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鱿鱼巨大轴突中细胞外镁离子依赖的钠离子外流

Extracellular magnesium-dependent sodium efflux in squid giant axons.

作者信息

Gonzalez-Serratos H, Rasgado-Flores H

机构信息

Department of Biophysics, University of Maryland Medical School, Baltimore 21201.

出版信息

Am J Physiol. 1990 Oct;259(4 Pt 1):C541-8. doi: 10.1152/ajpcell.1990.259.4.C541.

Abstract

Experiments were designed to determine whether the putative Na(+)-Mg2+ exchanger previously demonstrated to mediate Mg2+ efflux (R. DiPolo and L. Beagué. Biochim. Biophys. Acta 946: 424-428, 1988) could also mediate the efflux of Na+ (presumably a Na+ efflux-Mg2+ influx exchange) in squid giant axons. The effects of external Mg2+ (Mg(o)) on 22Na efflux were measured in internally dialyzed, ATP-fueled axons in which the contribution to Na+ efflux by other pathways was inhibited. To facilitate measurement of Mg(o)-dependent Na+ efflux, the intracellular concentration of Na+ was increased. To prevent Na(+)-Na+ exchange, external Na+ was replaced by tris(hydroxymethyl)aminomethane. To assess the effect of Mg(o) on Na+ efflux without altering the total divalent cation concentrations, Mg(o) was replaced mole-for-mole by external Ba2+ (Ba(o)). This manipulation produced reversible reductions in Na+ efflux. These reductions were neither due to membrane hyperpolarization nor to a direct effect of Bao but were due instead to the reduction in Mg(o). The Mg(o)-dependent Na+ efflux was inhibited by external amiloride but was spared by bumetanide. In the absence of external Na+, the Mgo-dependent Na+ efflux increased as a function of external Mg2+ with Michaelis-Menten kinetics. These results indicate that the Na(+)-Mg2+ exchange can mediate the efflux of Na+ (operate in Na+ efflux-Mg2+ influx mode of exchange).

摘要

实验旨在确定先前已证明介导镁离子外流的假定钠-镁离子交换体(R. 迪波洛和L. 贝阿盖。《生物化学与生物物理学报》946: 424 - 428, 1988)是否也能介导鱿鱼巨大轴突中钠离子的外流(推测为钠离子外流-镁离子内流交换)。在内部透析、以ATP为能量来源的轴突中测量了细胞外镁离子(Mg(o))对22钠外流的影响,其中其他途径对钠离子外流的贡献受到抑制。为便于测量依赖于Mg(o)的钠离子外流,增加了细胞内钠离子浓度。为防止钠-钠交换,用三(羟甲基)氨基甲烷取代细胞外钠离子。为评估Mg(o)对钠离子外流的影响而不改变总二价阳离子浓度,用细胞外钡离子(Ba(o))逐摩尔取代Mg(o)。这种操作使钠离子外流产生可逆性降低。这些降低既不是由于膜超极化,也不是由于Ba(o)的直接作用,而是由于Mg(o)的降低。依赖于Mg(o)的钠离子外流受到细胞外氨氯吡咪的抑制,但不受布美他尼的影响。在没有细胞外钠离子的情况下,依赖于Mg(o)的钠离子外流随细胞外镁离子浓度增加,呈现米氏动力学。这些结果表明钠-镁离子交换可介导钠离子外流(以钠离子外流-镁离子内流交换模式运作)。

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