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Transcriptional adaptation of olfactory sensory neurons to GPCR identity and activity. | LitMetric

AI Article Synopsis

  • Chemoperception in mammals involves a variety of neuronal sensors that can detect environmental chemicals and adapt to different stimulation levels.
  • Research focused on mouse olfactory sensory neurons revealed that their genetic profiles are already distinct based on the olfactory receptors they express, even before any odor exposure.
  • The study showed that these neuronal profiles change further with exposure to odors, indicating that sensory neuron identities are both complex and adaptable based on individual experiences.

Article Abstract

In mammals, chemoperception relies on a diverse set of neuronal sensors able to detect chemicals present in the environment, and to adapt to various levels of stimulation. The contribution of endogenous and external factors to these neuronal identities remains to be determined. Taking advantage of the parallel coding lines present in the olfactory system, we explored the potential variations of neuronal identities before and after olfactory experience. We found that at rest, the transcriptomic profiles of mouse olfactory sensory neuron populations are already divergent, specific to the olfactory receptor they express, and are associated with the sequence of these latter. These divergent profiles further evolve in response to the environment, as odorant exposure leads to reprogramming via the modulation of transcription. These findings highlight a broad range of sensory neuron identities that are present at rest and that adapt to the experience of the individual, thus adding to the complexity and flexibility of sensory coding.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9132991PMC
http://dx.doi.org/10.1038/s41467-022-30511-4DOI Listing

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