首页> 美国卫生研究院文献>The EMBO Journal >Galanin activates nucleotide-dependent K+ channels in insulin-secreting cells via a pertussis toxin-sensitive G-protein.
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Galanin activates nucleotide-dependent K+ channels in insulin-secreting cells via a pertussis toxin-sensitive G-protein.

机译:甘丙肽通过百日咳毒素敏感的G蛋白激活胰岛素分泌细胞中依赖核苷酸的K +通道。

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摘要

The effects of galanin (7-70 nM) on ATP-sensitive K+ channels (KATP channels), membrane potential and the release of insulin have been studied in the insulinoma cell line, RINm5F. Single-channel currents have been recorded from excised outside-out membrane patches as well as intact insulin-secreting cells and it is shown that galanin, added to the outside of the membrane, specifically activates KATP channels. Studies carried out using the fluorescent probe bisoxonol demonstrate that galanin hyperpolarizes RINm5F cells. Galanin was also found to abolish glyceraldehyde-stimulated immunoreactive insulin release from the insulinoma cells. Both the galanin-evoked hyperpolarization and inhibition of insulin release were abolished in cells pre-exposed to pertussis toxin. The possibility that the gating of KATP channels could be mediated by a G-protein was studied in patch-clamp experiments by adding F- to the solution bathing the inside of the cell membranes (open-cell), in order to generate the alumino-fluoride complex AlF4-. F- (1-10 mM) evoked dose-dependent activation of KATP channels and this effect was fully reversible. F- was also able to activate K+ channels inhibited by ATP. That the fluoride activation of KATP channels is mediated by the complex AlF4- was indicated by experiments in which AlCl3 (10 microM) was found to enhance further the activation of K+ channels evoked by 1 mM F- and by results showing that F(-)-stimulation of KATP channels was (i) abolished in the continued presence of F- by the Al3+ chelator deferoxamine (0.5 mM) and (ii) could be mimicked by VO4(3-) which has a structure similar to that of the AlF4- complex.
机译:已在胰岛素瘤细胞系RINm5F中研究了甘丙肽(7-70 nM)对ATP敏感的K +通道(KATP通道),膜电位和胰岛素释放的影响。从切除的外向外膜片以及完整的胰岛素分泌细胞中记录了单通道电流,结果表明,添加到膜外的甘丙肽可以特异性激活KATP通道。使用荧光探针联苯三酚进行的研究表明,甘丙肽可使RINm5F细胞超极化。还发现甘丙肽消除了胰岛素瘤细胞中甘油醛刺激的免疫反应性胰岛素的释放。在预先暴露于百日咳毒素的细胞中,甘丙肽引起的超极化和胰岛素释放的抑制均被消除。在膜片钳实验中研究了KATP通道门控可能由G蛋白介导的可能性,方法是将F-添加到浸入细胞膜内部(开孔)的溶液中,以生成铝氟化物络合物AlF4-。 F-(1-10 mM)引起KATP通道的剂量依赖性激活,这种作用是完全可逆的。 F-也能够激活被ATP抑制的K +通道。 KATP通道的氟化物活化是由复合AlF4-介导的,实验表明,AlCl3(10 microM)进一步增强了1 mM F-引起的K +通道的活化,结果表明F(-) (3)螯合剂去铁胺(0.5 mM)在F-的持续存在下消除了对KATP通道的刺激;(ii)VO4(3-)可以模拟其结构,该结构与AlF4相似复杂。

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