GABA<sub>A</sub> presynaptic inhibition regulates the gain and kinetics of retinal output neurons.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33904401.
- Also identified by DOI 10.7554/eLife.60994 and PMC identifier 8110304.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Output signals of neural circuits, including the retina, are shaped by a combination of excitatory and inhibitory signals. Inhibitory signals can act presynaptically on axon terminals to control neurotransmitter release and regulate circuit function. However, it has been difficult to study the role of presynaptic inhibition in most neural circuits due to lack of cell type-specific and receptor type-specific perturbations. In this study, we used a transgenic approach to selectively eliminate GABA<sub>A</sub> inhibitory receptors from select types of second-order neurons - bipolar cells - in mouse retina and examined how this affects the light response properties of the well-characterized ON alpha ganglion cell retinal circuit. Selective loss of GABA<sub>A</sub> receptor-mediated presynaptic inhibition causes an enhanced sensitivity and slower kinetics of light-evoked responses from ON alpha ganglion cells thus highlighting the role of presynaptic inhibition in gain control and temporal filtering of sensory signals in a key neural circuit in the mammalian retina.
Medical subject headings
- GABA-A Receptor Antagonists
- Presynaptic Terminals
- Receptors, GABA-A
- Retinal Neurons