bioRxiv · 10.1101/2020.02.09.941179
Axonal mechanisms mediating GABA-A receptor inhibition of striatal dopamine release
Abstract
Axons of midbrain dopaminergic neurons innervate the striatum where they contribute to movement and reinforcement learning. Past work has shown that striatal GABA tonically inhibits dopamine release, but whether GABA-A receptors directly modulate transmission or act indirectly through circuit elements is unresolved. Here, we use whole-cell and perforated-patch recordings to test for GABA-A receptors on the main dopaminergic neuron axons and branching processes within striatum. Application of GABA depolarized axons, but also decreased the amplitude of axonal spikes, limited propagation and reduced striatal dopamine release. The mechanism of inhibition involved sodium channel inactivation and shunting. Lastly, we show that the positive allosteric modulator diazepam enhanced GABA-A currents on dopaminergic neuron axons and directly inhibited release, but also likely acts by reducing excitatory drive from cholinergic interneurons. Thus, we reveal the mechanisms of GABA-A receptor modulation of dopamine release and provide new insight into the actions of benzodiazepines within the striatum.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kramer, P. F., Twedell, E. L., Shin, J. H., Zhang, R., Khaliq, Z. M.. 2020-02-10. Axonal mechanisms mediating GABA-A receptor inhibition of striatal dopamine release. https://doi.org/10.1101/2020.02.09.941179
Cite the original work for its findings. Save a collection to share your selection of sources.