Altered synaptic transmission at olfactory and vomeronasal nerve terminals in mice lacking N-type calcium channel

Jan Weiss1, Martina Pyrski, Petra Weissgerber

  • 1Department of Physiology, University of Saarland School of Medicine, Kirrbergerstrasse, Building 58, D-66421, Homburg, Germany.

Insights

The N-type calcium channel Cav2.2 is crucial for synaptic transmission in mouse olfactory and vomeronasal systems. Its absence alters channel function and impacts olfactory perception, suggesting a role in altered smell sensitivity.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Sensory Systems

Background:

  • Voltage-activated calcium (Cav) channels mediate neurotransmitter release at synapses.
  • Olfactory and vomeronasal pathways are essential for smell and chemosensation, respectively.
  • Understanding presynaptic mechanisms is key to deciphering sensory processing.

Purpose of the Study:

  • To investigate the role of Cav channels in synaptic transmission at olfactory and vomeronasal nerve terminals.
  • To identify the specific Cav channel subtypes involved in these pathways.
  • To explore the functional consequences of Cav2.2 subunit deficiency.

Main Methods:

  • Immunohistochemistry to localize Cav2.2.
  • Voltage-clamp recordings to measure synaptic currents (EPSCs).
  • Pharmacological blockade using subtype-specific Cav channel toxins.
  • Analysis of Cacna1b mutant mice lacking the Cav2.2 subunit.

Main Results:

  • Cav2.2 showed significant localization in olfactory and vomeronasal bulbs.
  • N-type Cav channels, primarily Cav2.2, were predominant in transmitter release.
  • Cacna1b mutant mice displayed blocker-resistant EPSCs and altered paired-pulse depression.
  • Cav2.2 deficiency critically affected vomeronasal nerve-evoked EPSCs.

Conclusions:

  • Cav2.2 plays a central role in synaptic transmission at the first synapse of olfactory and vomeronasal pathways.
  • Loss-of-function mutations in Cacna1b may not cause anosmia but could underlie altered olfactory perception and social responses.
  • Cav2.2 is essential for normal function and plasticity in these sensory systems.