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Genetic Depletion of Class I Odorant Receptors Impacts Perception of Carboxylic Acids.

Annika Cichy | Ami Shah | Adam Dewan | Sarah Kaye | Thomas Bozza
Current biology : CB | 2019

The mammalian main olfactory pathway detects myriad volatile chemicals using >1,000 odorant receptor (OR) genes, which are organized into two phylogenetically distinct classes (class I and class II). An important question is how these evolutionarily conserved classes contribute to odor perception. Here, we report functional inactivation of a large number of class I ORs in mice via identification and deletion of a local cis-acting enhancer in the class I gene cluster. This manipulation reduced expression of half of the 131 intact class I genes. The resulting class I-depleted mice exhibited a significant reduction in the number of glomeruli responding to carboxylic acids-chemicals associated with microbial action and body odors. These mice also exhibit a change in odor perception marked by a selective loss of behavioral aversion to these compounds. Together, our data demonstrate that class I ORs play a critical role in representing a class of biologically relevant chemosignals.

Pubmed ID: 31378611

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Associated grants

  • Agency: NIDCD NIH HHS, United States
    Id: F32 DC000357
  • Agency: NIDCD NIH HHS, United States
    Id: R01 DC013576
  • Agency: NIDCD NIH HHS, United States
    Id: R03 DC014565

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UCSC Genome Browser (tool)

RRID:SCR_005780

Portal to interactively visualize genomic data. Provides reference sequences and working draft assemblies for collection of genomes and access to ENCODE and Neanderthal projects. Includes collection of vertebrate and model organism assemblies and annotations, along with suite of tools for viewing, analyzing and downloading data.

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