Molecular and Computational Biology, Department of Biological Sciences, University of Southern California, Los Angeles, California, USA.
Nat Neurosci. 2011 Sep 11;14(10):1253-9. doi: 10.1038/nn.2908.
The α(7) acetylcholine receptor (AChR) mediates pre- and postsynaptic neurotransmission in the central nervous system and is a potential therapeutic target in neurodegenerative, neuropsychiatric and inflammatory disorders. We determined the crystal structure of the extracellular domain of a receptor chimera constructed from the human α(7) AChR and Lymnaea stagnalis acetylcholine binding protein (AChBP), which shares 64% sequence identity and 71% similarity with native α(7). We also determined the structure with bound epibatidine, a potent AChR agonist. Comparison of the structures revealed molecular rearrangements and interactions that mediate agonist recognition and early steps in signal transduction in α(7) AChRs. The structures further revealed a ring of negative charge within the central vestibule, poised to contribute to cation selectivity. Structure-guided mutational studies disclosed distinctive contributions to agonist recognition and signal transduction in α(7) AChRs. The structures provide a realistic template for structure-aided drug design and for defining structure-function relationships of α(7) AChRs.
α(7) 乙酰胆碱受体 (AChR) 在中枢神经系统中介导突触前和突触后神经传递,是神经退行性、神经精神和炎症性疾病的潜在治疗靶点。我们测定了由人源α(7) AChR 和蜗牛属腹足纲动物乙酰胆碱结合蛋白 (AChBP) 构建的受体嵌合体的细胞外结构域的晶体结构,该蛋白与天然α(7) AChR 具有 64%的序列同一性和 71%的相似性。我们还测定了与结合的 epibatidine(一种有效的 AChR 激动剂)的结构。结构比较揭示了介导激动剂识别和 α(7) AChR 中信号转导早期步骤的分子重排和相互作用。这些结构进一步揭示了中央前庭内的一个负电荷环,准备为阳离子选择性做出贡献。基于结构的突变研究揭示了对 α(7) AChR 中激动剂识别和信号转导的独特贡献。这些结构为基于结构的药物设计以及定义 α(7) AChR 的结构-功能关系提供了一个现实的模板。