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Evidence for hydrophobic interaction between galanin and the Ga1R1 galanin receptor and Ga1R1-mediated ligand internalization: Fluorescent probing with a fluorescein-galanin

机译:甘丙肽与Ga1R1甘丙肽受体之间的疏水相互作用和Ga1R1介导的配体内在化的证据:用荧光素-甘丙肽进行荧光探测

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Galanin is a neuropeptide that activates specific receptors to modulate several physiological functions including food intake, nociception, and learning and memory. The molecular nature of the interaction between galanin and its receptors and the fate of the galanin/receptor complex after the binding event are not understood. A fluorescein-N-galanin (F-Gal) was generated to measure the interaction between galanin and rat GalR1 galanin receptor (rGalR1) and rGalR1-mediated ligand internalization using flow cytometry in transfected Chinese hamster ovary (CHO) cells. Like galanin, F-Gal bound rGalR1 with high affinity and stimulated intracellular signaling events. Fluorescence quenching by soluble KI of rGalR1-bound F-Gal revealed a highly protected environment around the fluorescein, suggesting that the N-terminal portion of galanin, which constitutes the binding site of galanin for the receptor, binds to a protected hydrophobic binding pocket within the receptor. Exposure to F-Gal stimulated rapid (t(1/2) similar to 10 min) and extensive (78%) internalization of surface F-Cal into rGalR1/CHO cells at 37 degrees C but not at 0 degrees C. In addition, the internalization did not occur in parental CHO cells at either 0 or 37 degrees C and was inhibited by addition of 0.25 M sucrose in the medium, indicating a GalR1-mediated energy-requiring endocytic process. These results revealed a hydrophobic interaction between galanin and the GalR1 receptor, which is in contrast to those of other G protein-coupled receptors that mainly require hydrophilic interaction with their peptide ligands near or outside the plasma membrane surface, and illustrated that the initial binding interaction is followed by rapid cellular internalization of the agonist/GalR1 complex. [References: 35]
机译:甘丙肽是一种神经肽,可激活特定受体来调节多种生理功能,包括食物摄入,伤害感受以及学习和记忆。结合事件后,甘丙肽及其受体之间的相互作用的分子性质以及甘丙肽/受体复合物的命运尚不清楚。使用流式细胞仪在转染的中国仓鼠卵巢(CHO)细胞中生成了荧光素-N-甘丙肽(F-Gal)以测量甘丙肽与大鼠GalR1甘丙肽受体(rGalR1)和rGalR1介导的配体内化之间的相互作用。像甘丙肽一样,F-Gal以高亲和力结合rGalR1,并刺激细胞内信号传导事件。 rGalR1结合的F-Gal的可溶性KI进行的荧光猝灭揭示了荧光素周围受高度保护的环境,这表明甘丙肽的N端部分(构成甘丙肽与受体的结合位点)与保护区内的受保护的疏水结合袋结合受体。暴露于F-Gal刺激了表面F-Cal在37摄氏度而不是0摄氏度下迅速(t(1/2)类似于10分钟)和广泛(78%)内化到rGalR1 / CHO细胞中。内部化在0或37摄氏度的亲代CHO细胞中均未发生,并且通过在培养基中添加0.25 M蔗糖而被抑制,这表明GalR1介导的需要能量的内吞过程。这些结果揭示了甘丙肽与GalR1受体之间存在疏水相互作用,这与其他G蛋白偶联受体相反,后者主要需要与质膜表面附近或外部的肽配体发生亲水相互作用,并说明了初始结合相互作用。随后是激动剂/ GalR1复合物的快速细胞内在化。 [参考:35]

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