Presynaptic depolarization and calcium channel opening (Homo sapiens)
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Description
The action potential travels down the axon and reaches the pre-synaptic terminal depolarizing the membrane in the pre-synaptic terminal. The depolarization causes the voltage-gated Ca2+ channels to open allowing the influx of Ca2+ that signals the release of neurotransmitter into the synaptic cleft.
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Hyperpolarization of the cell membrane due to KIR3 potassium channel activity inhibits this influx of Ca2+.