A pharmacological profile of the aldehyde receptor repertoire in rat olfactory epithelium
Open Access
- 9 March 2004
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 555 (3) , 743-756
- https://doi.org/10.1113/jphysiol.2003.058040
Abstract
Several lines of evidence suggest that odorants are recognized through a combinatorial process in the olfactory system; a single odorant is recognized by multiple receptors and multiple odorants are recognized by the same receptor. However few details of how this might actually function for any particular odour set or receptor family are available. Approaching the problem from the ligands rather than the receptors, we used the response to a common odorant, octanal, as the basis for defining multiple receptor profiles. Octanal and other aldehydes induce large EOG responses in the rodent olfactory epithelium, suggesting that these compounds activate a large number of odour receptors (ORs). Here, we have determined and compared the pharmacological profile of different octanal receptors using Ca2+ imaging in isolated olfactory sensory neurones (OSNs). It is believed that each OSN expresses only one receptor, thus the response profile of each cell corresponds to the pharmacological profile of one particular receptor. We stimulated the cells with a panel of nine odorants, which included octanal, octanoic acid, octanol and cinnamaldehyde among others (all at 30μm). Cluster analysis revealed several distinct pharmacological profiles for cells that were all sensitive to octanal. Some receptors had a broad molecular range, while others were activated only by octanal. Comparison of the profiles with that of the one identified octanal receptor, OR‐I7, indicated several differences. While OR‐I7 is activated by low concentrations of octanal and blocked by citral, other receptors were less sensitive to octanal and not blocked by citral. A lower estimate for the maximal number of octanal receptors is between 33 and 55. This large number of receptors for octanal suggests that, although the peripheral olfactory system is endowed with high sensitivity, discrimination among different compounds probably requires further central processing.Keywords
This publication has 42 references indexed in Scilit:
- Negative Feedback Regulation Ensures the One Receptor-One Olfactory Neuron Rule in MouseScience, 2003
- Olfactory receptor antagonism between odorantsThe EMBO Journal, 2003
- Ligand‐specific dose–response of heterologously expressed olfactory receptorsEuropean Journal of Biochemistry, 2003
- Olfactory coding in the mammalian olfactory bulbBrain Research Reviews, 2003
- Identification of a Testicular Odorant Receptor Mediating Human Sperm ChemotaxisScience, 2003
- Functional mapping of the rat olfactory bulb using diverse odorants reveals modular responses to functional groups and hydrocarbon structural featuresJournal of Comparative Neurology, 2002
- Representation of Odorants by Receptor Neuron Input to the Mouse Olfactory BulbNeuron, 2001
- Multidimensional chemotopic responses to n-aliphatic acid odorants in the rat olfactory bulbJournal of Comparative Neurology, 1999
- The olfactory multigene familyCurrent Opinion in Neurobiology, 1992
- Odor masking in the ratPhysiology & Behavior, 1989