首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Internalization and recycling of 5-HT_(2A) receptors activated by serotonin and protein kinase C-mediated mechanisms
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Internalization and recycling of 5-HT_(2A) receptors activated by serotonin and protein kinase C-mediated mechanisms

机译:5-羟色胺和蛋白激酶C介导的机制激活的5-HT_(2A)受体的内在化和再循环

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Serotonin (5-HT), a major neurotransmitter, has a large number of G protein-coupled receptors in mammals. On activation by exposure to their ligand, 5-HT_2 receptor subtypes increase IP_3 levels and undergo desensitization and internalization. To visualize the receptor in cells during these processes, we have constructed a 5-HT_(2A)-enhanced GFP (SR2-GFP) fusion receptor. We show that this fusion receptor undergoes internalization on exposure to its natural ligand, 5-HT. Because 5-HT_(2A) receptors activate the phospho-lipase C pathway, we studied the effect of protein kinase C (PKC) on the internalization process and found that activation of PKC by its specific activator phorbol 12-myristate 13-acetate, in the absence of 5-HT, leads to internalization of the receptor. Moreover, inhibition of PKC by its inhibitor sphingosine in the presence of 5-HT prevents the internalization process, suggesting that activation of PKC is sufficient and necessary for the internalization of 5-HT_(2A) receptors. We also show that SR2-GFP recycles back to the plasma membrane after 5-HT-dependent internalization, suggesting a mechanism for resensitization. In addition, receptors that have been internalized on addition of phorbol 12-myristate 13-acetate in the absence of 5-HT also recycle to the surface, with a time course similar to that seen after activation of the receptors by 5-HT. Our study suggests that 5-HT_(2A) receptors internalize and return to the surface after both serotonin- and PKC-mediated processes. This study reveals a role for PKC in receptor internalization and also shows that 5-HT_(2A) receptors are recycled.
机译:血清素(5-HT)是一种主要的神经递质,在哺乳动物中具有大量的G蛋白偶联受体。通过暴露于其配体而被激活时,5-HT_2受体亚型会增加IP_3的水平并发生脱敏和内在化。为了在这些过程中可视化细胞中的受体,我们构建了一个5-HT_(2A)-增强的GFP(SR2-GFP)融合受体。我们表明,该融合受体在暴露于其天然配体5-HT时经历内在化。因为5-HT_(2A)受体激活了磷脂酶C通路,所以我们研究了蛋白激酶C(PKC)对内在化过程的影响,并发现PKC被其特定的活化剂佛波醇12-肉豆蔻酸酯13-乙酸酯激活。 5-HT的缺失会导致受体内在化。此外,在5-HT的存在下通过其抑制剂鞘氨醇对PKC的抑制作用阻止了内在化过程,这表明PKC的激活对于5-HT_(2A)受体的内在化是充分和必要的。我们还显示,5-HT依赖的内在化后,SR2-GFP循环回到质膜,提示了重新敏化的机制。另外,在不存在5-HT的情况下添加佛波醇12-肉豆蔻酸酯13-乙酸酯而被内在化的受体也循环到表面,其时程类似于5-HT激活受体后的时程。我们的研究表明5-羟色胺和PKC介导的过程后5-HT_(2A)受体内化并返回到表面。这项研究揭示了PKC在受体内在化中的作用,并且还表明了5-HT_(2A)受体被回收了。

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