bioRxiv · 10.1101/2023.06.07.544052
Enteric glial hub cells coordinate intestinal motility
Abstract
The enteric nervous system is a complex network of neurons and glia within the gut that coordinate gut motility. By optimizing single nucleus RNA-sequencing methods and spatial transcriptomics, we generated maps of the mouse duodenum and identified distinct molecular classes of enteric glia across the intestine with unique morphological and spatial identities. Here we show enteric glial functional specialization, with one myenteric subtype directly sensing force and expressing the mechanosensory ion channel PIEZO2. Genetic reduction of PIEZO2 in enteric glial populations enriched for this mechanosensory subtype led to defects in gastrointestinal motility. These results provide insight into the multifaceted functions of distinct enteric glial cell subtypes in maintaining gut health, and emphasize the importance of considering subtype-specific roles of enteric glia in a wide range of diseases and disorders.
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Scavuzzo, M. A., Letai, K. C., Maeno-Hikichi, Y., Wulftange, W. J., Shah, I. K., Rameshbabu, J. S., Tomar, A., Shick, H. E., Shah, A. K., Xiong, Y., Cohn, E. F., Allan, K. C., Tesar, P. J.. 2023-06-09. Enteric glial hub cells coordinate intestinal motility. https://doi.org/10.1101/2023.06.07.544052
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