Olfactory nerve stimulation-evoked mGluR1 slow potentials, oscillations, and calcium signaling in mouse olfactory

Q Yuan1, T Knöpfel

  • 1Laboratory for Neuronal Circuit Dynamics, RIKEN Brain Science Institute, Wako-shi, Saitama, 351-0198, Japan.

Journal of Neurophysiology
|February 10, 2006
PubMed

Insights

Metabotropic glutamate receptor 1 (mGluR1) mediates slow potentials and oscillations in mitral cells (MCs) during high-frequency olfactory nerve stimulation. This glutamate signaling supports synchronized MC activity within olfactory glomeruli.

Area of Science:

  • Neuroscience
  • Olfactory System Research
  • Synaptic Transmission

Background:

  • Fast synaptic transmission in the olfactory system relies on AMPA and NMDA receptors.
  • The role of metabotropic glutamate receptor 1 (mGluR1) in mitral cells (MCs) is not well understood.

Purpose of the Study:

  • To characterize the functional significance of mGluR1 in MCs.
  • To investigate mGluR1-mediated signaling during olfactory nerve stimulation.

Main Methods:

  • Electrophysiological recordings in MCs.
  • High-frequency olfactory nerve stimulation.
  • Pharmacological blockade of ionotropic glutamate receptors (NBQX, D-APV) and GABA(A) receptors (gabazine).
  • Calcium (Ca2+) and sodium (Na+) imaging.
  • Application of mGluR1 antagonist (LY367385).

Main Results:

  • High-frequency stimulation evoked a slow mGluR1-mediated potential and a ~2-Hz oscillation in MCs.
  • These effects were blocked by the mGluR1 antagonist LY367385.
  • The mGluR1 potential was associated with Ca2+ and Na+ transients in the MC dendritic tuft.
  • The potential and oscillation persisted despite blockade of ionotropic glutamate and GABA(A) receptors.

Conclusions:

  • The mGluR1 pathway in MCs is activated by glutamate released during high-frequency olfactory nerve stimulation.
  • This pathway contributes to slow potentials and oscillations, influencing MC synchronization within olfactory glomeruli.

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