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通过普鲁卡因抑制类囊体跨膜pH梯度来检测光合磷酸化中的局部质子电流。

Detecting localized proton currents in photophosphorylation by procaine inhibition of the transthylakoid pH-gradient.

作者信息

Laasch H, Ihle C, Günther G

机构信息

Institut für ökologische Pflanzenphysiologie, Heinrich-Heine-Universität, Düsseldorf, Germany.

出版信息

Biochim Biophys Acta. 1993 Jan 8;1140(3):251-61. doi: 10.1016/0005-2728(93)90064-m.

Abstract

The relationship between the transthylakoid pH-gradient, delta pH, and the velocity of photophosphorylation, Vp, in thylakoid membranes from spinach was investigated using the local anesthetic amine procaine as inhibitor of delta pH. When delta pH was driven by Photosystem (PS) II+I-dependent electron flow, passing through the cytochrome b6/f complex, inhibition by procaine was accompanied by an increase of ATP formation. It appeared that procaine allowed for values of Vp similar to those in controls (without procaine) at a significantly lower delta pH than in the controls. In contrast, when delta pH was driven by cyclic electron flow around PS I or by PS-II+I-dependent electron flow via a bypass around the cytochrome b6/f complex, or by PS II alone, procaine simultaneously caused an inhibition of delta pH and a decrease of ATP formation. Inhibition of delta pH by procaine did not induce an electrical membrane potential gradient that otherwise may have energetically compensated for the observed decline of delta pH. The electron flow capacity was unaffected by procaine. However, inhibition of delta pH did not significantly relax pH-dependent control of electron flux. Procaine accelerated ATP hydrolysis by pre-activated thylakoid ATPase to rates which were observed in the presence of uncouplers and had no direct effect on the activation state of the ATPase. The shift in the relationship between delta pH and Vp towards lower delta pH persisted in thermodynamic equilibrium between the phosphorylation potential and delta pH. The data indicated that the unconventional effect of procaine on photophosphorylation may be related to effects on proton translocation at the cytochrome b6/f complex and that a localized protonic coupling may occur between cytochrome b6/f and thylakoid-ATP-synthase complexes.

摘要

使用局部麻醉胺普鲁卡因作为ΔpH的抑制剂,研究了菠菜类囊体膜中类囊体跨膜pH梯度(ΔpH)与光合磷酸化速度(Vp)之间的关系。当ΔpH由依赖于光系统(PS)II+I的电子流驱动,通过细胞色素b6/f复合体时,普鲁卡因的抑制作用伴随着ATP形成的增加。似乎普鲁卡因在比对照显著更低的ΔpH下就能实现与对照(无普鲁卡因)相似的Vp值。相比之下,当ΔpH由围绕PS I的循环电子流驱动,或由通过细胞色素b6/f复合体旁路的PS-II+I依赖电子流驱动,或仅由PS II驱动时,普鲁卡因同时导致ΔpH的抑制和ATP形成的减少。普鲁卡因对ΔpH的抑制没有诱导出电膜电位梯度,否则该电位梯度可能在能量上补偿了观察到的ΔpH下降。电子流能力不受普鲁卡因影响。然而,对ΔpH的抑制并没有显著缓解对电子通量的pH依赖性控制。普鲁卡因将预激活的类囊体ATP酶的ATP水解加速到在解偶联剂存在下观察到的速率,并且对ATP酶的激活状态没有直接影响。在磷酸化电位和ΔpH之间的热力学平衡中,ΔpH与Vp之间的关系向更低的ΔpH的转变持续存在。数据表明,普鲁卡因对光合磷酸化的非常规作用可能与对细胞色素b6/f复合体质子转运的影响有关,并且在细胞色素b6/f和类囊体ATP合酶复合体之间可能发生局部质子偶联。

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