首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >ATP-sensitive K+ channels and mitochondrial permeability transition pore mediate effects of hydrogen sulfide on cytosolic Ca2+ homeostasis and insulin secretion in beta-cells
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ATP-sensitive K+ channels and mitochondrial permeability transition pore mediate effects of hydrogen sulfide on cytosolic Ca2+ homeostasis and insulin secretion in beta-cells

机译:ATP敏感k +通道和线粒体渗透率过渡孔介导硫化氢对β细胞中细胞溶质Ca2 +稳态和胰岛素分泌的影响

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Hydrogen sulfide (H2S) is endogenously produced in pancreatic ss cells and its level is elevated in diabetes. Here, we report that H2S affects insulin secretion via two mechanisms that converge on cytosolic free Ca2+ ([Ca2+](i)), a key mediator of insulin exocytosis. Cellular calcium imaging, using Fura-2 or Fluo-4, showed that exposure of INS-1E cells to H2S (30-100 mu M) reduced both [Ca2+](i) levels (by 21.7 +/- 2.3%) and oscillation frequency (p < 0.01, n = 4). Consistent with a role of plasma membrane K-ATP channels (plasma-K-ATP), the effects of H2S on [Ca2+](i) were blocked by gliclazide (a blocker of plasma-K-ATP channels), but were mimicked by diazoxide (an activator of plasma-K-ATP channels). Surprisingly, when Ca2+ entry via plasma membrane was inhibited using Ca2+-free external solutions, H2S increased [Ca2+](i) by 39.7 +/- 3.6% suggesting Ca2+ release from intracellular stores. H2S-induced [Ca2+](i) increases were abolished by either FCCP (which depletes Ca2+ stored in mitochondria) or cyclosporine A (an inhibitor of mitochondrial permeability transition pore, mPTP) suggesting that H2S induces Ca2+ release from mitochondria. Measurement of mitochondrial membrane potential (MMP) suggested that H2S causes MMP depolarization, which was blocked by cyclosporine A. Finally, insulin measurements by ELISA indicated that H2S decreased insulin release from INS-1E cells, but after plasma membrane Ca2+ entry was blocked by nifedipine, H2S-induced mitochondrial Ca2+ release is able to increase insulin release. Together, our results indicate that H2S has dual effects on insulin release suggesting that, with different metabolic conditions, H2S may differentially modulate the insulin release from pancreatic ss cells and play a role in ss cell dysfunction.
机译:硫化氢(H2S)在胰腺SS细胞中内源性产生,其水平在糖尿病中升高。在这里,我们报告H2S通过两种机制影响胰岛素分泌,该机制会聚在细胞溶溶胶胞嘧啶的胞囊蛋白外尿作用症的关键介质。使用Fura-2或Fluo-4的细胞钙成像表明,INS-1E细胞暴露于H 2 S(30-100μm)减少了[Ca2 +](I)水平(21.7 +/- 2.3%)和振荡频率(p <0.01,n = 4)。与血浆膜K-ATP通道(血浆-K-ATP)的作用一致,H 2 S对[Ca2 +](I)的影响通过Gliclazide(血浆-K-ATP通道的阻断剂)阻断,但是由其模仿二酰胺(等离子体-K-ATP通道的活化剂)。令人惊讶的是,当使用CA2 + -FREE外部溶液抑制通过质膜的CA2 +进入时,H2S增加了39.7 +/- 3.6%的[Ca2 +](i),提示Ca2 +从细胞内储存释放。通过FCCP(储存在线粒体中的CA2 +)或环孢菌素A(线粒体渗透率过渡孔,MPTP的抑制剂)的诱导的H2S诱导的[CA2 +](I)增加,表明H2S从线粒体诱导CA2 +释放。线粒体膜电位(MMP)的测量表明,H 2 S导致MMP去极化,其被环孢菌素A阻断。最后,ELISA的胰岛素测量表明H2S从INS-1E细胞中降低了胰岛素释放,但在血浆膜CA2 +进入后由硝苯地平阻断,H 2 S诱导的线粒体Ca2 +释放能够增加胰岛素释放。我们的结果表明,H2S对胰岛素释放具有双重影响,表明,在不同的代谢条件下,H2S可以差异地调节胰岛素细胞的胰岛素释放,并在SS细胞功能障碍中发挥作用。

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