| Literature DB >> 33328885 |
Parnayan Syed1, Nela Durisic1, Robert J Harvey2,3, Pankaj Sah1,4, Joseph W Lynch1.
Abstract
Missense mutations T166M, Q242L, T336M, and Y474C in the GABAA receptor (GABAAR) α3 subunit gene are associated with epileptic seizures, dysmorphic features, intellectual disability, and developmental delay. When incorporated into GABAARs expressed in oocytes, all mutations are known to reduce GABA-evoked whole-cell currents. However, their impact on the properties of inhibitory synaptic currents (IPSCs) is unknown, largely because it is difficult to establish, much less control, the stoichiometry of GABAAR expressed in native neuronal synapses. To circumvent this problem, we employed a HEK293 cell-neuron co-culture expression system that permits the recording of IPSCs mediated by a pure population of GABAARs with a defined stoichiometry. We first demonstrated that IPSCs mediated by α3-containing GABAARs (α3β3γ2) decay significantly slower than those mediated by α1-containing isoforms (α1β2γ2 or α1β3γ2). GABAAR α3 mutations did not affect IPSC peak amplitudes or 10-90% rise times, but three of the mutations affected IPSC decay. T336M significantly accelerated the IPSC decay rate whereas T166M and Y474C had the opposite effect. The acceleration of IPSC decay kinetics caused by the T366M mutation was returned to wild-type-like values by the anti-epileptic medication, midazolam. Quantification experiments in HEK293 cells revealed a significant reduction in cell-surface expression for all mutants, in agreement with previous oocyte data. Taken together, our results show that impaired surface expression and altered IPSC decay rates could both be significant factors underlying the pathologies associated with these mutations.Entities:
Keywords: GABAA receptor; GABRA3; IPSC; epilepsy; missense mutation; α3 subunit
Year: 2020 PMID: 33328885 PMCID: PMC7714833 DOI: 10.3389/fnmol.2020.602559
Source DB: PubMed Journal: Front Mol Neurosci ISSN: 1662-5099 Impact factor: 5.639
γ-aminobutyric acid receptor (GABAAR) alpha3 subunit mutations.
| cDNA | Protein | Mature protein | Inheritance | Domain | Artificial synapses | Surface trafficking | Clinical features1 | |
|---|---|---|---|---|---|---|---|---|
| c.497C > T | α3β2γ2S currents reduced by 75 ± 3%, decrease in protein by Western blotting | Generalized tonic-clonic seizures, intellectual disability, dysmorphic features including nystagmus (repetitive, uncontrolled eye movements), micrognathia (undersized lower jaw), arched palate, and delayed speech in two males. Absence seizures and learning defects in females. | ||||||
| c.725A > T | α3β2γ2S currents reduced by 85 ± 3%, GABA sensitivity increased EC50 of 25 ± 2 μM | Pharmacoresistant epileptic encephalopathy (infantile or childhood onset), infantile spasms, tonic and generalized tonic-clonic seizures, moderate to severe ID and developmental delay in two males. Two affected females has a milder phenotype– treatable generalized tonic-clonic seizures, mild learning disability. All had micrognathia, short stature, dysmorphic features (e.g. cleft palate) and nystagmus. | ||||||
| c.1007C > T | α3β2γ2S currents reduced by 91 ± 2%, GABA sensitivity increased EC50 of 38 ± 4 μM | Generalized tonic-clonic seizures, no reported additional morphological or behavioral symptoms in females. | ||||||
| c.1421A > G | α3β2γ2S currents reduced by 68 ± 9%, GABA sensitivity increased EC50 of 22 ± 7 μM | Partial and tonic-clonic seizures and mild to moderate intellectual disability, other features including anxiety, speech defects and delayed language development in two females from different families. |
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Figure 1GABAA receptors (GABAARs) containing the α3 subunit generate inhibitory synaptic currents (IPSCs) with slower rise times and decay time constants. (A) Representative traces recorded from HEK293 cells expressing the GABAAR isoforms as indicated. (B) Averaged and normalized IPSCs from individual cells, overlayed for comparison. (C–E) Bar plots comparing mean peak amplitudes (C), 10–90% rise times (D), and decay time constants (E) of wild-type (WT) GABAAR isoforms. Error bars represent SEM and n values were, respectively 7, 15, and 6. Statistically significant results (p < 0.05) are indicated with an asterisk.
Figure 2Schematic representation of a GABAAR subunit showing the positions of the four mutant residues investigated here.
Figure 3IPSCs mediated by GABAAR epilepsy mutants show a variety of changes in kinetic parameters. (A) Representative traces from HEK293 cells expressing WT or mutant α3 subunits, along with β3 and γ2. (B–D) Bar plots comparing the kinetic properties of the mutants compared to WT α3-containing GABAARs. Error bars represent SEM and n values were, respectively 15, 11, 9, 15, and 8. Statistically significant results (p < 0.05) are indicated with an asterisk. (E) Averaged normalized currents from single cells overlayed to compare the shape of the IPSCs recorded from each mutant compared to the WT.
Figure 4Midazolam restores the kinetic properties of GABAARs incorporating the GABAAR α3 subunit T336M mutation. (A) Representative traces recorded from a HEK293 cell expressing the T336M mutant, before and after midazolam treatment. (B–D) Mean kinetic properties of the T336M mutant before and after treatment with 1 μM midazolam. Control WT data are included for comparison (*p < 0.05; ns = no significant difference; n = 6 for all constructs).
Figure 5Reduced surface expression of mutant GABAARs in HEK293 cells. (A) Representative images of cells expressing α3β3γ2 receptors (red). Intracellular GFP (green) was used as an indicator of transfection efficiency. The top panel shows a sample image of cells showing a high level of expression and the bottom panel shows cells that had very low levels to no discernible expression levels. (B) Fluorescence intensity of the brightest cells for each isoform (n = 20 for all constructs) is shown as these cells are typically used to measure IPSCs in the “artificial synapse” system. The boxplots indicate the median and interquartile range, one-way ANOVA on ranks, **p < 0.001. (C) Full distribution of GABAAR surface expression in HEK293 cells shows reduced surface expression of all mutants compared to the WT, one-way ANOVA on ranks, *p < 0.05, **P < 0.001. Median (interquartile range) values are as follows: WT: 5.29 (3.01–11.4 × 102) a.u., T166M: 4.0 (2.14–7.31) × 102 a.u., Q2442L: 2.06 (1.05–4.19) × 102 a.u., T336M: 2.51 (1.97–5.0) × 102 a.u., Y474C: 2.98 (1.5–5.75) × 102 a.u.