Mechanisms and functional roles of glutamatergic synapse diversity in a cerebellar circuit.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 27642013.
- Also identified by DOI 10.7554/eLife.15872 and PMC identifier 5074806.
- 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
Synaptic currents display a large degree of heterogeneity of their temporal characteristics, but the functional role of such heterogeneities remains unknown. We investigated in rat cerebellar slices synaptic currents in Unipolar Brush Cells (UBCs), which generate intrinsic mossy fibers relaying vestibular inputs to the cerebellar cortex. We show that UBCs respond to sinusoidal modulations of their sensory input with heterogeneous amplitudes and phase shifts. Experiments and modeling indicate that this variability results both from the kinetics of synaptic glutamate transients and from the diversity of postsynaptic receptors. While phase inversion is produced by an mGluR2-activated outward conductance in OFF-UBCs, the phase delay of ON UBCs is caused by a late rebound current resulting from AMPAR recovery from desensitization. Granular layer network modeling indicates that phase dispersion of UBC responses generates diverse phase coding in the granule cell population, allowing climbing-fiber-driven Purkinje cell learning at arbitrary phases of the vestibular input.
Medical subject headings
- Cerebellar Cortex
- Excitatory Amino Acid Agents
- Glutamic Acid
- Nerve Fibers
- Nerve Net
- Receptors, Glutamate
- Vestibule, Labyrinth