Department of Computational and Systems Biology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15260, USA.
Structure. 2013 Oct 8;21(10):1897-904. doi: 10.1016/j.str.2013.07.014. Epub 2013 Aug 29.
Glycine receptors play a major role in mediating fast inhibitory neurotransmission in the spinal cord and brain stem, yet their high-resolution structures remain unsolved. We determined open-channel structures of the full-length transmembrane domain (TMD) of the human glycine receptor α1-subunit (hGlyR-α1) using nuclear magnetic resonance (NMR) spectroscopy and electron micrographs. hGlyR-α1 TMD spontaneously forms pentameric Cl(-)-conducting channels, with structures sharing overall topology observed in crystal structures of homologous bacterial and nematode pentameric ligand-gated ion channels (pLGICs). However, the mammalian hGlyR-α1 structures present several distinctive features, including a shorter, pore-lining TM2 helix with helical unwinding near the C-terminal end, a TM3 helical kink at A288 that partially overlaps with the homologous ivermectin-binding site in GluCl, and a highly dynamic segment between S267(15') of TM2 and A288 that likely affects allosteric modulations of channel function. Our structures provide additional templates for identifying potential drug targets in GlyRs and other mammalian pLGICs.
甘氨酸受体在介导脊髓和脑干中的快速抑制性神经传递中起主要作用,但它们的高分辨率结构仍未解决。我们使用核磁共振(NMR)光谱和电子显微镜确定了全长跨膜结构域(TMD)的人甘氨酸受体α1 亚基(hGlyR-α1)的开放通道结构。hGlyR-α1 TMD 自发形成五聚体 Cl(-)传导通道,其结构与同源细菌和线虫五聚体配体门控离子通道(pLGIC)的晶体结构中观察到的总体拓扑结构共享。然而,哺乳动物 hGlyR-α1 结构具有几个独特的特征,包括较短的、孔衬 TM2 螺旋,其在 C 末端附近具有螺旋解开,A288 处的 TM3 螺旋扭曲部分与 GluCl 中的同源伊维菌素结合位点重叠,以及 TM2 的 S267(15')和 A288 之间的高度动态片段,可能影响通道功能的变构调节。我们的结构为鉴定 GlyRs 和其他哺乳动物 pLGIC 中的潜在药物靶标提供了额外的模板。