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质子在钠泵反应中替代钠和钾。

Protons as substitutes for sodium and potassium in the sodium pump reaction.

作者信息

Polvani C, Blostein R

机构信息

Department of Medicine, McGill University, Montreal, Quebec, Canada.

出版信息

J Biol Chem. 1988 Nov 15;263(32):16757-63.

PMID:2846547
Abstract

The role of protons as substitutes for Na+ and/or K+ in the sodium pump reaction was examined using inside-out membrane vesicles derived from human red cells. Na+-like effects of protons suggested previously (Blostein, R. (1985) J. Biol. Chem. 260, 829-833) were substantiated by the following observations: (i) in the absence of extravesicular (cytoplasmic) Na+, an increase in cytoplasmic [H+] increased both strophanthidin-sensitive ATP hydrolysis (nu) and the steady-state level of phosphoenzyme, EP, and (ii) as [H+] is increased, the Na+/ATP coupling ratio is decreased. K+-like effects of protons were evidenced in the following results: (i) an increase in nu, decrease in EP, and hence increase in EP turnover (nu/EP) occur when intravesicular (extracellular) [H+] is increased; (ii) an increase in the rate of Na+ influx into K+(Rb+)-free inside-out vesicles and (iii) a decrease in Rb+/ATP coupling occur when [H+] is increased. Direct evidence for H+ being translocated in place of cytoplasmic Na+ and extracellular K+ was obtained by monitoring pH changes using fluorescein isothiocyanate-dextran-filled vesicles derived from 4',4-diisothiocyano-2',2-stilbene disulfonate-treated cells. With the initial pHi = pHo = pH 6.2, a strophanthidin-sensitive decrease in pHi was observed following addition of ATP provided the vesicles contained K+. This pH gradient was abolished following addition of Na+. With alkali cation-free inside-out vesicles, a strophanthidin-sensitive increase in pH was observed upon addition of both ATP and Na+. The foregoing changes in pHi were not affected by the addition of tetrabutylammonium to dissipate any membrane potential and were not observed at pH 6.8. These ATP-dependent cardiac glycoside-sensitive proton movements indicate Na,K-ATPase mediated Na+/H+ exchange in the absence of extracellular K+ as well as H+/K+ exchange in the absence of cytoplasmic Na+.

摘要

利用源自人红细胞的内翻膜囊泡,研究了质子在钠泵反应中替代Na⁺和/或K⁺的作用。先前曾提出质子具有类似Na⁺的效应(布洛斯坦,R.(1985年)《生物化学杂志》260,829 - 833),以下观察结果证实了这一点:(i)在无囊泡外(细胞质)Na⁺的情况下,细胞质[H⁺]的增加会使毒毛花苷敏感的ATP水解(ν)以及磷酸化酶EP的稳态水平均升高;(ii)随着[H⁺]的增加,Na⁺/ATP偶联比降低。质子具有类似K⁺的效应可由以下结果证明:(i)当囊泡内(细胞外)[H⁺]增加时,ν增加,EP降低,因此EP周转率(ν/EP)增加;(ii)当[H⁺]增加时,Na⁺流入无K⁺(Rb⁺)的内翻囊泡的速率增加;(iii)Rb⁺/ATP偶联降低。通过使用源自4',4 - 二异硫氰酸 - 2',2 - 芪二磺酸处理细胞的异硫氰酸荧光素 - 葡聚糖填充囊泡监测pH变化,获得了H⁺替代细胞质Na⁺和细胞外K⁺进行转运的直接证据。当初始pHi = pHo = pH 6.2时,如果囊泡含有K⁺,加入ATP后会观察到毒毛花苷敏感的pHi降低。加入Na⁺后,这种pH梯度消失。对于无碱金属阳离子的内翻囊泡,加入ATP和Na⁺后会观察到毒毛花苷敏感的pH升高。上述pHi的变化不受加入四丁基铵以消除任何膜电位的影响,并且在pH 6.8时未观察到。这些依赖ATP的强心苷敏感质子运动表明,在无细胞外K⁺的情况下,Na,K - ATP酶介导Na⁺/H⁺交换,在无细胞质Na⁺的情况下介导H⁺/K⁺交换。

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