
pmid: 15186780
Individual olfactory sensory neurons express only a single odorant receptor from a large family of genes, and this singularity is an essential feature in models of olfactory perception. We have devised a genetic strategy to examine the stability of receptor choice. We observe that immature olfactory sensory neurons that express a given odorant receptor can switch receptor expression, albeit at low frequency. Neurons that express a mutant receptor gene switch receptor transcription with significantly greater probability, suggesting that the expression of a functional odorant receptor elicits a feedback signal that terminates switching. This process of receptor gene switching assures that a neuron will ultimately express a functional receptor and that the choice of this receptor will remain stable for the life of the cell.
Feedback, Physiological, Integrases, Biochemistry, Genetics and Molecular Biology(all), Green Fluorescent Proteins, Growth Cones, Gene Expression Regulation, Developmental, Apoptosis, Cell Differentiation, Receptors, Odorant, Olfactory Bulb, Olfactory Receptor Neurons, Mice, Inbred C57BL, Smell, Luminescent Proteins, Mice, Genes, Reporter, Mutation, Synapses, Animals, Cell Lineage, RNA, Messenger
Feedback, Physiological, Integrases, Biochemistry, Genetics and Molecular Biology(all), Green Fluorescent Proteins, Growth Cones, Gene Expression Regulation, Developmental, Apoptosis, Cell Differentiation, Receptors, Odorant, Olfactory Bulb, Olfactory Receptor Neurons, Mice, Inbred C57BL, Smell, Luminescent Proteins, Mice, Genes, Reporter, Mutation, Synapses, Animals, Cell Lineage, RNA, Messenger
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