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豌豆子叶线粒体中钾离子转运与ATP合成的关系

Relationship of potassium ion transport and ATP synthesis in pea cotyledon mitochondria.

作者信息

Hamman W M, Spencer M

出版信息

Can J Biochem. 1977 Apr;55(4):376-83. doi: 10.1139/o77-052.

Abstract

Simultaneous monitoring of ATP synthesis and K+ movements across pea mitochondrial membranes revealed information about the competition of the two processes for mitochondrial energy. In the presence of valinomycin and at low extramitochondrial K+ concentration, ADP could be phosphorylated rapidly. This occurred with a decrease in net potassium ion uptake. At higher external K+ concentrations respiratory energy was unavailable for ATP synthesis and only a portion of added ADP could be phosphorylated within a reasonable time. Magnesium ions were shown to have an inhibitor effect on the K+ uptake, and stimulated a greater rate of ATP synthesis. When valinomycin and ADP were added simultaneously so that phosphorylation of the ADP and enhancement of K+ uptake could complete for mitochondrial energy, K+ uptake was preferred over ATP synthesis.

摘要

同时监测豌豆线粒体膜上的ATP合成和钾离子跨膜转运,揭示了这两个过程对线粒体能量竞争的相关信息。在缬氨霉素存在且线粒体外钾离子浓度较低的情况下,ADP能够迅速磷酸化。此时钾离子净摄取量减少。在较高的外部钾离子浓度下,呼吸能量无法用于ATP合成,只有一部分添加的ADP能在合理时间内被磷酸化。镁离子对钾离子摄取有抑制作用,并能刺激更高的ATP合成速率。当同时添加缬氨霉素和ADP,使得ADP磷酸化和钾离子摄取增强对线粒体能量产生竞争时,钾离子摄取优先于ATP合成。

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