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光对叶绿体H⁺ -ATP酶的调控。Mg²⁺离子的作用。

Regulation of the chloroplast H+-ATPase by light. The involvement of Mg2+ ions.

作者信息

Shahak Y

出版信息

Eur J Biochem. 1986 Jan 2;154(1):179-85. doi: 10.1111/j.1432-1033.1986.tb09376.x.

Abstract

The involvement of Mg2+ ions in the light-dependent regulation of the chloroplast H+-ATPase was studied in both type C and osmotically shocked type A chloroplasts. The following results were obtained. ATPase activity measured under dark, partially uncoupling conditions, following light activation with dithiothreitol and pyocyanine, was markedly enhanced by the presence of Mg2+ in the activation stage. This Mg2+ effect required concentrations in the millimolar range, was rather slow (time range of minutes), reversible, rather unspecific and did not involve changes in the affinity to dithiothreitol. Dark deactivation of the ATPase in the absence of substrate was accelerated by Mg2+. The dark effect of Mg2+ also required millimolar concentrations, but was fast (time range of seconds), highly specific for Mg2+, and did not involve thiol oxidation. The major effect of the absence of Mg2+ from the light-activation stage or of its presence in the dark interval between activation and assay was the induction of an 'abnormal' sensitivity to uncouplers: after these treatments ATP hydrolysis was not stimulated but rather inhibited by NH4Cl or other uncouplers. The pretreatments in the light without Mg2+ or dark with Mg2+ did not affect the membrane proton permeability, nor the proton pumping coupled to ATPase activity. The results are discussed in terms of Mg2+-dependent regulation of the enzyme complex at the level of subunit interaction and its effect on the affinity to protons.

摘要

在C型叶绿体和经渗透冲击的A型叶绿体中研究了Mg2+离子参与叶绿体H+-ATP酶光依赖性调节的情况。得到了以下结果。在黑暗、部分解偶联条件下,用二硫苏糖醇和绿脓菌素进行光激活后测得的ATP酶活性,在激活阶段存在Mg2+时显著增强。这种Mg2+效应需要毫摩尔范围内的浓度,相当缓慢(时间范围为分钟),可逆,相当非特异性,且不涉及对二硫苏糖醇亲和力的变化。在没有底物的情况下,Mg2+加速了ATP酶的黑暗失活。Mg2+的黑暗效应也需要毫摩尔浓度,但很快(时间范围为秒),对Mg2+高度特异性,且不涉及硫醇氧化。光激活阶段不存在Mg2+或在激活与测定之间的黑暗间隔中存在Mg2+的主要影响是诱导对解偶联剂的“异常”敏感性:经过这些处理后,NH4Cl或其他解偶联剂不会刺激而是抑制ATP水解。在无Mg2+的光照下或有Mg2+的黑暗中进行预处理,不会影响膜质子通透性,也不会影响与ATP酶活性偶联的质子泵。从亚基相互作用水平上酶复合物的Mg2+依赖性调节及其对质子亲和力的影响方面对结果进行了讨论。

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