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外部阳离子对电压依赖性钠钾泵电流的刺激作用:不同钾同系物的选择性

Voltage-dependent stimulation of Na+/K(+)-pump current by external cations: selectivity of different K+ congeners.

作者信息

Omay H S, Schwarz W

机构信息

Max-Planck-Institut für Biophysik, Frankfurt/Main, Germany.

出版信息

Biochim Biophys Acta. 1992 Feb 17;1104(1):167-73. doi: 10.1016/0005-2736(92)90146-d.

Abstract

Currents generated by the endogenous Na+/K+ pump in the oocytes of Xenopus laevis were determined under voltage-clamp as currents activated by different K+ congeners. The voltage dependence of the pump current reflects voltage-dependent steps in the reaction cycle. The decrease of K(+)-activated pump current at positive potentials has been attributed to voltage-dependent stimulation by the external K+ (Rakowski, Vasilets, LaTona and Schwarz (1991) J. Membr. Biol. 121, 177-187). In Na(+)-free solution, activation of the pump by external cations seems to be the dominating voltage-dependent and rate-determining step in the reaction cycle. Under these conditions, the voltage dependence of apparent Km values for pump activation can be analyzed. The dependence suggests voltage-dependent binding of extracellular cations assuming that an effective charge of about 0.4 of an elementary charge is moved in the electrical field during a step associated with the cation binding. The apparent Km values at 0 mV differ for various cations that stimulate pump activity. The values are in mM: 0.10 for Tl+, 0.63 for K+, 0.71 for Rb+, 9.3 for NH4+, and 12.9 for Cs+. The corresponding apparent affinities follow the same sequence as the cation permeability of the K(+)-selective delayed rectifier channel of nerve cells. The results are compatible with the interpretation that the cations have to pass an ion-selective access channel to reach their binding sites in the pump molecule.

摘要

在电压钳制条件下,测定了非洲爪蟾卵母细胞中内源性钠钾泵产生的电流,该电流由不同的钾同系物激活。泵电流的电压依赖性反映了反应循环中依赖电压的步骤。正电位下钾激活的泵电流降低归因于外部钾的电压依赖性刺激(拉科夫斯基、瓦西列茨、拉托纳和施瓦茨(1991年)《膜生物学杂志》121卷,177 - 187页)。在无钠溶液中,外部阳离子对泵的激活似乎是反应循环中主要的依赖电压且决定速率的步骤。在这些条件下,可以分析泵激活的表观米氏常数的电压依赖性。这种依赖性表明细胞外阳离子的电压依赖性结合,假设在与阳离子结合相关的步骤中,约0.4个基本电荷的有效电荷在电场中移动。不同刺激泵活性的阳离子在0 mV时的表观米氏常数不同。其值以毫摩尔为单位:铊离子为0.10,钾离子为0.63,铷离子为0.71,铵离子为9.3,铯离子为12.9。相应的表观亲和力遵循与神经细胞钾选择性延迟整流通道的阳离子通透性相同的顺序。这些结果与阳离子必须通过离子选择性通道才能到达其在泵分子中的结合位点这一解释相符。

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