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Health-associated gut bacteriocins target TLR4 to suppress intestinal inflammation

SHI, Y.; Fang, X.; Lin, X.; Xie, X.; Chen, X.; Zhang, D.; Ma, x.; Chen, J.; Wei, X.; Ren, J.; Wu, G.; Zhou, C.; Chen, N.; Yang, G.; Liu, N.; Li, Y.-X.

2026-07-23 microbiology
10.64898/2026.07.22.739491 bioRxiv
Show abstract

The human microbiome maintains host immune homeostasis by secreting bioactive metabolites. However, extending beyond well-characterized metabolites, the functions of most microbiome-encoded peptides remain poorly defined. In this study, we developed a multi-cohort metagenomic framework to profile protective class II bacteriocins--unmodified, ribosomally synthesized peptides--that are enriched in healthy individuals but depleted in patients with inflammatory bowel disease (IBD). We have designated these health-associated bacteriocins as gutcins. Two gutcins, which lack canonical antimicrobial activity, potently attenuate intestinal inflammation in murine models. Cryo-electron microscopy (cryo-EM) reveals that one gutcin, named gutcin 03, directly engages the C-terminus of TLR4, blocking its dimerization and downstream inflammatory signaling. Guided by this structural interface, we generated truncated variants with enhanced potency, demonstrating the amenability of these simple peptides to rational optimization. Collectively, our findings reposition class II bacteriocins from antimicrobial agents to endogenous immunomodulatory effectors and establish a structural and mechanistic foundation for their development as next-generation therapeutics for inflammatory intestinal disorders.

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