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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Phospholipase C not protein kinase C is required for the activation of TRPC5 channels by cholecystokinin
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Phospholipase C not protein kinase C is required for the activation of TRPC5 channels by cholecystokinin

机译:胆囊收缩素激活TRPC5通道需要磷脂酶C而不是蛋白激酶C

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摘要

Cholecystokinin (CCK) is one of the most abundant neuropeptides in the brain where it interacts with two G protein-coupled receptors (CCK1 and CCK2). Both types of CCK receptors are coupled to G q/11 proteins resulting in increased function of phospholipase C (PLC) pathway. Whereas CCK has been suggested to increase neuronal excitability in the brain via activation of cationic channels, the types of cationic channels have not yet been identified. Here, we co-expressed CCK2 receptors and TRPC5 channels in human embryonic kidney (HEK) 293 cells and studied the effects of CCK on TRPC5 channels using patch-clamp techniques. Our results demonstrate that activation of CCK2 receptors robustly potentiates the function of TRPC5 channels. CCK-induced activation of TRPC5 channels requires the functions of G-proteins and PLC and depends on extracellular Ca 2. The activation of TRPC5 channels mediated by CCK2 receptors is independent of IP 3 receptors and protein kinase C. CCK-induced opening of TRPC5 channels is not store-operated because application of thapsigargin to deplete intracellular Ca 2 stores failed to alter CCK-induced TRPC5 channel currents significantly. Bath application of CCK also significantly increased the open probability of TRPC5 single channel currents in cell-attached patches. Because CCK exerts extensive effects in the brain, our results may provide a novel mechanism to explain its roles in modulating neuronal excitability.
机译:胆囊收缩素(CCK)是大脑中最丰富的神经肽之一,它与两个G蛋白偶联受体(CCK1和CCK2)相互作用。两种类型的CCK受体都与G q / 11蛋白偶联,导致磷脂酶C(PLC)途径功能增强。尽管已经提出CCK可以通过激活阳离子通道来增加大脑中神经元的兴奋性,但是尚未确定阳离子通道的类型。在这里,我们共表达了人类胚胎肾脏(HEK)293细胞中的CCK2受体和TRPC5通道,并使用膜片钳技术研究了CCK对TRPC5通道的影响。我们的研究结果表明,CCK2受体的激活可强有力地增强TRPC5通道的功能。 CCK诱导的TRPC5通道激活需要G蛋白和PLC的功能,并依赖于细胞外Ca2。CCK2受体介导的TRPC5通道的激活独立于IP 3受体和蛋白激酶C。CCK诱导的TRPC5通道的开放该应用未进行存储操作,因为应用毒胡萝卜素耗尽细胞内Ca 2存储的操作无法显着改变CCK诱导的TRPC5通道电流。浴中CCK的施加还显着增加了细胞附着贴片中TRPC5单通道电流的打开可能性。由于CCK在大脑中发挥广泛的作用,我们的结果可能提供了一种新颖的机制来解释其在调节神经元兴奋性中的作用。

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