Dietrich Alexander, Kalwa Hermann, Storch Ursula, Mederos y Schnitzler Michael, Salanova Birgit, Pinkenburg Olaf, Dubrovska Galyna, Essin Kirill, Gollasch Maik, Birnbaumer Lutz, Gudermann Thomas
Institut für Pharmakologie und Toxikologie, Philipps-Universität Marburg, Marburg, Germany.
Pflugers Arch. 2007 Dec;455(3):465-77. doi: 10.1007/s00424-007-0314-3. Epub 2007 Jul 24.
Among the classical transient receptor potential (TRPC) subfamily, TRPC1 is described as a mechanosensitive and store-operated channel proposed to be activated by hypoosmotic cell swelling and positive pipette pressure as well as regulated by the filling status of intracellular Ca(2+) stores. However, evidence for a physiological role of TRPC1 may most compellingly be obtained by the analysis of a TRPC1-deficient mouse model. Therefore, we have developed and analyzed TRPC1(-/-) mice. Pressure-induced constriction of cerebral arteries was not impaired in TRPC1(-/-) mice. Smooth muscle cells from cerebral arteries activated by hypoosmotic swelling and positive pipette pressure showed no significant differences in cation currents compared to wild-type cells. Moreover, smooth muscle cells of TRPC1(-/-) mice isolated from thoracic aortas and cerebral arteries showed no change in store-operated cation influx induced by thapsigargin, inositol-1,4,5 trisphosphate, and cyclopiazonic acid compared to cells from wild-type mice. In contrast to these results, small interference RNAs decreasing the expression of stromal interaction molecule 1 (STIM1) inhibited thapsigargin-induced store-operated cation influx, demonstrating that STIM1 and TRPC1 are mutually independent. These findings also imply that, as opposed to current concepts, TRPC1 is not an obligatory component of store-operated and stretch-activated ion channel complexes in vascular smooth muscle cells.
在经典瞬时受体电位(TRPC)亚家族中,TRPC1被描述为一种机械敏感且受储存调控的通道,据推测可被低渗性细胞肿胀和正吸液压力激活,并受细胞内Ca(2+)储存的充盈状态调节。然而,TRPC1生理作用的证据最有力地可能通过分析TRPC1基因缺陷小鼠模型获得。因此,我们培育并分析了TRPC1(-/-)小鼠。TRPC1(-/-)小鼠中压力诱导的脑动脉收缩未受损。与野生型细胞相比,经低渗肿胀和正吸液压力激活的脑动脉平滑肌细胞在阳离子电流方面无显著差异。此外,与野生型小鼠的细胞相比,从胸主动脉和脑动脉分离的TRPC1(-/-)小鼠的平滑肌细胞在毒胡萝卜素、肌醇-1,4,5-三磷酸和环匹阿尼酸诱导的储存调控阳离子内流方面没有变化。与这些结果相反,降低基质相互作用分子1(STIM1)表达的小干扰RNA抑制了毒胡萝卜素诱导的储存调控阳离子内流,表明STIM1和TRPC1相互独立。这些发现还意味着,与当前概念相反,TRPC1不是血管平滑肌细胞中储存调控和牵张激活离子通道复合物的必需组成部分。