Regional encoding of enteric nervous system responses to microbiota and type 2 inflammation.
basic_science · Level V
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- Record sourced from PubMed, PMID 41166460.
- Also identified by DOI 10.1126/science.adr3545.
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Abstract
Enteric neurons are essential regulators of intestinal physiology, yet their responses to varying microbial and immune environments along the intestinal tract and or during challenges remain poorly understood. In this study, we regionally profiled enteric neurons across gnotobiotic, allergic, and parasite-infected mice. Timing and complexity of microbial perturbations and type 2 inflammation result in motor neuron state shifts and alter multiple functionally distinct sensory neurons, including interleukin-13- and leukotriene-responsive <i>Nmu</i>-hi cells and <i>Grp</i>-hi neurons, which expand in germ-free colonic tissue and interact with <i>Grpr</i><sup>+</sup> interstitial cells of Cajal. Leveraging adeno-associated virus-based Perturb-seq, we identified <i>Edf1</i> and <i>Mitf</i> as controllers of motor neuron state transition and gastrointestinal transit time, directly linking enteric neuron states to physiology.
Medical subject headings
- Colon
- Enteric Nervous System
- Gastrointestinal Microbiome
- Inflammation
- Motor Neurons
- Sensory Receptor Cells