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Chronic Salmonella Infection Induced Intestinal Fibrosis
Published on: September 22, 2019
Fusobacterium nucleatum-derived succinic acid aggravates colitis by triggering macrophage pro-inflammatory phenotypic
Suqi Zeng1,2,3, Shanshan Jiang4, Jianxuan Sun5
1Department of Gastroenterology, Renmin Hospital of Wuhan University, Wuhan University, Wuhan, People's Republic of China.
Abstract:
Fusobacterium nucleatum (F. nucleatum) has been increasingly implicated in the pathogenesis of inflammatory bowel disease (IBD), yet the mechanisms underlying its effects remain incompletely defined. In this study, we integrated human fecal and mucosal samples, comparative metabolomics, multiple experimental colitis models, bacterial genetic manipulation, macrophage functional assays, and host signaling analyses to identify a macrophage-centered mechanism through which F. nucleatum exacerbates colitis. We show that F. nucleatum colonization increases intestinal and systemic levels of its metabolite succinic acid, upregulates the expression of its cognate receptor SUCNR1 on intestinal macrophages, activates NF-κB signaling, and promotes pro-inflammatory macrophage activation. This macrophage inflammatory response is associated with epithelial barrier disruption, increased epithelial apoptosis, and aggravated mucosal and systemic inflammation. A fumarate reductase-deficient (frdA-KO) F. nucleatum strain with impaired succinic acid production showed a markedly reduced capacity to activate macrophage NF-κB signaling, induce macrophage inflammatory activation, and aggravate colitis, whereas exogenous succinic acid restored these effects in the frdA-KO setting. Moreover, siSUCNR1 and pharmacological NF-κB inhibition substantially attenuated succinic acid-induced macrophage inflammatory activation, supporting the involvement of a SUCNR1-NF-κB signaling cascade. Collectively, these findings demonstrate that F. nucleatum exacerbates colitis by producing succinic acid and engaging SUCNR1-NF-κB-dependent inflammatory activation of macrophages, highlighting the F. nucleatum-succinic acid-SUCNR1-NF-κB axis as a potential therapeutic target in IBD.
Insights
Fusobacterium nucleatum exacerbates inflammatory bowel disease (IBD) by producing succinic acid. This metabolite activates macrophages via the SUCNR1-NF-κB pathway, worsening gut inflammation.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Fusobacterium nucleatum is increasingly linked to inflammatory bowel disease (IBD) pathogenesis.
- The precise mechanisms by which F. nucleatum influences IBD remain unclear.
Purpose of the Study:
- To elucidate the macrophage-centered mechanism by which F. nucleatum exacerbates colitis.
- To identify the role of bacterial metabolites and host signaling pathways in F. nucleatum-induced inflammation.
Main Methods:
- Integration of human samples, metabolomics, experimental colitis models, and bacterial genetic manipulation.
- Analysis of macrophage activation, host signaling pathways (NF-κB), and epithelial barrier function.
- Assessment of a fumarate reductase-deficient (frdA-KO) F. nucleatum strain and the effects of succinic acid, SUCNR1 inhibition, and NF-κB blockade.
Main Results:
- F. nucleatum colonization increases intestinal succinic acid levels, upregulating SUCNR1 on macrophages.
- Succinic acid activates macrophage NF-κB signaling, promoting pro-inflammatory responses and exacerbating colitis.
- Impaired succinic acid production by frdA-KO F. nucleatum reduced colitis severity, an effect restored by exogenous succinic acid.
- SUCNR1 engagement and NF-κB activation mediate succinic acid-induced macrophage inflammation.
Conclusions:
- F. nucleatum exacerbates colitis via a succinic acid-driven mechanism involving SUCNR1-NF-κB signaling in macrophages.
- The F. nucleatum-succinic acid-SUCNR1-NF-κB axis represents a potential therapeutic target for IBD.
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