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叶绿体类囊体膜悬浮液中离子的光依赖性重新分布。

Light-dependent redistribution of ions in suspensions of chloroplast thylakoid membranes.

作者信息

Hind G, Nakatani H Y, Izawa S

出版信息

Proc Natl Acad Sci U S A. 1974 Apr;71(4):1484-8. doi: 10.1073/pnas.71.4.1484.

Abstract

Ion movements associated with the pH rise that is observed upon illumination of thylakoid suspensions at low pH have been studied by a multiparameter technique. Light-dependent, dark-reversible fluxes of H(+), Cl(-), Na(+), K(+) and divalent cations were monitored, together with simultaneous changes in the optical density of the suspension. Extensive uptake of Cl(-) and efflux of Mg(2+) accompany the apparent inward movement of H(+) in the light. Only minor efflux of K(+) is seen and Na(+) appears immobile. The Cl(-) and Mg(2+) fluxes together compensate for most of the charge transferred as H(+), contributing respectively about 49% and 43% on an equivalent basis. The ratio of Cl(-) influx to Mg(2+) efflux is variable, but usually >1.0. The Mg(2+) flux can be supplanted by (1) K(+) flux, if the K(+)/Mg(2+) activity ratio in the suspension is high, and (2) Ca(2+) flux, if the thylakoids are equilibrated with suspending media containing Ca(2+). The affinity of the divalentcation-binding sites, or carrier mechanism, is greater for Ca(2+) than for Mg(2+). Schemes can be drawn up to account for the observed ion movements on the basis of either a chemical or a chemiosmotic mechanism for energy transduction in chloroplasts. In intact chloroplasts, light-dependent control of Mg(2+) distribution between thylakoid and stroma could serve to regulate enzyme activities in the carbon fixation pathway, and hence photosynthesis.

摘要

利用多参数技术研究了在低pH值下类囊体悬浮液光照时观察到的与pH升高相关的离子运动。监测了H⁺、Cl⁻、Na⁺、K⁺和二价阳离子的光依赖、暗可逆通量,以及悬浮液光密度的同步变化。光照下H⁺明显向内移动时,伴随着大量Cl⁻的摄取和Mg²⁺的外流。仅观察到少量K⁺外流,而Na⁺似乎不移动。Cl⁻和Mg²⁺通量共同补偿了作为H⁺转移的大部分电荷,在等效基础上分别贡献约49%和43%。Cl⁻内流与Mg²⁺外流的比值是可变的,但通常>1.0。如果悬浮液中的K⁺/Mg²⁺活度比高,Mg²⁺通量可被(1)K⁺通量取代;如果类囊体与含Ca²⁺的悬浮介质平衡,Mg²⁺通量可被(2)Ca²⁺通量取代。二价阳离子结合位点或载体机制对Ca²⁺的亲和力大于对Mg²⁺的亲和力。可以根据叶绿体能量转导的化学或化学渗透机制来制定方案,以解释观察到的离子运动。在完整的叶绿体中,类囊体和基质之间Mg²⁺分布的光依赖控制可用于调节碳固定途径中的酶活性,从而调节光合作用。

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