首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Store-operated Ca2+ entry and Ca2+ responses to hypothalamic releasing hormones in anterior pituitary cells from Orai1-/- and heptaTRPC knockout mice
【24h】

Store-operated Ca2+ entry and Ca2+ responses to hypothalamic releasing hormones in anterior pituitary cells from Orai1-/- and heptaTRPC knockout mice

机译:存储的CA2 +进入和Ca2 +对奥莱氏菌垂体细胞中下丘脑释放激素的Ca2 +响应 - / - 胚胎敲除小鼠

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Store operated Ca2+ entry (SOCE) is the most important Ca2+ entry pathway in non-excitable cells. However, SOCE can also play a pivotal role in excitable cells such as anterior pituitary (AP) cells. The AP gland contains five different cell types that release six major AP hormones controlling most of the entire endocrine system. AP hormone release is modulated by Ca2+ signals induced by different hypothalamic releasing hormones (HRHs) acting on specific receptors in AP cells. TRH and LHRH both induce Ca2+ release and Cat' entry in responsive cells while GHRH and CRH only induce Ca2+ entry. SOCE has been shown to contribute to Ca2+ responses induced by TRH and LHRH but no molecular evidence has been provided. Accordingly, we used AP cells isolated from mice devoid of Orai1 channels (noted as Orai1-/- or Orai1 KO mice) and mice lacking expression of all seven canonical TRP channels (TRPC) from TRPC1 to TRPC7 (noted as heptaTRPC KO mice) to investigate contribution of these putative channel proteins to SOCE and intracellular Ca2+ responses induced by HRHs. We found that thapsigargin-evoked SOCE is lost in AP cells from Orai1-/- mice but unaffected in cells from heptaTRPC KO mice. Conversely, while spontaneous intracellular Ca2+-oscillations related to electrical activity were not affected in the Orai1-/- mice, these responses were significantly reduced in heptaTRPC KO mice. We also found that Ca2+ entry induced by TRH and LHRH is decreased in AP cells isolated from Orai1-/-. In addition, Ca2+ responses to several HRHs, particularly TRH and GHRH, are decreased in the heptaTRPC KO mice. These results indicate that expression of Orai1, and not TRPC channel proteins, is necessary for thapsigargin-evoked SOCE and is required to support Ca2 entry induced by TRH and LHRH in mouse AP cells. In contrast, TRPC channel proteins appear to contribute to spontaneous Ca2+-oscillations and Ca2+ responses induced by TRH and GHRH. We conclude that expression of Orai1 and TRPC channels proteins may play differential and significant roles in AP physiology and endocrine control.
机译:商店操作CA2 +条目(SOCE)是最重要的单元格中最重要的CA2 +入口路径。然而,SOCE也可以在诸如前脑垂体(AP)细胞之类的可激发细胞中发挥枢轴作用。 AP腺体含有五种不同的细胞类型,可释放控制大多数整个内分泌系统的六个主要AP激素。 AP激素释放由在AP细胞中的特异性受体上作用于特异性受体的不同下丘脑释放激素(HRHS)诱导的CA2 +信号调节。 TRH和LHRH均在响应细胞中诱导CA2 +释放和猫进入,而GHRH和CRH仅诱导CA2 +进入。已显示脱离occe促进TRH和LHRH诱导的CA2 +响应,但没有提供分子证据。因此,我们使用从ORAI1通道的小鼠分离的小鼠(注意到作为ORAI1 - / - 或ORAI1 KO小鼠)和小鼠从TRPC1到TRPC7(注意到Heptatrpc Ko小鼠)的表达的小鼠和缺乏所有七个典型TRP通道(TRPC)的小鼠调查这些推定的通道蛋白对HRH诱导的诱导和细胞内Ca2 +反应的贡献。我们发现,从orai1 - / - 小鼠的AP细胞中丢失了Thapsigargin诱发的脱落,但在Heptatrpc Ko小鼠中不受影响。相反,虽然在奥莱氏菌或小鼠中不受电活动的自发性细胞内Ca2 + - 次次,但在Heptatrpc Ko小鼠中显着降低了这些反应。我们还发现TRH和LHRH诱导的CA2 +入口在奥莱奥莱替矿地分离的AP细胞中降低。此外,对几个HRH,特别是TRH和GHRH的CA2 +反应在Heptatrpc Ko小鼠中降低。这些结果表明orai1,而不是TRPC通道蛋白的表达是对瘤诱发的诱导的菌群所必需的,并且需要支持小鼠AP细胞中TRH和LHRH的CA2进入。相反,TRPC通道蛋白似乎有助于TRH和GHRH诱导的自发CA2 + - 振荡和CA2 +响应。我们得出结论,ORAI1和TRPC频道蛋白的表达可能在AP生理学和内分泌控制中起差异和显着的作用。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号