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Acetylcholine Promotes Binding of α-Conotoxin MII for α3β2 Nicotinic Acetylcholine Receptors

机译:乙酰胆碱促进α-芋螺毒素MII与α3β2烟碱乙酰胆碱受体的结合

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摘要

α-Conotoxin MII (α-CTxMII) is a 16 amino acid peptide with the sequence GCCSNPVCHLEHSNLC containing disulfide bonds between Cys2-Cys8 and Cys3-Cys16. This peptide, isolated from the venom of the marine cone snail Conus magus, is a potent and selective antagonist of neuronal nicotinic acetylcholine receptors (nAChRs). To evaluate the impact of channel-ligand interactions on ligand binding affinity, homology models of the heteropentameric α3β2-nAChR were constructed. The models were created in MODELLER using crystal structures of the Torpedo marmorata-nAChR (Tm-nAChR, PDB ID: 2BG9) and the Aplysia californica-acetylcholine binding protein (Ac-AChBP, PDB ID: 2BR8) as templates for the α3 and β2 subunit isoforms derived from rat neuronal nAChR primary amino acid sequences. Molecular docking calculations were performed with AutoDock to evaluate interactions of the heteropentameric nAChR homology models with the ligands acetylcholine (ACh) and α-CTxMII. The nAChR homology models described here bind ACh with commensurate binding energies to previously reported systems, and identify critical interactions that facilitate both ACh and α-CTxMII ligand binding. The docking calculations revealed an increased binding affinity of the α3β2-nAChR for α-CTxMII with ACh bound to the receptor, which was confirmed through two-electrode voltage clamp experiments on oocytes from Xenopus laevis. These findings provide insights into the inhibition and mechanism of electrostatically driven antagonist properties of the α-CTxMIIs on nAChRs.
机译:α-芋螺毒素MII(α-CTxMII)是16个氨基酸的肽,序列GCCSNPVCHLEHSNLC包含Cys2-Cys8和Cys3-Cys16之间的二硫键。从海洋锥蜗牛Conus magus的毒液中分离出的该肽是神经元烟碱型乙酰胆碱受体(nAChRs)的有效和选择性拮抗剂。为了评估通道-配体相互作用对配体结合亲和力的影响,构建了杂五聚体α3β2-nAChR的同源性模型。该模型是在MODELLER中使用水mar鱼雷(Tm-nAChR,PDB ID:2BG9)和Aplysia californica-乙酰胆碱结合蛋白(Ac-AChBP,PDB ID:2BR8)的晶体结构作为α3和β2的模板创建的来自大鼠神经元nAChR一级氨基酸序列的亚基亚型。用AutoDock进行分子对接计算,以评估异五聚体nAChR同源性模型与配体乙酰胆碱(ACh)和α-CTxMII的相互作用。此处描述的nAChR同源性模型将ACh具有相称的结合能与先前报道的系统结合,并鉴定出促进ACh和α-CTxMII配体结合的关键相互作用。对接计算揭示了α3β2-nAChR对α-CTxMII和与受体结合的ACh的结合亲和力增加,这通过非洲爪蟾卵母细胞的两电极电压钳制实验得以证实。这些发现提供了对α-CTxMII对nAChRs的静电抑制拮抗剂特性的抑制及其机理的见解。

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