Cross-adaptation between Olfactory Responses Induced by Two Subgroups of Odorant Molecules

Author:

Takeuchi Hiroko1,Imanaka Yukie23,Hirono Junzo3,Kurahashi Takashi1

Affiliation:

1. Department of Frontier Biosciences, Osaka University, Toyonaka, Osaka 560-8531, Japan

2. Department of Biophysical Engineering, Osaka University, Toyonaka, Osaka 560-8531, Japan

3. Tissue Engineering Research Center, National Institute of Advanced Industrial Science and Technology, 3-11-46, Nakoji, Amagasaki 661-0974, Japan

Abstract

It has long been believed that vertebrate olfactory signal transduction is mediated by independent multiple pathways (using cAMP and InsP3 as second messengers). However, the dual presence of parallel pathways in the olfactory receptor cell is still controversial, mainly because of the lack of information regarding the single-cell response induced by odorants that have been shown to produce InsP3 exclusively (but not cAMP) in the olfactory cilia. In this study, we recorded activities of transduction channels of single olfactory receptor cells to InsP3-producing odorants. When the membrane potential was held at −54 mV, application of InsP3-producing odorants to the ciliary region caused an inward current. The reversal potential was 0 ± 7 mV (mean ± SD, n = 10). Actually, InsP3-producing odorants generated responses in a smaller fraction of cells (lilial, 3.4%; lyral, 1.7%) than the cAMP-producing odorant (cineole, 26%). But, fundamental properties of responses were surprisingly homologous; namely, spatial distribution of the sensitivity, waveforms, I-V relation, and reversal potential, dose dependence, time integration of stimulus period, adaptation, and recovery. By applying both types of odorants alternatively to the same cell, furthermore, we observed cells to exhibit symmetrical cross-adaptation. It seems likely that even with odorants with different modalities adaptation occurs completely depending on the amount of current flow. The data will also provide evidence showing that olfactory response generation and adaptation are regulated by a uniform mechanism for a wide variety of odorants.

Publisher

Rockefeller University Press

Subject

Physiology

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