Microbiota-modulated CART+ enteric neurons autonomously regulate blood glucose

Author:

Muller Paul A.1ORCID,Matheis Fanny1ORCID,Schneeberger Marc2ORCID,Kerner Zachary1,Jové Veronica3ORCID,Mucida Daniel1ORCID

Affiliation:

1. Laboratory of Mucosal Immunology, The Rockefeller University, New York, NY, USA.

2. Laboratory of Molecular Genetics, Howard Hughes Medical Institute, The Rockefeller University, New York, NY, USA.

3. Laboratory of Neurogenetics and Behavior, Howard Hughes Medical Institute, The Rockefeller University, New York, NY, USA.

Abstract

The gut microbiota affects tissue physiology, metabolism, and function of both the immune and nervous systems. We found that intrinsic enteric-associated neurons (iEANs) in mice are functionally adapted to the intestinal segment they occupy; ileal and colonic neurons are more responsive to microbial colonization than duodenal neurons. Specifically, a microbially responsive subset of viscerofugal CART+ neurons, enriched in the ileum and colon, modulated feeding and glucose metabolism. These CART+ neurons send axons to the prevertebral ganglia and are polysynaptically connected to the liver and pancreas. Microbiota depletion led to NLRP6- and caspase 11–dependent loss of CART+ neurons and impaired glucose regulation. Hence, iEAN subsets appear to be capable of regulating blood glucose levels independently from the central nervous system.

Funder

National Institutes of Health

NIH Office of the Director

National Institute of Diabetes and Digestive and Kidney Diseases

Burroughs Wellcome Fund

FARE/FASI

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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