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◆ Nature communications2026-08-18

Molecular arrangement and modulation of extrasynaptic αβδ GABAA receptors.

Stephanie A Nestorow, Wan-Na Chen, Daniel Bertrand, Ayla A Wahid, Caroline E Wyatt, Martin Mortensen, Thomas Clairfeuille, Michael Reutlinger, Gregoire Friz, Els Pardon, Jan Steyaert, Graham Ladds, Giuseppe Cecere, Trevor G Smart, Maria-Clemencia Hernandez, Lisa Joedicke, Paul S Miller

原始摘要(英文原文)· Original abstract
γ-aminobutyric acid Type-A (GABAA) αβδ receptors regulate neuronal excitability and contribute to sleep, mood and motor coordination. However, the molecular arrangements of these receptors and the basis of GABA activation and δ-selective drug modulation remain unclear. We solve cryo-EM structures of α4β3δ receptors in an α-β-α-β-δ arrangement that contains two GABA binding pockets. GABA binding supports a classical β-subunit tilt and an outward configuration of the β-subunit M2-M3 loops. However, the δ subunit M2-M3 loop is orientated inward and the 9' activation gate in the pore is closed, consistent with the low efficacy for these receptors. Addition of a δ-selective positive allosteric modulator (PAM), DS2-Me, reveals binding to an α-δ pocket that causes the 9' activation gate to open. In this work we provide key insights into the stoichiometry, arrangement and molecular modes of GABA activation and δ-selective modulation of these critical regulators of neuronal excitability.
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Molecular arrangement and modulation of extrasynaptic αβδ GABAA receptors. — 科研速览 Science Skim