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首页> 外文期刊>Receptors and channels >Coupling of the expressed cannabinoid CB1 and CB2 receptors to phospholipase C and G protein-coupled inwardly rectifying K+ channels.
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Coupling of the expressed cannabinoid CB1 and CB2 receptors to phospholipase C and G protein-coupled inwardly rectifying K+ channels.

机译:表达的大麻素CB1和CB2受体与磷脂酶C和G蛋白偶联的向内整流K +通道的偶联。

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摘要

Signaling of the cannabinoid CB1 and CB2 receptors through phospholipase C (PLC) and G protein-coupled inwardly rectifying K+ channels (GIRK) was studied after their expression in COS7 cells and Xenopus oocytes. The CB1 or CB2 receptor was co-expressed with alpha subunits of the Galphaq family (Galphaq, Galpha11, Galpha14, Galpha15 and Galpha16) in COS7 cells. Receptor-dependent activation of PLC was observed after co-expressing the CB1 receptor with Galpha14, Galpha15 or Galpha16 but not with Galphaq or Galpha11. Co-expression of Gbeta1 and Ggamma2 abolished the activation, indicating that the activation was mediated by Galpha. PLC activation was not observed when the CB2 receptor was expressed alone or co-expressed with any of the above Galpha subunits. Coupling to GIRK was observed with both CB1 and CB2 receptors after expression in Xenopus oocytes. Significantly larger currents were induced when the receptor was co-expressed with both GIRK1 and GIRK4 than with either GIRK alone. Co-expression of Galpha transducin with the receptor significantly reduced the K+ currents, indicating that GIRK activation was mediated by Gbetagamma but not by Galpha. These findings suggest two new signaling pathways for the cannabinoid receptors.
机译:研究了大麻素CB1和CB2受体在磷脂酶C(PLC)和G蛋白偶联的内向整流K +通道(GIRK)后在COS7细胞和非洲爪蟾卵母细胞中表达的信号。 CB1或CB2受体与Galphaq家族的alpha亚基(Galphaq,Galpha11,Galpha14,Galpha15和Galpha16)在COS7细胞中共表达。在与Galpha14,Galpha15或Galpha16共表达CB1受体但与Galphaq或Galpha11共表达CB1受体后,观察到PLC的受体依赖性激活。 Gbeta1和Ggamma2的共表达取消了激活,表明该激活是由Galpha介导的。当CB2受体单独表达或与任何上述Galpha亚基共表达时,未观察到PLC激活。在非洲爪蟾卵母细胞中表达后,CB1和CB2受体均与GIRK偶联。当受体与GIRK1和GIRK4共表达时,诱导的电流明显大于单独的GIRK。 Galpha转导蛋白与受体的共表达显着降低了K +电流,表明GIRK激活是由Gbetagamma介导的,而不是由Galpha介导的。这些发现提示了大麻素受体的两个新信号通路。

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