G<sub>i/o</sub> protein-coupled receptors in dopamine neurons inhibit the sodium leak channel NALCN.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30556810.
- Also identified by DOI 10.7554/eLife.40984 and PMC identifier 6305199.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Dopamine (D2) receptors provide autoinhibitory feedback onto dopamine neurons through well-known interactions with voltage-gated calcium channels and G protein-coupled inwardly-rectifying potassium (GIRK) channels. Here, we reveal a third major effector involved in D2R modulation of dopaminergic neurons - the sodium leak channel, NALCN. We found that activation of D2 receptors robustly inhibits isolated sodium leak currents in wild-type mice but not in NALCN conditional knockout mice. Intracellular GDP-βS abolished the inhibition, indicating a G protein-dependent signaling mechanism. The application of dopamine reliably slowed pacemaking even when GIRK channels were pharmacologically blocked. Furthermore, while spontaneous activity was observed in nearly all dopaminergic neurons in wild-type mice, neurons from NALCN knockouts were mainly silent. Both observations demonstrate the critical importance of NALCN for pacemaking in dopaminergic neurons. Finally, we show that GABA-B receptor activation also produces inhibition of NALCN-mediated currents. Therefore, we identify NALCN as a core effector of inhibitory G protein-coupled receptors.
Medical subject headings
- Calcium Channels, N-Type
- Dopaminergic Neurons
- G Protein-Coupled Inwardly-Rectifying Potassium Channels
- Ion Channels
- Nerve Tissue Proteins
- Receptors, Dopamine D2
- Receptors, GABA-B