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首页> 外文期刊>The Journal of biological chemistry >Involvement of Phosphoinositide 3-Kinase and PTEN Protein in Mechanism of Activation of TRPC6 Protein in Vascular Smooth Muscle Cells
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Involvement of Phosphoinositide 3-Kinase and PTEN Protein in Mechanism of Activation of TRPC6 Protein in Vascular Smooth Muscle Cells

机译:磷酸阳性3-激酶和PTEN蛋白在血管平滑肌细胞中TRPC6蛋白激活机制中的参与

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TRPC6 is a cation channel in the plasma membrane that plays a role in Ca2+ entry after the stimulation of a Gq-protein-coupled or tyrosine-kinase receptor. TRPC6 translocates to the plasma membrane upon stimulation and remains there as long as the stimulus is present. However, the mechanism that regulates the trafficking and activation of TRPC6 are unclear. In this study we showed phosphoinositide 3-kinase and its antagonistic phosphatase, PTEN, are involved in the activation of TRPC6. The inhibition of PI3K by PIK-93, LY294002, or wortmannin decreased carbachol-induced translocation of TRPC6 to the plasma membrane and carbachol-induced net Ca2+ entry into T6.11 cells. Conversely, a reduction of PTEN expression did not affect carbachol-induced externalization of TRPC6 but increased Ca2+ entry through TRPC6 in T6.11 cells. We also showed that the PI3K/PTEN pathway regulates vasopressin-induced translocation of TRPC6 to the plasma membrane and vasopressin-induced Ca2+ entry into A7r5 cells, which endogenously express TRPC6. In summary, we provided evidence that the PI3K/PTEN pathway plays an important role in the translocation of TRPC6 to the plasma membrane and may thus have a significant impact on Ca2+ signaling in cells that endogenously express TRPC6.
机译:TRPC6是在刺激GQ蛋白偶联或酪氨酸激酶受体后在CA2 +进入中起作用的阳离子通道。 TRPC6在刺激时转向质膜,并且只要存在刺激即可仍然存在。但是,调节TRPC6贩运和激活的机制尚不清楚。在该研究中,我们显示出磷酸阳性3-激酶及其拮抗磷酸酶PTEN,参与了TRPC6的活化。通过PIK-93,LY294002或Wortmannin对PI3K的抑制降低了Carbachol诱导的TrpC6的转移到质膜和碳溶解的网Ca2 +进入T6.11细胞。相反,PTEN表达的减少不影响CARBACHOL诱导的TRPC6的外化,但通过T6.11细胞中通过TRPC6增加CA2 +进入。我们还表明,PI3K / PTEN途径调节血管加压素诱导的TRPC6转化为血浆膜和血管加压素诱导的CA2 +进入A7R5细胞,其内源性表达TRPC6。总之,我们提供了证据表明PI3K / PTEN途径在TRPC6的转移到质膜中起重要作用,因此可以对内源性表达TRPC6的细胞中的CA2 +信号传导具有显着影响。

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