肽
酸敏离子通道
离子通道
甲酰胺
水蛇许德拉
结合位点
生物物理学
化学
氨基酸
肽序列
异三聚体G蛋白
螺旋(腹足类)
生物
生物化学
细胞生物学
神经肽
受体
G蛋白
基因
生态学
蜗牛
作者
Audrey Ortega-Ramírez,Simone Albani,Michèle Bachmann,Axel Schmidt,Manuela Pinoé-Schmidt,Marc Assmann,Katrin Augustinowski,Giulia Rossetti,Stefan Gründer
标识
DOI:10.1073/pnas.2409097121
摘要
The only known peptide-gated ion channels—FaNaCs/WaNaCs and HyNaCs—belong to different clades of the DEG/ENaC family. FaNaCs are activated by the short neuropeptide FMRFamide, and HyNaCs by Hydra RFamides, which are not evolutionarily related to FMRFamide. The FMRFamide-binding site in FaNaCs was recently identified in a cleft atop the large extracellular domain. However, this cleft is not conserved in HyNaCs. Here, we combined molecular modeling and site-directed mutagenesis and identified a putative binding pocket for Hydra-RFamides in the extracellular domain of the heterotrimeric HyNaC2/3/5. This pocket localizes to only one of the three subunit interfaces, indicating that this trimeric ion channel binds a single peptide ligand. We engineered an unnatural amino acid at the putative binding pocket entrance, which allowed covalent tethering of Hydra RFamide to the channel, thereby trapping the channel in an open conformation. The identified pocket localizes to the same region as the acidic pocket of acid-sensing ion channels (ASICs), which binds peptide ligands. The pocket in HyNaCs is less acidic, and both electrostatic and hydrophobic interactions contribute to peptide binding. Collectively, our results reveal a conserved ligand-binding pocket in HyNaCs and ASICs and indicate independent evolution of peptide-binding cavities in the two subgroups of peptide-gated ion channels.
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