Uncoupling of invasive bacterial mucosal immunogenicity from pathogenicity

Author:

Pfister Simona P.ORCID,Schären Olivier P.ORCID,Beldi LucaORCID,Printz Andrea,Notter Matheus D.,Mukherjee MohanaORCID,Li HaiORCID,Limenitakis Julien P.,Werren Joel P.ORCID,Tandon Disha,Cuenca Miguelangel,Hagemann Stefanie,Uster Stephanie S.,Terrazos Miguel A.ORCID,Gomez de Agüero MercedesORCID,Schürch Christian M.ORCID,Coelho Fernanda M.ORCID,Curtiss Roy,Slack EmmaORCID,Balmer Maria L.ORCID,Hapfelmeier SiegfriedORCID

Abstract

AbstractThere is the notion that infection with a virulent intestinal pathogen induces generally stronger mucosal adaptive immunity than the exposure to an avirulent strain. Whether the associated mucosal inflammation is important or redundant for effective induction of immunity is, however, still unclear. Here we use a model of auxotrophic Salmonella infection in germ-free mice to show that live bacterial virulence factor-driven immunogenicity can be uncoupled from inflammatory pathogenicity. Although live auxotrophic Salmonella no longer causes inflammation, its mucosal virulence factors remain the main drivers of protective mucosal immunity; virulence factor-deficient, like killed, bacteria show reduced efficacy. Assessing the involvement of innate pathogen sensing mechanisms, we show MYD88/TRIF, Caspase-1/Caspase-11 inflammasome, and NOD1/NOD2 nodosome signaling to be individually redundant. In colonized animals we show that microbiota metabolite cross-feeding may recover intestinal luminal colonization but not pathogenicity. Consequent immunoglobulin A immunity and microbial niche competition synergistically protect against Salmonella wild-type infection.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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