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肾上腺髓质细胞刺激-分泌偶联中的离子通道与膜电位

Ion channels and membrane potential in stimulus-secretion coupling in adrenal medulla cells.

作者信息

Kilpatrick D L, Slepetis R, Kirshner N

出版信息

J Neurochem. 1981 Mar;36(3):1245-55. doi: 10.1111/j.1471-4159.1981.tb01724.x.

Abstract

The role of Na+ channels and membrane potential in stimulus secretion coupling in adrenal medulla cell cultures was investigated. Veratridine, aconitine, batrachotoxin (BTX), and scorpion venom, which increase the flux of ions through tetrodotoxin(TTX)-sensitive Na+ channels, all evoke secretion of catecholamines that is blocked by TTX. TTX partially inhibits secretion induced by low concentrations of nicotine in Locke's solution but has no effect on high concentrations of nicotine (20 microM). In Ca2+-sucrose media TTX has no effect on secretion at either high or low concentrations of nicotine. Replacement of Na+ with Li+ in Locke's solution reduces the response to nicotine and to veratridine. Complete replacement of Na+ with hydrazine, diethanolamine, TRIS, and choline completely inhibits the response to nicotine and almost completely inhibits the response to veratridine. Following exposure of cells to 50 mM-100 mM-K+, nicotine does not stimulate catecholamine secretion unless the cells are resuspended in media containing less than 50 mM-K+. Neither dibutyryl-cyclic AMP nor dibutyryl-cyclic GMP evokes secretion. alpha-Bungarotoxin (1 microM) did not inhibit nicotine-induced secretion. These studies indicate that Na+ channels and acetylcholine (ACh) receptor ion channels are independently coupled to the influx of Ca2+. The membrane potential appears to affect nicotine- and veratridine-evoked secretion.

摘要

研究了钠通道和膜电位在肾上腺髓质细胞培养物刺激分泌偶联中的作用。藜芦碱、乌头碱、蛙毒素(BTX)和蝎毒可增加通过河豚毒素(TTX)敏感钠通道的离子通量,它们均可诱发儿茶酚胺分泌,且该分泌会被TTX阻断。TTX可部分抑制洛克溶液中低浓度尼古丁诱导的分泌,但对高浓度尼古丁(20μM)无影响。在Ca2 + -蔗糖培养基中,TTX对高、低浓度尼古丁诱导的分泌均无影响。用Li +替代洛克溶液中的Na +会降低对尼古丁和藜芦碱的反应。用肼、二乙醇胺、TRIS和胆碱完全替代Na +可完全抑制对尼古丁的反应,并几乎完全抑制对藜芦碱的反应。细胞暴露于50 mM - 100 mM - K +后,除非将细胞重悬于含K +低于50 mM的培养基中,尼古丁不会刺激儿茶酚胺分泌。二丁酰环磷酸腺苷和二丁酰环磷酸鸟苷均不诱发分泌。α-银环蛇毒素(1μM)不抑制尼古丁诱导的分泌。这些研究表明,钠通道和乙酰胆碱(ACh)受体离子通道独立地与Ca2 +内流偶联。膜电位似乎影响尼古丁和藜芦碱诱发的分泌。

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