AIMS:The two-pore-domain potassium channel TASK-1 is robustly inhibited by the activation of receptors coupled to the Gα(q) subgroup of G-proteins, but the signal transduction pathway is still unclear. We have studied the mechanisms by which endothelin receptors inhibit the current carried by TASK-1 channels (I(TASK)) in cardiomyocytes. METHODS AND RESULTS:Patch-clamp measurements were carried out in isolated rat cardiomyocytes. I(TASK) was identified by extracellular acidification to pH 6.0 and by the application of the TASK-1 blockers A293 and A1899. Endothelin-1 completely inhibited I(TASK) with an EC(50) of <10 nM; this effect was mainly mediated by endothelin-A receptors. Application of 20 nM endothelin-1 caused a significant increase in action potential duration under control conditions; this was significantly reduced after pre-incubation of the cardiomyocytes with 200 nM A1899. The inhibition of I(TASK) by endothelin-1 was not affected by inhibitors of protein kinase C or rho kinase, but was strongly reduced by U73122, an inhibitor of phospholipase C (PLC). The ability of endothelin-1 to activate PLC-mediated signalling pathways was examined in mammalian cells transfected with TASK-1 and the endothelin-A receptor using patch-clamp measurements and total internal reflection microscopy. U73122 prevented the inhibition of I(TASK) by endothelin-1 and blocked PLC-mediated signalling, as verified with a fluorescent probe for phosphatidylinositol-(4,5)-bisphosphate hydrolysis. CONCLUSION:Our results show that I(TASK) in rat cardiomyocytes is controlled by endothelin-1 and suggest that the inhibition of TASK-1 via endothelin receptors is mediated by the activation of PLC. The prolongation of the action potential observed with 20 nM endothelin-1 was mainly due to the inhibition of I(TASK).

译文

目的:两孔结构域钾通道TASK-1被与G蛋白的Gα(q)亚基偶联的受体激活强烈抑制,但信号转导途径尚不清楚。我们已经研究了内皮素受体抑制心肌细胞中TASK-1通道(I(TASK))携带的电流的机制。
方法和结果:在分离的大鼠心肌细胞中进行膜片钳测量。通过细胞外酸化至pH 6.0和应用TASK-1阻滞剂A293和A1899来鉴定I(TASK)。内皮素-1完全抑制I(TASK),EC(50)<10 nM;这种作用主要是由内皮素A受体介导的。在控制条件下,应用20 nM内皮素-1导致动作电位持续时间显着增加。在将心肌细胞与200 nM A1899预温育后,这显着降低。内皮素-1对I(TASK)的抑制作用不受蛋白激酶C或rho激酶抑制剂的影响,但被磷脂酶C(PLC)抑制剂U73122强烈抑制。使用膜片钳测量和全内反射显微镜检查了用TASK-1和内皮素A受体转染的哺乳动物细胞中内皮素1激活PLC介导的信号通路的能力。 U73122阻止了内皮素-1对I(TASK)的抑制,并阻断了PLC介导的信号传导,这一点已通过磷脂酰肌醇-(4,5)-二磷酸水解的荧光探针验证。
结论:我们的结果表明,大鼠心肌细胞中的I(TASK)受内皮素1控制,并表明内皮素受体对TASK-1的抑制作用是由PLC的激活介导的。用20 nM内皮素-1观察到的动作电位的延长主要归因于I(TASK)的抑制。

+1
+2
100研值 100研值 ¥99课程
检索文献一次
下载文献一次

去下载>

成功解锁2个技能,为你点赞

《SCI写作十大必备语法》
解决你的SCI语法难题!

技能熟练度+1

视频课《玩转文献检索》
让你成为检索达人!

恭喜完成新手挑战

手机微信扫一扫,添加好友领取

免费领《Endnote文献管理工具+教程》

微信扫码, 免费领取

手机登录

获取验证码
登录