...
首页> 外文期刊>American Journal of Physiology >Role of TRPC3 channels in ATP-induced Ca2+ signaling in principal cells of the inner medullary collecting duct.
【24h】

Role of TRPC3 channels in ATP-induced Ca2+ signaling in principal cells of the inner medullary collecting duct.

机译:TRPC3通道在内髓内收集管道主细胞中ATP诱导的CA2 +信号传导中的作用。

获取原文
获取原文并翻译 | 示例

摘要

The transient receptor potential channel TRPC3 is exclusively expressed in the apical membrane of principal cells of the collecting duct (CD) both in vivo and in the mouse CD cell line IMCD-3. Previous studies revealed that ATP-induced apical-to-basolateral transepithelial Ca(2+) flux across IMCD-3 monolayers is increased by overexpression of TRPC3 and attenuated by a dominant negative TRPC3 construct, suggesting that Ca(2+) entry across the apical membrane occurs via TRPC3 channels. To test this hypothesis, we selectively measured the Ca(2+) permeability of the apical membrane of fura-2-loaded IMCD-3 cells using the Mn(2+) quench technique. Mn(2+) influx across the apical membrane was increased 12- to 16-fold by apical ATP and was blocked by the pyrazole derivative BTP2, a known inhibitor of TRPC3 channels, with an IC(50) value <100 nM. In contrast, Mn(2+) influx was only increased approximately 2-fold by basolateral ATP. Mn(2+) influx was also activated by apical, but not basolateral, 1-stearoyl-2-acetyl-sn-glycerol (SAG), a known activator of TRPC3 channels. Apical ATP- and SAG-induced Mn(2+) influx was increased by overexpression of TRPC3 and completely blocked by expression of the dominant negative TRPC3 construct. Mn(2+) influx was also stimulated approximately 2-fold by thapsigargin applied to either the apical or basolateral side. Thapsigargin-induced flux was blocked by BTP2 but was unaffected by overexpression of TRPC3 or by dominant negative TRPC3. Apical ATP, but not basolateral ATP, increased transepithelial (45)Ca(2+) flux. These results demonstrate that the apical membrane of IMCD-3 cells has two distinct Ca(2+) influx pathways: 1) a store-operated channel activated by thapsigargin and basolateral ATP and 2) TRPC3 channels activated by apical ATP. Only activation of TRPC3 leads to net transepithelial apical-to-basolateral Ca(2+) flux. Furthermore, these results demonstrate that native TRPC3 is not a store-operated channel in IMCD-3 cells.
机译:瞬态受体电位通道Trpc3专门在体内和小鼠CD细胞系IMCD-3中的收集管道(CD)的主细胞的主细胞的顶端膜中。以前的研究表明,通过TRPC3的过表达和通过显性负TRPC3构建体抑制的ATP诱导的IMCD-3单层的ATP诱导的托基对基底间Transepelial Ca(2+)通量增加,表明在顶端的CA(2+)进入膜通过TRPC3通道发生。为了测试该假设,我们使用Mn(2+)骤冷技术选择性地测量呋喃-2加载的IMCD-3细胞的顶端膜的Ca(2+)渗透性。通过顶端膜的Mn(2+)流入通过顶端ATP增加12-至16倍,并且通过吡唑衍生物BTP2,已知的TRPC3通道的已知抑制剂,IC(50)值<100nm。相反,Mn(2+)流入仅通过基底间ATP增加约2倍。 Mn(2+)流入通过顶端,而不是基石,1-硬脂酰-2-乙酰基-N-甘油(SAG),是TRPC3通道的已知活化剂。通过TRPC3的过表达增加了顶端ATP和凹凸和凹凸诱导的Mn(2+)流入,并通过显性负Trpc3构建体的表达完全阻断。 Mn(2+)流入量也通过施加到顶端或基石侧的Thapsigargin刺激约2倍。通过BTP2阻断ThapsIgargin诱导的助焊剂,但不受TRPC3的过表达或通过显性负TRPC3的影响。顶端ATP,但不是基石ATP,增加的TRANSEPITHELIAL(45)CA(2+)通量。这些结果表明,IMCD-3细胞的顶端膜具有两种不同的Ca(2+)流入路径:1)由顶端ATP激活的TRPC3通道激活的存储操作通道。仅激活TRPC3导致净培养的盆景到基底外侧CA(2+)通量。此外,这些结果表明,天然TRPC3不是IMCD-3细胞中的存储操作通道。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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