Microbiota encoded fatty-acid metabolism expands tuft cells to protect tissues homeostasis duringClostridioides difficileinfection in the large intestine

Author:

Kellogg Tasia D.,Ceglia Simona,Mortzfeld Benedikt M.ORCID,Zeamer Abigail L.,Foley Sage E.,Ward Doyle V.ORCID,Bhattarai Shakti K.,McCormick Beth A.,Reboldi AndreaORCID,Bucci VanniORCID

Abstract

AbstractMetabolic byproducts of the intestinal microbiota are crucial in maintaining host immune tone and shaping inter-species ecological dynamics. Among these metabolites, succinate is a driver of tuft cell (TC) differentiation and consequent type 2 immunity-dependent protection against invading parasites in the small intestine. Succinate is also a growth enhancer of the nosocomial pathogenClostridioides difficilein the large intestine. To date, no research has shown the role of succinate in modulating TC dynamics in the large intestine, or the relevance of this immune pathway toC. difficilepathophysiology. Here we reveal the existence of a three-way circuit between commensal microbes,C. difficileand host epithelial cells which centers around succinate. Through selective microbiota depletion experiments we demonstrate higher levels of type 2 cytokines leading to expansion of TCs in the colon. We then demonstrate the causal role of the microbiome in modulating colonic TC abundance and subsequent type 2 cytokine induction using rational supplementation experiments with fecal transplants and microbial consortia of succinate-producing bacteria. We show that administration of a succinate-deficientBacteroides thetaiotaomicronknockout (Δfrd) significantly reduces the enhanced type 2 immunity in mono-colonized mice. Finally, we demonstrate that mice prophylactically administered with the consortium of succinate-producing bacteria show reducedC. difficile-induced morbidity and mortality compared to mice administered with heat-killed bacteria or the vehicle. This effect is reduced in a partial tuft cell knockout mouse,Pou2f3+/-, and nullified in the tuft cell knockout mouse,Pou2f3-/-, confirming that the observed protection occursviathe TC pathway. Succinate is an intermediary metabolite of the production of short-chain fatty acids, and its concentration often increases during dysbiosis. The first barrier to enteric pathogens alike is the intestinal epithelial barrier, and host maintenance and strengthening of barrier integrity is vital to homeostasis. Considering our data, we propose that activation of TC by the microbiota-produced succinate in the colon is a mechanism evolved by the host to counterbalance microbiome-derived cues that facilitate invasion by intestinal pathogens.

Publisher

Cold Spring Harbor Laboratory

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