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Real-time In Vitro Monitoring of Odorant Receptor Activation by an Odorant in the Vapor Phase
Published on: April 23, 2019
Role of iRhom2 in Olfaction: Implications for Odorant Receptor Regulation and Activity-Dependent Adaptation
Stephanie A Azzopardi1,2,3, Hsiu-Yi Lu4, Sebastien Monette5
1Weill Cornell Medicine/Rockefeller University/Memorial Sloan-Kettering Cancer Center, Tri-Institutional MD-PhD Program, New York, NY 10021, USA.
Abstract:
The cell surface metalloprotease ADAM17 (a disintegrin and metalloprotease 17) and its binding partners iRhom2 and iRhom1 (inactive Rhomboid-like proteins 1 and 2) modulate cell-cell interactions by mediating the release of membrane proteins such as TNFα (Tumor necrosis factor α) and EGFR (Epidermal growth factor receptor) ligands from the cell surface. Most cell types express both iRhoms, though myeloid cells exclusively express iRhom2, and iRhom1 is the main iRhom in the mouse brain. Here, we report that iRhom2 is uniquely expressed in olfactory sensory neurons (OSNs), highly specialized cells expressing one olfactory receptor (OR) from a repertoire of more than a thousand OR genes in mice. iRhom2-/- mice had no evident morphological defects in the olfactory epithelium (OE), yet RNAseq analysis revealed differential expression of a small subset of ORs. Notably, while the majority of ORs remain unaffected in iRhom2-/- OE, OSNs expressing ORs that are enriched in iRhom2-/- OE showed fewer gene expression changes upon odor environmental changes than the majority of OSNs. Moreover, we discovered an inverse correlation between the expression of iRhom2 compared to OSN activity genes and that odor exposure negatively regulates iRhom2 expression. Given that ORs are specialized G-protein coupled receptors (GPCRs) and many GPCRs activate iRhom2/ADAM17, we investigated if ORs could activate iRhom2/ADAM17. Activation of an olfactory receptor that is ectopically expressed in keratinocytes (OR2AT4) by its agonist Sandalore leads to ERK1/2 phosphorylation, likely via an iRhom2/ADAM17-dependent pathway. Taken together, these findings point to a mechanism by which odor stimulation of OSNs activates iRhom2/ADAM17 catalytic activity, resulting in downstream transcriptional changes to the OR repertoire and activity genes, and driving a negative feedback loop to downregulate iRhom2 expression.
Insights
iRhom2 is uniquely expressed in olfactory sensory neurons (OSNs) and regulates olfactory receptor (OR) gene expression. Odor stimulation activates iRhom2/ADAM17, influencing ORs and creating a feedback loop to downregulate iRhom2.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- ADAM17 and iRhoms regulate cell-cell interactions by releasing membrane proteins.
- iRhom2 is typically found in myeloid cells, while iRhom1 is dominant in the mouse brain.
- Olfactory sensory neurons (OSNs) express a vast repertoire of olfactory receptors (ORs).
Purpose of the Study:
- To investigate the unique role of iRhom2 in olfactory sensory neurons (OSNs).
- To determine if olfactory receptors (ORs) can activate the iRhom2/ADAM17 pathway.
- To elucidate the mechanism linking odor stimulation to downstream transcriptional changes in OSNs.
Main Methods:
- Analysis of iRhom2 expression in olfactory sensory neurons (OSNs) of iRhom2-/- mice.
- RNA sequencing (RNAseq) to assess olfactory receptor (OR) gene expression.
- Investigation of iRhom2/ADAM17 pathway activation by an olfactory receptor (OR2AT4) agonist.
Main Results:
- iRhom2 is uniquely expressed in OSNs; iRhom2-/- mice show altered expression of a subset of ORs.
- OSNs expressing certain ORs in iRhom2-/- mice exhibit reduced gene expression changes upon odor exposure.
- Odor exposure negatively regulates iRhom2 expression, and OR activation can trigger iRhom2/ADAM17-dependent signaling.
Conclusions:
- Odor stimulation activates iRhom2/ADAM17 in OSNs, leading to transcriptional changes in ORs and activity genes.
- This process establishes a negative feedback loop, downregulating iRhom2 expression.
- iRhom2 plays a critical role in modulating the olfactory receptor repertoire and response to odor stimuli.
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