under completely uncoupled conditions.

作者信息

Feldman R I, Sigman D S

出版信息

J Biol Chem. 1983 Oct 25;258(20):12178-83.

PMID:6313641
Abstract

Previously, we demonstrated that isolated coupling factor 1 can reversibly synthesize bound ATP from "tightly bound" ADP and medium Pi (Feldman, R I., and Sigman, D. S. (1982) J. Biol. Chem. 25, 1676-1683). In order to ensure that the thermodynamic constants derived are relevant to coupled ATP synthesis, we have also studied the reaction on thylakoid membranes. The ATP synthase complex, uncoupled with 20 mM NH4Cl or 0.3% Triton X-100, synthesizes enzyme-bound ATP in a similar manner to coupling factor 1. The pH optimum is 6, the concentration of medium Pi for 50% saturation is 38 mM, and the equilibrium constant for the formation of ATP from bound ADP and Pi is 0.5. It is concluded that the active site responsible for the reaction is not appreciably altered by the dissociation of coupling factor 1 from the membrane or Fo. Thus, either enzyme form can be used to derive data relevant to the mechanism of ATP synthesis. The ability to measure bound ATP synthesis in an energizable system will allow us to probe the effect of membrane energization on the accumulated bound product.

摘要

此前,我们证明了分离出的偶联因子1能够从“紧密结合”的ADP和介质Pi中可逆地合成结合态ATP(费尔德曼,R.I.,和西格曼,D.S.(1982年)《生物化学杂志》25卷,1676 - 1683页)。为确保所推导的热力学常数与偶联的ATP合成相关,我们还研究了类囊体膜上的该反应。ATP合酶复合体,用20 mM氯化铵或0.3% Triton X - 100解偶联后,以与偶联因子1相似的方式合成酶结合态ATP。最适pH为6,50%饱和时介质Pi的浓度为38 mM,由结合态ADP和Pi形成ATP的平衡常数为0.5。得出的结论是,负责该反应的活性位点不会因偶联因子1从膜或F₀上解离而发生明显改变。因此,两种酶形式均可用于推导与ATP合成机制相关的数据。在可激发系统中测量结合态ATP合成的能力将使我们能够探究膜激发对积累的结合态产物的影响。

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