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鲨鱼直肠腺主动分泌氯离子的机制:钠钾ATP酶在氯离子转运中的作用。

Mechanism of active chloride secretion by shark rectal gland: role of Na-K-ATPase in chloride transport.

作者信息

Silva P, Stoff J, Field M, Fine L, Forrest J N, Epstein F H

出版信息

Am J Physiol. 1977 Oct;233(4):F298-306. doi: 10.1152/ajprenal.1977.233.4.F298.

Abstract

The isolated rectal gland of Squalus acanthias was stimulated to secrete chloride against an electrical and a chemical gradient when perfused in vitro by theophylline and/or dibutyryl cyclic AMP. Chloride secretion was depressed by ouabain which inhibits Na-K-ATPase. Thiocyanate and furosemide also inhibited chloride secretion but ethoxzolamide, a carbonic anhydrase inhibitor, did not. Chloride transport was highly dependent on sodium concentration in the perfusate. The intracellular concentration of chloride averaged 70-80 meq/liter in intact glands, exceeding the level expected at electrochemical equilibrium and suggesting active transport of chloride into the cell. These features suggest a tentative hypothesis for chloride secretion by the rectal gland in which the uphill transport of chloride into the cytoplasm is coupled through a membrane carrier to the downhill movement of sodium along its electrochemical gradient. The latter is maintained by the Na-K-ATPase pump while chloride is extruded into the duct by electrical forces.

摘要

当在体外用人茶碱和/或二丁酰环磷腺苷灌注时,尖吻角鲨分离出的直肠腺会被刺激逆着电势和化学梯度分泌氯离子。哇巴因抑制钠钾ATP酶,从而抑制氯离子分泌。硫氰酸盐和速尿也抑制氯离子分泌,但碳酸酐酶抑制剂乙氧唑胺则没有此作用。氯离子转运高度依赖于灌注液中的钠浓度。完整腺体中氯离子的细胞内浓度平均为70 - 80毫当量/升,超过了电化学平衡时预期的水平,这表明氯离子是主动转运进入细胞的。这些特征提示了一个关于直肠腺分泌氯离子的初步假说,即氯离子向细胞质的上坡转运通过膜载体与钠沿其电化学梯度的下坡移动相偶联。钠钾ATP酶泵维持后者,而氯离子则通过电力被挤出到导管中。

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