神经科学
突触后密度
突触后电位
抑制性突触后电位
海马结构
γ-氨基丁酸受体
神经递质受体
受体
生物
突触发生
化学
兴奋性突触后电位
生物化学
作者
Yun-Tao Liu,Chang-Lu Tao,Xiaokang Zhang,Wenjun Xia,Dongqing Shi,Lei Qi,Cheng Xu,Rong Sun,Xiaowei Li,Pak-Ming Lau,Z. Hong Zhou,Guo‐Qiang Bi
标识
DOI:10.1038/s41593-020-00729-w
摘要
Information processing in the brain depends on specialized organization of neurotransmitter receptors and scaffolding proteins within the postsynaptic density. However, how these molecules are organized in situ remains largely unknown. In this study, template-free classification of oversampled sub-tomograms was used to analyze cryo-electron tomograms of hippocampal synapses. We identified type-A GABA receptors (GABAARs) in inhibitory synapses and determined their in situ structure at 19-Å resolution. These receptors are organized hierarchically: from GABAAR super-complexes with a preferred inter-receptor distance of 11 nm but variable relative angles, through semi-ordered, two-dimensional receptor networks with reduced Voronoi entropy, to mesophasic assembly with a sharp phase boundary. These assemblies likely form via interactions among postsynaptic scaffolding proteins and receptors and align with putative presynaptic vesicle release sites. Such mesophasic self-organization might allow synapses to achieve a 'Goldilocks' state, striking a balance between stability and flexibility and enabling plasticity in information processing.
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