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吡啶同系物对质子通过CF0.CF1复合体的通量及叶绿体中光合磷酸化作用的影响。

Effect of pyridine homologues on proton flux through the CF0 . CF1 complex and photophosphorylation in chloroplasts.

作者信息

Ho Y K, Wang J H

出版信息

J Bioenerg Biomembr. 1982 Apr;14(2):97-113. doi: 10.1007/BF00745023.

Abstract

At concentrations below 1 mM, hydrophobic pyridine homologues decrease the rate of photophosphorylation and light-stimulated hydrolysis of ATP and light-activated exchange of the tightly bound nucleotides in chloroplasts, but increase the rate of the Hill reaction. Unlike uncoupling agents, the presence of the organic base at such low concentrations decreases the rate of light-dependent leakage and has no effect on the efficiency of two-stage photophosphorylation in broken chloroplasts. By assuming that the organic base is bound to independent equivalent sites in the thylakoid membrane, a simple expression can be derived which relates the observed rates of photophosphorylation and light-stimulated hydrolysis of ATP quantitatively to the concentration of the organic base in solution and gives dissociation equilibrium constants which are on the order of the relative hydrophobicities of the pyridine homologues. A possible mechanistic model for the CF0 . CF1 complex is proposed which could serve as the basis for a unified interpretation of the kinetics of proton translocation in illuminated chloroplasts, the steady-state rate of photophosphorylation, the light-stimulated ATPase activity, and the light-activated exchange of tightly bound adenine nucleotides.

摘要

在浓度低于1 mM时,疏水性吡啶同系物会降低叶绿体中光磷酸化速率、光刺激的ATP水解速率以及紧密结合核苷酸的光激活交换速率,但会提高希尔反应速率。与解偶联剂不同,如此低浓度的有机碱存在会降低光依赖性泄漏速率,并且对破碎叶绿体中两阶段光磷酸化的效率没有影响。通过假设有机碱与类囊体膜中独立的等效位点结合,可以推导出一个简单的表达式,该表达式将观察到的光磷酸化速率和光刺激的ATP水解速率与溶液中有机碱的浓度定量相关,并给出解离平衡常数,其大小与吡啶同系物的相对疏水性相当。提出了一种可能的CF0.CF1复合体机制模型,该模型可以作为统一解释光照叶绿体中质子转运动力学、光磷酸化稳态速率、光刺激的ATP酶活性以及紧密结合腺嘌呤核苷酸光激活交换的基础。

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