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叶绿体中的质子转运及其与光合系统间电子传递的关系。

Proton translocation in chloroplasts and its relationship to electron transport between the photosystems.

作者信息

Fowler C F

出版信息

Biochim Biophys Acta. 1977 Mar 11;459(3):351-63. doi: 10.1016/0005-2728(77)90037-8.

Abstract

Using dark adapted isolated spinach chloroplasts and sequences of brief saturating flashes the correlation of the uptake and release of protons with electron transport from Photosystem II to Photosystem I were studied. The following observations and conclusions are reported: (1) Flash-induced proton uptake shows a weak, damped binary oscillation, with maxima occurring after the 2nd, 4th, etc. flashes. The damping factor is comparable to that observed in the O2 flash yield oscillation and therefore explained by misses in Photosystem II. (2) On the average and after a steady state is reached, each flash (i.e. each reduction of Q) induces the uptake of 2H+ from outside the chloroplasts. (3) Flash induced proton release inside the chloroplast membrane shows a strong damped binary oscillation with maximum release occurring also after the 2nd, 4th, etc. flashes. (4) This phenomenon is correlated with the earlier reported binary oscillations of electron transport [2] and shows that both electrons and protons are transported in pairs between the photosystems. (5) In two sequential flashes 4H+ from the outside of the thylakoid and 2e- from water are accumulated at a binding site B. Subsequently, the two electrons are transferred to non-protonated acceptors in Photosystem I (probably plastocyanin and cytochrome f) and the 4H+ are released inside the thylakoid. (6) It is concluded that a primary proton transporting site and/or energy conserving step located between the photosystems is being observed.

摘要

利用暗适应的分离菠菜叶绿体和一系列短暂的饱和闪光,研究了质子的吸收和释放与从光系统II到光系统I的电子传递之间的相关性。报告了以下观察结果和结论:(1)闪光诱导的质子吸收呈现出微弱的、有阻尼的二元振荡,在第2次、第4次等闪光后出现最大值。阻尼因子与在氧气闪光产率振荡中观察到的相当,因此由光系统II中的失误来解释。(2)平均而言,在达到稳态后,每次闪光(即每次Q的还原)诱导从叶绿体外部吸收2个H⁺。(3)叶绿体膜内闪光诱导的质子释放呈现出强烈的有阻尼的二元振荡,最大释放也在第2次、第4次等闪光后出现。(4)这种现象与先前报道的电子传递的二元振荡相关[2],表明电子和质子在光系统之间都是成对运输的。(5)在两个连续的闪光中,来自类囊体外部的4个H⁺和来自水的2个电子在结合位点B积累。随后,这两个电子转移到光系统I中的非质子化受体(可能是质体蓝素和细胞色素f),4个H⁺在类囊体内部释放。(6)得出的结论是,正在观察到位于光系统之间的一个初级质子运输位点和/或能量守恒步骤。

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