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首页> 外文期刊>The Journal of Physiology >GABAB receptor activation inhibits exocytosis in rat pancreatic beta-cells by G-protein-dependent activation of calcineurin.
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GABAB receptor activation inhibits exocytosis in rat pancreatic beta-cells by G-protein-dependent activation of calcineurin.

机译:GABA B受体的激活通过钙调神经磷酸酶的G蛋白依赖性激活来抑制大鼠胰腺β细胞的胞吐作用。

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We have investigated the regulation of hormone secretion from rat pancreatic islets by the GABAB receptors (GABABRs). Inclusion of the specific GABABR antagonist CGP 55845 in the extracellular medium increased glucose-stimulated insulin secretion 1.6-fold but did not affect the release of glucagon and somatostatin. Conversely, addition of the GABABR agonist baclofen inhibited glucose-stimulated insulin secretion by approximately 60%. Using RT-PCR, transcription of GABABR1a-c,f and GABABR2 subunits was detected in beta-cells. Measurements of membrane currents and cell capacitance were applied to single beta-cells to investigate the mechanisms by which GABABR activation inhibits insulin secretion. In perforated-patch measurements, baclofen inhibited exocytosis elicited by 500-ms voltage-clamp depolarizations to 0 mV by < or = 80% and voltage-gated Ca2+ entry by only approximately 30%. Both effects were concentration-dependent with IC50 values of approximately 2 microm. The inhibitory action of baclofen was abolished in the presence of CGP 55845. The ability of baclofen to suppress exocytosis was prevented by pre-treatment with pertussis toxin and by inclusion of GDPbetaS in the intracellular medium, and became irreversible in the presence of GTPgammaS as expected for a process involving inhibitory G-proteins (Gi/o-proteins). The inhibitory effect of baclofen resulted from activation of the serine/threonine protein phosphatase calcineurin and pre-treatment with cyclosporin A or intracellular application of calcineurin autoinhibitory peptide abolished the effect. Addition of baclofen had no effect on [Ca2+]i and electrical activity in glucose-stimulated beta-cells. These data indicate that GABA released from beta-cells functions as an autocrine inhibitor of insulin secretion in pancreatic islets and that the effect is principally due to direct suppression of exocytosis.
机译:我们已经研究了GABAB受体(GABABR)对大鼠胰岛激素分泌的调节。在细胞外培养基中加入特异性GABABR拮抗剂CGP 55845,可使葡萄糖刺激的胰岛素分泌增加1.6倍,但不影响胰高血糖素和生长抑素的释放。相反,添加GABABR激动剂巴氯芬可抑制葡萄糖刺激的胰岛素分泌约60%。使用RT-PCR,在β细胞中检测到GABABR1a-c,f和GABABR2亚基的转录。将膜电流和细胞电容的测量值应用于单个β细胞,以研究GABABR激活抑制胰岛素分泌的机制。在穿孔膜片测量中,巴氯芬抑制500 ms电压钳去极化至0 mV≤80%引起巴氯芬抑制胞吐作用,而电压门控Ca2 +进入仅约30%。两种作用均与浓度有关,IC50值约为2微米。在存在CGP 55845的情况下,巴氯芬的抑制作用被取消。通过用百日咳毒素进行预处理并在细胞内培养基中加入GDPbetaS,可以防止巴氯芬抑制胞吐作用,并且如预期的那样,在存在GTPgammaS的情况下巴氯芬的抑制作用变得不可逆。用于涉及抑制性G蛋白(Gi / o蛋白)的过程。巴氯芬的抑制作用是由丝氨酸/苏氨酸蛋白磷酸酶钙调神经磷酸酶的激活引起的,用环孢菌素A预处理或在细胞内施用钙调神经磷酸酶自抑制肽可以消除这种作用。加入巴氯芬对葡萄糖刺激的β细胞中的[Ca2 +] i和电活性没有影响。这些数据表明,从β细胞释放的GABA可以作为胰岛中胰岛素分泌的自分泌抑制剂,其作用主要是由于胞吐作用的直接抑制。

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