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Mechanisms of inhibition and activation of extrasynaptic αß GABAA receptors.
Kasaragod, Vikram Babu; Mortensen, Martin; Hardwick, Steven W; Wahid, Ayla A; Dorovykh, Valentina; Chirgadze, Dimitri Y; Smart, Trevor G; Miller, Paul S.
Afiliação
  • Kasaragod VB; Department of Pharmacology, University of Cambridge, Cambridge, UK.
  • Mortensen M; MRC Laboratory of Molecular Biology, Cambridge, UK.
  • Hardwick SW; Department of Neuroscience, Physiology and Pharmacology, University College London, London, UK.
  • Wahid AA; Cryo-EM Facility, Department of Biochemistry, University of Cambridge, Cambridge, UK.
  • Dorovykh V; Department of Pharmacology, University of Cambridge, Cambridge, UK.
  • Chirgadze DY; Department of Neuroscience, Physiology and Pharmacology, University College London, London, UK.
  • Smart TG; Cryo-EM Facility, Department of Biochemistry, University of Cambridge, Cambridge, UK.
  • Miller PS; Department of Neuroscience, Physiology and Pharmacology, University College London, London, UK. t.smart@ucl.ac.uk.
Nature ; 602(7897): 529-533, 2022 02.
Article em En | MEDLINE | ID: mdl-35140402
ABSTRACT
Type A GABA (γ-aminobutyric acid) receptors represent a diverse population in the mammalian brain, forming pentamers from combinations of α-, ß-, γ-, δ-, ε-, ρ-, θ- and π-subunits1. αß, α4ßδ, α6ßδ and α5ßγ receptors favour extrasynaptic localization, and mediate an essential persistent (tonic) inhibitory conductance in many regions of the mammalian brain1,2. Mutations of these receptors in humans are linked to epilepsy and insomnia3,4. Altered extrasynaptic receptor function is implicated in insomnia, stroke and Angelman and Fragile X syndromes1,5, and drugs targeting these receptors are used to treat postpartum depression6. Tonic GABAergic responses are moderated to avoid excessive suppression of neuronal communication, and can exhibit high sensitivity to Zn2+ blockade, in contrast to synapse-preferring α1ßγ, α2ßγ and α3ßγ receptor responses5,7-12. Here, to resolve these distinctive features, we determined structures of the predominantly extrasynaptic αß GABAA receptor class. An inhibited state bound by both the lethal paralysing agent α-cobratoxin13 and Zn2+ was used in comparisons with GABA-Zn2+ and GABA-bound structures. Zn2+ nullifies the GABA response by non-competitively plugging the extracellular end of the pore to block chloride conductance. In the absence of Zn2+, the GABA signalling response initially follows the canonical route until it reaches the pore. In contrast to synaptic GABAA receptors, expansion of the midway pore activation gate is limited and it remains closed, reflecting the intrinsic low efficacy that characterizes the extrasynaptic receptor. Overall, this study explains distinct traits adopted by αß receptors that adapt them to a role in tonic signalling.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Receptores de GABA-A / Agonistas de Receptores de GABA-A / Antagonistas de Receptores de GABA-A Limite: Animals / Humans Idioma: En Revista: Nature Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Receptores de GABA-A / Agonistas de Receptores de GABA-A / Antagonistas de Receptores de GABA-A Limite: Animals / Humans Idioma: En Revista: Nature Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Reino Unido