Literature DB >> 19723634

Dual activities of odorants on olfactory and nuclear hormone receptors.

Horst Pick1, Sylvain Etter, Olivia Baud, Ralf Schmauder, Lorenza Bordoli, Torsten Schwede, Horst Vogel.   

Abstract

We have screened an odorant compound library and discovered molecules acting as chemical signals that specifically activate both G-protein-coupled olfactory receptors (ORs) on the cell surface of olfactory sensory neurons and the human nuclear estrogen receptor alpha (ER) involved in transcriptional regulation of cellular differentiation and proliferation in a wide variety of tissues. Hence, these apparent dual active odorants induce distinct signal transduction pathways at different subcellular localizations, which affect both neuronal signaling, resulting in odor perception, and the ER-dependent transcriptional control of specific genes. We demonstrate these effects using fluorescence-based in vitro and cellular assays. Among these odorants, we have identified synthetic sandalwood compounds, an important class of molecules used in the fragrance industry. For one estrogenic odorant we have also identified the cognate OR. This prompted us to compare basic molecular recognition principles of odorants on the two structurally and apparent functionally non-related receptors using computational modeling in combination with functional assays. Faced with the increasing evidence that ORs may perform chemosensory functions in a number of tissues outside of the nasal olfactory epithelium, the unraveling of these molecular ligand-receptor interaction principles is of critical importance. In addition the evidence that certain olfactory sensory neurons naturally co-express ORs and ERs may provide a direct functional link between the olfactory and hormonal systems in humans. Our results are therefore useful for defining the structural and functional characteristics of ER-specific odorants and the role of odorant molecules in cellular processes other than olfaction.

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Year:  2009        PMID: 19723634      PMCID: PMC2781609          DOI: 10.1074/jbc.M109.040964

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  72 in total

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4.  The estrogen receptor relative binding affinities of 188 natural and xenochemicals: structural diversity of ligands.

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Journal:  Neural Regen Res       Date:  2017-09       Impact factor: 5.135

3.  Could the Olfactory System Be a Target for Homeopathic Remedies as Nanomedicines?

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4.  Computational modeling of the olfactory receptor Olfr73 suggests a molecular basis for low potency of olfactory receptor-activating compounds.

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5.  A Comparison of the Composition of Selected Commercial Sandalwood Oils with the International Standard.

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