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酵母质膜ATP酶重组蛋白脂质体中与ATP水解偶联的钾离子转运

Potassium transport coupled to ATP hydrolysis in reconstituted proteoliposomes of yeast plasma membrane ATPase.

作者信息

Villalobo A

出版信息

J Biol Chem. 1982 Feb 25;257(4):1824-8.

PMID:6120168
Abstract

Potassium transport coupled to ATP hydrolysis has been reconstituted in proteoliposomes using a highly purified plasma membrane Mg2+-dependent ATPase of the yeast Schizosaccharomyces pombe. The ATPase activity in the incorporated enzyme was strongly stimulated (2.2-fold) by the H+-conducting agent carbonyl cyanide m-chlorophenylhydrazone (CCCP). The H+/K+ exchanger nigericin (in the presence of K+) stimulated 1.6-fold the ATPase activity. When both ionophores were added together, the stimulation was increased up to 2.7-fold. When a potassium concentration gradient (high K+ in) was applied to the proteoliposome membrane, a significant drop in the CCCP-stimulated ATPase activity was observed. Inversion of the K+ concentration gradient (high K+ out) did not decrease the stimulation by CCCP. High Na+ in also decreased the stimulation induced by CCCP in the absence but not in the presence of external K+. However, high Li+ in had no effect. Direct potassium efflux from the proteolyposomes was detected upon addition of MgATP using a selective K+ electrode. The ATP-dependent potassium efflux was abolished in CCCP and/or nigericin-pretreated proteoliposomes. However, during steady state ATP hydrolysis, a transient and small K+ efflux was observed upon addition of a CCCP pulse. I propose that the plasma membrane Mg2+-dependent ATPase in yeast cells not only carries out electrogenic H+ ejection but also drives the uptake of potassium via a voltage-sensitive gate which is closed in the absence and open in the presence of the membrane potential.

摘要

利用裂殖酵母高度纯化的质膜Mg2+依赖性ATP酶,已在蛋白脂质体中重建了与ATP水解偶联的钾转运。掺入酶中的ATP酶活性受到H+传导剂羰基氰化物间氯苯腙(CCCP)的强烈刺激(2.2倍)。H+/K+交换剂尼日利亚菌素(在有K+存在时)使ATP酶活性提高了1.6倍。当两种离子载体一起添加时,刺激作用增加到2.7倍。当向蛋白脂质体膜施加钾浓度梯度(高K+在内)时,观察到CCCP刺激的ATP酶活性显著下降。K+浓度梯度反转(高K+在外)并没有降低CCCP的刺激作用。高Na+在内也会在没有外部K+时降低CCCP诱导的刺激,但在有外部K+时则不会。然而,高Li+在内没有影响。使用选择性K+电极在添加MgATP后检测到蛋白脂质体中有直接的钾外流。在CCCP和/或尼日利亚菌素预处理的蛋白脂质体中,ATP依赖性钾外流被消除。然而,在稳态ATP水解过程中,添加CCCP脉冲后观察到短暂且少量的K+外流。我认为酵母细胞质膜Mg2+依赖性ATP酶不仅进行电致H+排出,还通过一个电压敏感门驱动钾的摄取,该门在没有膜电位时关闭,在有膜电位时打开。

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