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17β-雌二醇对胰腺β细胞中K(ATP)通道活性的快速调节涉及雌激素受体β和心钠素受体。

Rapid regulation of K(ATP) channel activity by 17{beta}-estradiol in pancreatic {beta}-cells involves the estrogen receptor {beta} and the atrial natriuretic peptide receptor.

作者信息

Soriano Sergi, Ropero Ana B, Alonso-Magdalena Paloma, Ripoll Cristina, Quesada Ivan, Gassner Birgit, Kuhn Michaela, Gustafsson Jan-Ake, Nadal Angel

机构信息

Institute of Bioengineering and CIBERDEM, Universidad Miguel Hernández de Elche, Alicante, Spain.

出版信息

Mol Endocrinol. 2009 Dec;23(12):1973-82. doi: 10.1210/me.2009-0287. Epub 2009 Oct 23.

Abstract

The ATP-sensitive potassium (K(ATP)) channel is a key molecule involved in glucose-stimulated insulin secretion. The activity of this channel regulates beta-cell membrane potential, glucose- induced Ca(2+) signals, and insulin release. In this study, the rapid effect of physiological concentrations of 17beta-estradiol (E2) on K(ATP) channel activity was studied in intact beta-cells by use of the patch-clamp technique. When cells from wild-type (WT) mice were used, 1 nm E2 rapidly reduced K(ATP) channel activity by 60%. The action of E2 on K(ATP) channel was not modified in beta-cells from ERalpha-/- mice, yet it was significantly reduced in cells from ERbeta-/- mice. The effect of E2 was mimicked by the ERbeta agonist 2,3-bis(4-hydroxyphenyl)-propionitrile (DPN). Activation of ERbeta by DPN enhanced glucose-induced Ca(2+) signals and insulin release. Previous evidence indicated that the acute inhibitory effects of E2 on K(ATP) channel activity involve cyclic GMP and cyclic GMP-dependent protein kinase. In this study, we used beta-cells from mice with genetic ablation of the membrane guanylate cyclase A receptor for atrial natriuretic peptide (also called the atrial natriuretic peptide receptor) (GC-A KO mice) to demonstrate the involvement of this membrane receptor in the rapid E2 actions triggered in beta-cells. E2 rapidly inhibited K(ATP) channel activity and enhanced insulin release in islets from WT mice but not in islets from GC-A KO mice. In addition, DPN reduced K(ATP) channel activity in beta-cells from WT mice, but not in beta-cells from GC-A KO mice. This work unveils a new role for ERbeta as an insulinotropic molecule that may have important physiological and pharmacological implications.

摘要

ATP敏感性钾(K(ATP))通道是参与葡萄糖刺激胰岛素分泌的关键分子。该通道的活性调节β细胞膜电位、葡萄糖诱导的[Ca(2+)]i信号以及胰岛素释放。在本研究中,利用膜片钳技术在完整的β细胞中研究了生理浓度的17β-雌二醇(E2)对K(ATP)通道活性的快速作用。当使用野生型(WT)小鼠的细胞时,1 nM E2可使K(ATP)通道活性迅速降低60%。E2对K(ATP)通道的作用在ERα基因敲除小鼠的β细胞中未改变,但在ERβ基因敲除小鼠的细胞中显著降低。ERβ激动剂2,3-双(4-羟苯基)-丙腈(DPN)模拟了E2的作用。DPN激活ERβ可增强葡萄糖诱导的Ca(2+)信号和胰岛素释放。先前的证据表明,E2对K(ATP)通道活性的急性抑制作用涉及环鸟苷酸(cGMP)和cGMP依赖性蛋白激酶。在本研究中,我们使用了心房利钠肽膜鸟苷酸环化酶A受体基因敲除小鼠(也称为心房利钠肽受体基因敲除小鼠,GC-A KO小鼠)的β细胞,以证明该膜受体参与β细胞中由E2触发的快速作用。E2可迅速抑制WT小鼠胰岛中的K(ATP)通道活性并增强胰岛素释放,但在GC-A KO小鼠的胰岛中则不然。此外,DPN可降低WT小鼠β细胞中的K(ATP)通道活性,但在GC-A KO小鼠的β细胞中则无此作用。这项工作揭示了ERβ作为一种促胰岛素分子的新作用,这可能具有重要的生理和药理学意义。

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