Control of Excitation/Inhibition Balance in a Hippocampal Circuit by Calcium Sensor Protein Regulation of Presynaptic Calcium Channels

Apr 15, 2018The Journal of neuroscience : the official journal of the Society for Neuroscience

How a Calcium Sensor Protein Controls Excitation and Inhibition by Regulating Calcium Channels in a Memory-Related Brain Circuit

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Abstract

The introduction of the IM-AA mutation in Ca2.1 channels in mice impairs short-term synaptic facilitation at excitatory synapses.

  • Regulation of voltage-gated calcium channels by neuronal calcium sensor proteins is crucial for synaptic plasticity in the hippocampus.
  • The IM-AA mutation leads to impaired short-term synaptic facilitation in excitatory synapses while abolishing rapid synaptic depression in inhibitory synapses.
  • Deletion of the CaS protein CaBP1/caldendrin also disrupts rapid depression at inhibitory synapses, indicating its role in short-term synaptic plasticity.
  • Altered regulation of calcium channels results in reduced inhibition of CA1 pyramidal neurons and an increased excitation/inhibition ratio.
  • These disruptions in local-circuit function may contribute to deficits in spatial learning and memory observed in IM-AA mice.

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