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分离的牛肾上腺嗜铬细胞钙外流机制

Mechanism of calcium efflux from isolated bovine adrenal chromaffin cells.

作者信息

Nishimura S, Sorimachi M

出版信息

Jpn J Physiol. 1984;34(4):731-45. doi: 10.2170/jjphysiol.34.731.

Abstract

Chromaffin cells isolated from bovine adrenals and maintained in culture were loaded with 45Ca, and the mechanism of 45Ca efflux from these cells was investigated. During exposure to a Ca-deficient, Mg (1 mM)-containing medium, replacement of NaCl with sucrose, choline Cl, or Tris Cl reduced the rate of 45Ca efflux by approx. 30-40%, showing the presence of a Na-dependent 45Ca efflux mechanism. In contrast to the previous findings, however, Li can partially replace Na in maintaining 45Ca efflux. Reintroduction of Ca to a Ca-deficient medium increased the rate of 45Ca efflux depending on the concentrations of Ca, showing the presence of a Ca-dependent Ca efflux mechanism. The marked but transient rise in the rate of 45Ca efflux in response to Ca reintroduction was observed under conditions in which the concentration of internal Na was raised either by inhibiting Na pumping activity (ouabain or K removal) or by removal of Mg from the medium. The increased 45Ca efflux was further potentiated by simultaneous Na removal and was markedly inhibited by Ca channel blockers, suggesting that the transiently increased Ca influx in exchange for internal Na facilitated the rate of 45Ca efflux. However, other conditions which evoke catecholamine secretion by stimulating Ca influx also increased the rate of 45Ca efflux, suggesting that the increased Ca influx via any route increases 45Ca efflux. These results thus confirmed the presence of both Na-dependent and Ca-dependent Ca efflux mechanisms in chromaffin cells.

摘要

从牛肾上腺分离并培养的嗜铬细胞用⁴⁵Ca进行负载,然后研究了这些细胞中⁴⁵Ca流出的机制。在暴露于缺钙、含1 mM Mg的培养基期间,用蔗糖、氯化胆碱或三羟甲基氨基甲烷氯化物替代NaCl可使⁴⁵Ca流出速率降低约30 - 40%,表明存在一种依赖Na的⁴⁵Ca流出机制。然而,与先前的发现相反,Li在维持⁴⁵Ca流出方面可部分替代Na。将Ca重新引入缺钙培养基中会根据Ca的浓度增加⁴⁵Ca流出速率,表明存在一种依赖Ca的Ca流出机制。在通过抑制Na泵活性(哇巴因或去除K)或从培养基中去除Mg来提高细胞内Na浓度的条件下,观察到响应Ca重新引入时⁴⁵Ca流出速率显著但短暂的升高。同时去除Na进一步增强了增加的⁴⁵Ca流出,并且Ca通道阻滞剂可显著抑制该过程,这表明通过与细胞内Na交换而短暂增加的Ca内流促进了⁴⁵Ca流出速率。然而,通过刺激Ca内流引起儿茶酚胺分泌的其他条件也增加了⁴⁵Ca流出速率,这表明通过任何途径增加的Ca内流都会增加⁴⁵Ca流出。因此,这些结果证实了嗜铬细胞中存在依赖Na和依赖Ca的Ca流出机制。

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