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Structural basis of the activation of a metabotropic GABA receptor
Metabotropic γ-aminobutyric acid receptors (GABA(B)) are involved in the modulation of synaptic responses in the central nervous system and are implicated in various neuropsychological conditions, ranging from addiction to psychosis(1). GABA(B) belongs to G protein-coupled receptor class C, and its...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8020835/ https://www.ncbi.nlm.nih.gov/pubmed/32555460 http://dx.doi.org/10.1038/s41586-020-2408-4 |
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author | Shaye, Hamidreza Ishchenko, Andrii Lam, Jordy Homing Han, Gye Won Xue, Li Rondard, Philippe Pin, Jean-Philippe Katritch, Vsevolod Gati, Cornelius Cherezov, Vadim |
author_facet | Shaye, Hamidreza Ishchenko, Andrii Lam, Jordy Homing Han, Gye Won Xue, Li Rondard, Philippe Pin, Jean-Philippe Katritch, Vsevolod Gati, Cornelius Cherezov, Vadim |
author_sort | Shaye, Hamidreza |
collection | PubMed |
description | Metabotropic γ-aminobutyric acid receptors (GABA(B)) are involved in the modulation of synaptic responses in the central nervous system and are implicated in various neuropsychological conditions, ranging from addiction to psychosis(1). GABA(B) belongs to G protein-coupled receptor class C, and its functional entity consists of an obligate heterodimer composed of GB1 and GB2(2). Each subunit possesses an extracellular Venus flytrap domain, connected to a canonical seven-transmembrane domain. Here, we present four cryo-EM structures of the human full-length GB1-GB2 heterodimer in its inactive apo, two intermediate agonist-bound, and active agonist/positive allosteric modulator bound forms. The structures reveal startling differences, shedding light onto the complex motions underlying the unique activation mechanism of GABA(B). Our results show that agonist binding in the GB1 Venus flytrap domain triggers a series of transitions, first rearranging and bringing the two transmembrane domains into close contact along transmembrane helix 6 and ultimately inducing conformational rearrangements in the GB2 transmembrane domain via a lever-like mechanism, potentiated by a positive allosteric modulator binding at the dimerization interface, to initiate downstream signaling. |
format | Online Article Text |
id | pubmed-8020835 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
record_format | MEDLINE/PubMed |
spelling | pubmed-80208352021-04-05 Structural basis of the activation of a metabotropic GABA receptor Shaye, Hamidreza Ishchenko, Andrii Lam, Jordy Homing Han, Gye Won Xue, Li Rondard, Philippe Pin, Jean-Philippe Katritch, Vsevolod Gati, Cornelius Cherezov, Vadim Nature Article Metabotropic γ-aminobutyric acid receptors (GABA(B)) are involved in the modulation of synaptic responses in the central nervous system and are implicated in various neuropsychological conditions, ranging from addiction to psychosis(1). GABA(B) belongs to G protein-coupled receptor class C, and its functional entity consists of an obligate heterodimer composed of GB1 and GB2(2). Each subunit possesses an extracellular Venus flytrap domain, connected to a canonical seven-transmembrane domain. Here, we present four cryo-EM structures of the human full-length GB1-GB2 heterodimer in its inactive apo, two intermediate agonist-bound, and active agonist/positive allosteric modulator bound forms. The structures reveal startling differences, shedding light onto the complex motions underlying the unique activation mechanism of GABA(B). Our results show that agonist binding in the GB1 Venus flytrap domain triggers a series of transitions, first rearranging and bringing the two transmembrane domains into close contact along transmembrane helix 6 and ultimately inducing conformational rearrangements in the GB2 transmembrane domain via a lever-like mechanism, potentiated by a positive allosteric modulator binding at the dimerization interface, to initiate downstream signaling. 2020-06-17 2020-08 /pmc/articles/PMC8020835/ /pubmed/32555460 http://dx.doi.org/10.1038/s41586-020-2408-4 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms Additional information Reprints and permissions information is available at www.nature.com/reprints (http://www.nature.com/reprints) . The authors declare no competing interests. Readers are welcome to comment on the online version of the paper. Correspondence and requests for materials should be addressed to V.C. and C.G. |
spellingShingle | Article Shaye, Hamidreza Ishchenko, Andrii Lam, Jordy Homing Han, Gye Won Xue, Li Rondard, Philippe Pin, Jean-Philippe Katritch, Vsevolod Gati, Cornelius Cherezov, Vadim Structural basis of the activation of a metabotropic GABA receptor |
title | Structural basis of the activation of a metabotropic GABA receptor |
title_full | Structural basis of the activation of a metabotropic GABA receptor |
title_fullStr | Structural basis of the activation of a metabotropic GABA receptor |
title_full_unstemmed | Structural basis of the activation of a metabotropic GABA receptor |
title_short | Structural basis of the activation of a metabotropic GABA receptor |
title_sort | structural basis of the activation of a metabotropic gaba receptor |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8020835/ https://www.ncbi.nlm.nih.gov/pubmed/32555460 http://dx.doi.org/10.1038/s41586-020-2408-4 |
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