Jemal Imane, Soriano Sergi, Conte Anna Lucia, Morenilla Cruz, Gomis Ana
Instituto de Neurociencias, Universidad Miguel Hernández-CSIC, Av. Santiago Ramón y Cajal s/n, 03550, Sant Joan d'Alacant, Alicante, Spain.
Pflugers Arch. 2014 Aug;466(8):1635-46. doi: 10.1007/s00424-013-1392-z. Epub 2013 Nov 1.
TRPC5 is an ion channel permeable to monovalent and divalent cations that is widely expressed in different tissues. Although implicated in the control of neurite extension and in the growth cone morphology of hippocampal neurons, as well as in fear-related behaviour, the mechanisms by which TRPC5 is activated remain poorly understood. TRPC5 is known to be activated downstream of Gq-coupled receptors and by membrane stretch, and since there is evidence that mechanical stress may directly activate Gq-coupled receptors, we examined the relationship between the activation of TRPC5 by the type 1 histamine receptor and osmotic stress. Using calcium imaging and patch clamp recordings, we found that a higher proportion of cells expressing TRPC5 respond to hypoosmotic solution when they co-express H1R. This response is associated with a phospholipase C-dependent increase in the cells internal calcium concentration, which is abolished on depletion of calcium stores. We also found that the hypoosmotic stimulus that provokes mechanical stress drives the translocation of TRPC5 to the plasma membrane by a mechanism dependent on PI3K. This increase in TRPC5 at the plasma membrane augments the proportion of cells that respond to hypoosmotic stimulation. Together, these results suggest that hypoosmotic cell-swelling activates Gq-coupled receptors, which in turn enhance the activation of TRPC5 by regulating this channel membrane trafficking. Gq-coupled receptors and TPRC5 are co-expressed in several tissues such as those of the vascular system and in somatosensory neurons, suggesting that this mechanism of TRPC5 activation may have interesting and important implications in arterial pressure sensing and mechanotransduction.
TRPC5是一种对单价和二价阳离子通透的离子通道,在不同组织中广泛表达。尽管TRPC5与神经突延伸的控制、海马神经元的生长锥形态以及与恐惧相关的行为有关,但其激活机制仍知之甚少。已知TRPC5在Gq偶联受体下游以及通过膜拉伸被激活,并且由于有证据表明机械应力可能直接激活Gq偶联受体,我们研究了1型组胺受体激活TRPC5与渗透压应激之间的关系。通过钙成像和膜片钳记录,我们发现当共表达H1R时,表达TRPC5的细胞中有更高比例对低渗溶液有反应。这种反应与细胞内钙浓度的磷脂酶C依赖性增加有关,而在钙库耗尽时这种增加被消除。我们还发现,引发机械应力的低渗刺激通过一种依赖PI3K的机制驱动TRPC5转位到质膜。质膜上TRPC5的这种增加提高了对低渗刺激有反应的细胞比例。总之,这些结果表明低渗性细胞肿胀激活Gq偶联受体,进而通过调节该通道的膜转运增强TRPC5的激活。Gq偶联受体和TPRC5在诸如血管系统组织和体感神经元等几种组织中共表达,这表明这种TRPC5激活机制可能在动脉压力传感和机械转导中具有有趣且重要的意义。
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