[高浓度镁离子对高等植物类囊体膜电子传递速率和质子交换的影响]。

Biofizika Pub Date : 2001-11-01
A R Ignat'ev, S A Khorobrykh, B N Ivanov
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引用次数: 0

摘要

在 pH 值为 4.0 至 8.0 的范围内,研究了镁离子浓度对离体豌豆硫球电子传递速率的影响。在培养基中没有镁离子的情况下,以及在有 5 mM MgCl2 的情况下,实验中不仅没有添加人工受体,而且还添加了铁氰化钾或甲基维罗庚作为受体。实验表明,在 pH 值为 5.5-6.5 时,该速率降至最低值,之后随着 pH 值的增加而逐渐上升。镁离子浓度增加到 20 毫摩尔对电子转移率有本质影响:在 pH 值为 4.0-5.0 时,电子转移率有所下降,但在 pH 值较高时,电子转移率有所上升。在这种镁离子浓度下,pH 值为 6.0-6.5 时电子转移率最大,pH 值为 7.0 时电子转移率最小。当 pH 值升至 8.0 时,上升幅度更大。研究发现,在不使用解偶联剂的情况下,镁离子影响下电子传输速率的变化与质子从硫液泡流出的一阶速率常数的变化相关。据推测,在镁离子的作用下,硫球保持质子的能力发生了变化,这是这些离子与膜外表面的电荷发生静电相互作用的结果。讨论了镁离子在体内调节电子传输速率的可能作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effect of high magnesium ion concentration on the electron transport rate and proton exchange in thylakoid membranes in higher plants].

The effects of magnesium ion concentration on the rate of electron transport in isolated pea thylakoids were investigated in the pH range from 4.0 up to 8.0. In the absence of magnesium ions in the medium and in the presence of 5 mM MgCl2 in the experiments not only without added artificial acceptors but also with ferricyanide or methylviologen as an acceptor, this rate had a well-expressed maximum at pH 5.0. It was shown that, after depression to minimal values at pH 5.5-6.5, it gradually rose with increasing pH. An increase in magnesium ion concentration up to 20 mM essentially affected the electron transfer rate: it decreased somewhat at pH 4.0-5.0 but increased at higher pH values. At this magnesium ion concentration, the maximum rate was at pH 6.0-6.5 and the minimum, at pH 7.0. Subsequent rise upon increasing pH to 8.0 was expressed more sharply. The influence of high magnesium ion concentration on the rate of electron transport was not observed in the presence of gramicidin D. It was found that without uncoupler, the changes in the electron transfer rate under the influence of magnesium ions correlated to the changes in the first-order rate constant of the proton efflux from thylakoids. It is supposed that the change in the ability of thylakoids to keep protons by the action of magnesium ions is the result of electrostatic interactions of these ions with the charges on the external surface of membranes. A possible role of regulation of the electron transport rate by magnesium ions in vivo is discussed.

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