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通过电子冷冻显微镜阐明甘氨酸受体机制。

Glycine receptor mechanism elucidated by electron cryo-microscopy.

作者信息

Du Juan, Lü Wei, Wu Shenping, Cheng Yifan, Gouaux Eric

机构信息

Vollum Institute, Oregon Health &Science University, 3181 SW Sam Jackson Park Road, Portland, Oregon 97239, USA.

Department of Biochemistry and Biophysics, University of California San Francisco, 600 16th Street, San Francisco, California 94158, USA.

出版信息

Nature. 2015 Oct 8;526(7572):224-9. doi: 10.1038/nature14853. Epub 2015 Sep 7.

Abstract

The strychnine-sensitive glycine receptor (GlyR) mediates inhibitory synaptic transmission in the spinal cord and brainstem and is linked to neurological disorders, including autism and hyperekplexia. Understanding of molecular mechanisms and pharmacology of glycine receptors has been hindered by a lack of high-resolution structures. Here we report electron cryo-microscopy structures of the zebrafish α1 GlyR with strychnine, glycine, or glycine and ivermectin (glycine/ivermectin). Strychnine arrests the receptor in an antagonist-bound closed ion channel state, glycine stabilizes the receptor in an agonist-bound open channel state, and the glycine/ivermectin complex adopts a potentially desensitized or partially open state. Relative to the glycine-bound state, strychnine expands the agonist-binding pocket via outward movement of the C loop, promotes rearrangement of the extracellular and transmembrane domain 'wrist' interface, and leads to rotation of the transmembrane domain towards the pore axis, occluding the ion conduction pathway. These structures illuminate the GlyR mechanism and define a rubric to interpret structures of Cys-loop receptors.

摘要

士的宁敏感型甘氨酸受体(GlyR)介导脊髓和脑干中的抑制性突触传递,并与包括自闭症和惊跳症在内的神经系统疾病有关。由于缺乏高分辨率结构,对甘氨酸受体的分子机制和药理学的理解受到了阻碍。在此,我们报告了斑马鱼α1甘氨酸受体与士的宁、甘氨酸或甘氨酸和伊维菌素(甘氨酸/伊维菌素)结合的冷冻电镜结构。士的宁使受体处于拮抗剂结合的封闭离子通道状态,甘氨酸使受体稳定在激动剂结合的开放通道状态,而甘氨酸/伊维菌素复合物则呈现出潜在的脱敏或部分开放状态。相对于甘氨酸结合状态,士的宁通过C环向外移动扩展了激动剂结合口袋,促进了细胞外和跨膜结构域“腕部”界面的重排,并导致跨膜结构域向孔轴旋转,从而封闭了离子传导途径。这些结构阐明了甘氨酸受体的机制,并定义了一个解释半胱氨酸环受体结构的准则。

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