Abstract
GABAA receptors (GABAARs) are pentameric ligand-gated ion channels that mediate synaptic inhibition throughout the central nervous system. The α1β2γ2 receptor is the major subtype in the brain; GABA binds at the β2(+)α1(-) interface. The structure of the homomeric β3 GABAAR, which is not activated by GABA, has been solved. Recently, four additional heteromeric structures were reported, highlighting key residues required for agonist binding. Here, we used a protein engineering method, taking advantage of knowledge of the key binding residues, to create a β3(+)α1(-) heteromeric interface in the homomeric human β3 GABAAR that enables GABA-mediated activation. Substitutions were made in the complementary side of the orthosteric binding site in loop D (Y87F and Q89R), loop E (G152T), and loop G (N66D and A70T). The Q89R and G152T combination enabled low-potency activation by GABA and potentiation by propofol but impaired direct activation by higher propofol concentrations. At higher concentrations, GABA inhibited gating of β3 GABAAR variants containing Y87F, Q89R, and G152T. Reversion of Phe87 to tyrosine abolished GABA's inhibitory effect and partially recovered direct activation by propofol. This tyrosine is conserved in homomeric GABAARs and in the Erwinia chrysanthemi ligand-gated ion channel and may be essential for the absence of an inhibitory effect of GABA on homomeric channels. This work demonstrated that only two substitutions, Q89R and G152T, in β3 GABAAR are sufficient to reconstitute GABA-mediated activation and suggests that Tyr87 prevents inhibitory effects of GABA.
Highlights
Summary of Hill slope, EC50, and current density values obtained for GABA activation of GABAAR 3 C1 and F87Y
Hill slope and EC50 values obtained from logistic function fit parameters of individual experiments and mean Ϯ S.D. current densities evoked by peak concentrations of GABA are shown
No significant differences were observed between the mutants (n ϭ 4, p ϭ 0.1, F(9,34) ϭ 1.8, one-way ANOVA post hoc Tukey’s)
Summary
Summary of Hill slope, EC50, and current density values obtained for GABA activation of GABAAR 3 C1 and F87Y As observed previously (Fig. 2A), GABA failed to evoke currents when applied to cells expressing 3-cryst (Fig. 6A). In cells expressing GABAAR 3 C1, propofol (10 and 30 M) enhanced GABAevoked currents (Fig. 6, B and C) by 404 Ϯ 183 (n ϭ 3) and 405 Ϯ 176% (n ϭ 7), respectively (Fig. 6F).
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