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钾离子对大鼠脑钠钙交换的调节作用。

The modulation of rat brain Na(+)-Ca2+ exchange by K+.

作者信息

Dahan D, Spanier R, Rahamimoff H

机构信息

Department of Biochemistry, Hebrew University Hadassah Medical School, Jerusalem, Israel.

出版信息

J Biol Chem. 1991 Feb 5;266(4):2067-75.

PMID:1989970
Abstract

The involvement of potassium ions in the Na(+)-Ca2+ exchange process was studied in rat brain synaptic plasma membrane (SPM) vesicles. Addition of equimolar [K+] to the intravesicular and the extravesicular medium led to a stimulation of the Na+ gradient-dependent Ca2+ influx; this stimulation was noticeable already at 0.5 mM and reached its maximum at 2 mM K+. The magnitude of the K+ stimulation was between 1.3-2.5-fold in different SPM preparations. K+ ions also stimulated the Na(+)-dependent Ca2+ efflux. K+ stimulation of Na(+)-Ca2+ exchange is of considerable specificity, since it is not mimicked by either Li+ or H+. The following lines of evidence suggest that K+ modulation of Na(+)-Ca2+ exchange involves the catalytic moiety of the transporter itself and not an unrelated K+ channel which modulates the membrane potential. 1) K+ stimulation of the transport process was conserved following reconstitution of the transporter into phospholipid-rich liposomes, an experimental condition which presumably separates the native membrane proteins among different vesicular structures. 2) K+ stimulation of Na+ gradient-dependent Ca2+ influx persists also when the build up of negative inside membrane potential is prevented by addition of carbonyl cyanide p-trifluoromethoxy phenylhydrazone which renders the membrane highly permeable to protons both in the native and the reconstituted preparation. 3) K+ stimulation of Na+ gradient-dependent Ca2+ influx is obtained also when tetraethylammonium chloride, 2,3-diaminopyridine and Cs+ are added to the Ca2+ uptake medium. Reconstituted SPM vesicles take up 86Rb+ in response to activation of Na+ gradient-dependent Ca2+ influx. The ratio of Ca2+ taken up by SPM vesicles in a Na+ gradient-dependent manner to the corresponding amounts of Rb+ taken up varies between 8-5 in different SPM preparations. If the stoichiometry of the process is 1 Rb+/1 Ca2+, then Rb+ cotransport is mediated by 10-20% of the transporters present in the preparation.

摘要

在大鼠脑突触质膜(SPM)囊泡中研究了钾离子在Na(+)-Ca2+交换过程中的作用。向囊泡内和囊泡外介质中添加等摩尔的[K+]会刺激依赖Na+梯度的Ca2+内流;这种刺激在0.5 mM时就很明显,并在2 mM K+时达到最大值。在不同的SPM制剂中,K+刺激的幅度在1.3至2.5倍之间。K+离子也刺激依赖Na(+)的Ca2+外流。K+对Na(+)-Ca2+交换的刺激具有相当的特异性,因为Li+或H+都不能模拟这种刺激。以下证据表明,K+对Na(+)-Ca2+交换的调节涉及转运体本身的催化部分,而不是调节膜电位的无关K+通道。1)在将转运体重构到富含磷脂的脂质体中后,转运过程的K+刺激得以保留,这种实验条件可能会将天然膜蛋白分隔在不同的囊泡结构中。2)当通过添加羰基氰化物对三氟甲氧基苯腙来阻止膜内负电位的形成时,K+对依赖Na+梯度的Ca2+内流的刺激仍然存在,该试剂使天然制剂和重构制剂中的膜对质子都具有高度通透性。3)当向Ca2+摄取介质中添加氯化四乙铵、2,3-二氨基吡啶和Cs+时,也能获得K+对依赖Na+梯度的Ca2+内流的刺激。重构的SPM囊泡在依赖Na+梯度的Ca2+内流激活后会摄取86Rb+。在不同的SPM制剂中,以依赖Na+梯度的方式被SPM囊泡摄取的Ca2+量与相应摄取的Rb+量之比在8至5之间变化。如果该过程的化学计量比为1 Rb+/1 Ca2+,那么Rb+共转运由制剂中10%至20%的转运体介导。

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