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首页> 外文期刊>Neuron >Structural Bases of Desensitization in AMPA Receptor-Auxiliary Subunit Complexes
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Structural Bases of Desensitization in AMPA Receptor-Auxiliary Subunit Complexes

机译:AMPA受体 - 辅助亚基复合物中脱敏的结构基础

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Fast excitatory neurotransmission is mediated by AMPA-subtype ionotropic glutamate receptors (AMPARs). AMPARs, localized at post-synaptic densities, are regulated by transmembrane auxiliary subunits that modulate AMPAR assembly, trafficking, gating, and pharmacology. Aberrancies in AMPAR-mediated signaling are associated with numerous neurological disorders. Here, we report cryo-EM structures of an AMPAR in complex with the auxiliary subunit GSG1L in the closed and desensitized states. GSG1L favors the AMPAR desensitized state, where channel closure is facilitated by profound structural rearrangements in the AMPAR extracellular domain, with ligand-binding domain dimers losing their local 2-fold rotational symmetry. Our structural and functional experiments suggest that AMPAR auxiliary subunits share a modular architecture and use a common transmembrane scaffold for distinct extracellular modules to differentially regulate AMPAR gating. By comparing the AMPAR-GSG1L complex structures, we map conformational changes accompanying AMPAR recovery from desensitization and reveal structural bases for regulation of synaptic transmission by auxiliary subunits.
机译:快速兴奋性神经递质由AMPA-亚型离子型谷氨酸受体(Ampars)介导。本地化在突触后密度的AMPAR由跨膜辅助子单元调节,该子单元调节调节AMPAR装配,贩运,门控和药理学。在ampar介导的信号传导中的畸形与许多神经疾病有关。在这里,我们在闭合和脱敏状态下向辅助亚基GSG1L报告复合物中AMPAR的Cryo-EM结构。 GSG1L利用AMPAR细胞外结构域中的结构重排,配体结合结构域二聚体促进了沟道闭合,使其局部2倍旋转对称性促进了沟道闭合。我们的结构和功能实验表明,AMPAR辅助亚基共享模块化结构,并使用常见的跨膜支架进行不同的细胞外模块,以差异调节AMPAR门控。通过比较AMPAR-GSG1L复杂结构,我们将伴随AMPAR回收的构象变化从脱敏中恢复,并揭示了通过辅助亚基调节突触传输的结构基础。

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