Publication | Open Access
Elementary properties of Ca2+ channels and their influence on multivesicular release and phase-locking at auditory hair cell ribbon synapses
21
Citations
66
References
2015
Year
Synaptic TransmissionNeurotransmitterNeurotransmissionVoltage-gated CalciumMultivesicular ReleaseCellular PhysiologyNeurodynamicsAfferent FiberBiophysicsHealth SciencesNervous SystemCa2+ ChannelsElementary PropertiesAuditory Hair CellsSynaptic PlasticityNeurophysiologyPhysiologyAuditory PhysiologySingle Ihc CaNeuroscienceElectrophysiologyCentral Nervous SystemMedicineAuditory System
Voltage-gated calcium (Cav1.3) channels in mammalian inner hair cells (IHCs) open in response to sound and the resulting Ca(2+) entry triggers the release of the neurotransmitter glutamate onto afferent terminals. At low to mid sound frequencies cell depolarization follows the sound sinusoid and pulses of transmitter release from the hair cell generate excitatory postsynaptic currents (EPSCs) in the afferent fiber that translate into a phase-locked pattern of action potential activity. The present article summarizes our current understanding on the elementary properties of single IHC Ca(2+) channels, and how these could have functional implications for certain, poorly understood, features of synaptic transmission at auditory hair cell ribbon synapses.
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