4.8 Article

GABAA receptor signalling mechanisms revealed by structural pharmacology

期刊

NATURE
卷 565, 期 7740, 页码 454-+

出版社

NATURE RESEARCH
DOI: 10.1038/s41586-018-0832-5

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资金

  1. UK Medical Research Council [MR/L009609/1, MC_UP_1201/15, MC_UP_A025_1013]
  2. UK Biotechnology and Biological Sciences Research Council [BB/M024709/1]
  3. Human Frontier Science Program [RGP0065/2014]
  4. Cancer Research UK [C20724/A14414]
  5. Swiss National Science Foundation [168735]
  6. National Institute for General Medical Sciences [GM 58448]
  7. Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital
  8. Instruct-ERIC, part of the European Strategy Forum on Research Infrastructures (ESFRI) [PID1271]
  9. Research Foundation-Flanders (FWO)
  10. FWO
  11. BBSRC [BB/M024709/1] Funding Source: UKRI
  12. MRC [MC_UP_1201/15, MC_EX_MR/L009609/2, MR/L009609/1] Funding Source: UKRI

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Type-A gamma-aminobutyric (GABA(A)) receptors are ligand-gated chloride channels with a very rich pharmacology. Some of their modulators, including benzodiazepines and general anaesthetics, are among the most successful drugs in clinical use and are common substances of abuse. Without reliable structural data, the mechanistic basis for the pharmacological modulation of GABA(A) receptors remains largely unknown. Here we report several high-resolution cryo-electron microscopy structures in which the full-length human alpha 1 beta 3 gamma 2L GABA(A) receptor in lipid nanodiscs is bound to the channel-blocker picrotoxin, the competitive antagonist bicuculline, the agonist GABA (gamma-aminobutyric acid), and the classical benzodiazepines alprazolam and diazepam. We describe the binding modes and mechanistic effects of these ligands, the closed and desensitized states of the GABA(A) receptor gating cycle, and the basis for allosteric coupling between the extracellular, agonist-binding region and the transmembrane, pore-forming region. This work provides a structural framework in which to integrate previous physiology and pharmacology research and a rational basis for the development of GABA(A) receptor modulators.

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