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Publication : Renewal and Differentiation of GCD Necklace Olfactory Sensory Neurons.

First Author  Bloom ML Year  2020
Journal  Chem Senses Volume  45
Issue  5 Pages  333-346
PubMed ID  32333759 Mgi Jnum  J:317191
Mgi Id  MGI:6850084 Doi  10.1093/chemse/bjaa027
Citation  Bloom ML, et al. (2020) Renewal and Differentiation of GCD Necklace Olfactory Sensory Neurons. Chem Senses 45(5):333-346
abstractText  Both canonical olfactory sensory neurons (OSNs) and sensory neurons belonging to the guanylate cyclase D (GCD) "necklace" subsystem are housed in the main olfactory epithelium, which is continuously bombarded by toxins, pathogens, and debris from the outside world. Canonical OSNs address this challenge, in part, by undergoing renewal through neurogenesis; however, it is not clear whether GCD OSNs also continuously regenerate and, if so, whether newborn GCD precursors follow a similar developmental trajectory to that taken by canonical OSNs. Here, we demonstrate that GCD OSNs are born throughout adulthood and can persist in the epithelium for several months. Phosphodiesterase 2A is upregulated early in the differentiation process, followed by the sequential downregulation of beta-tubulin and the upregulation of CART protein. The GCD and MS4A receptors that confer sensory responses upon GCD neurons are initially expressed midway through this process but become most highly expressed once CART levels are maximal late in GCD OSN development. GCD OSN maturation is accompanied by a horizontal migration of neurons toward the central, curved portions of the cul-de-sac regions where necklace cells are concentrated. These findings demonstrate that-like their canonical counterparts-GCD OSNs undergo continuous renewal and define a GCD-specific developmental trajectory linking neurogenesis, maturation, and migration.
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