红藻氨酸受体
蜘蛛毒素
生物物理学
致电离效应
离子通道
谷氨酸受体
精胺
兴奋性突触后电位
化学
神经科学
神经传递
AMPA受体
生物
受体
细胞生物学
生物化学
酶
作者
S.P. Gangwar,M.V. Yelshanskaya,Muhammed Aktolun,Laura Y. Yen,Thomas P. Newton,Kristian Strømgaard,Maria Kurnikova,Alexander I. Sobolevsky
标识
DOI:10.1038/s41467-024-54538-x
摘要
Abstract Kainate receptors (KARs) are a subtype of ionotropic glutamate receptor (iGluR) channels, a superfamily of ligand-gated ion channels which mediate the majority of excitatory neurotransmission in the central nervous system. KARs modulate neuronal circuits and plasticity during development and are implicated in neurological disorders, including epilepsy, depression, schizophrenia, anxiety, and autism. Calcium-permeable KARs undergo ion channel block, but the therapeutic potential of channel blockers remains underdeveloped, mainly due to limited structural knowledge. Here, we present closed-state structures of GluK2 KAR homotetramers in complex with ion channel blockers NpTx-8, PhTx-74, Kukoamine A, and spermine. We find that blockers reside inside the GluK2 ion channel pore, intracellular to the closed M3 helix bundle-crossing gate, with their hydrophobic heads filling the central cavity and positively charged polyamine tails spanning the selectivity filter. Molecular dynamics (MD) simulations of our structures illuminate interactions responsible for different affinity and binding poses of the blockers. Our structures elucidate the trapping mechanism of KAR channel block and provide a template for designing new blockers that can selectively target calcium-permeable KARs in neuropathologies.
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