Identification of an anti-inflammatory protein fromFaecalibacterium prausnitzii, a commensal bacterium deficient in Crohn’s disease

普氏粪杆菌 微生物学 结肠炎 生物 炎症性肠病 分子生物学 免疫学 医学 粪便 病理 疾病
作者
Elodie Quévrain,Marie-Anne Maubert,Christophe Michon,Florian Chain,Rodrigue Marquant,Julien Tailhades,Sylvie Miquel,Ludovic Carlier,Luis G. Bermúdez‐Humarán,Bénédicte Pigneur,Olivier Lequin,Pascale Kharrat,G. Thomas,Dominique Rainteau,Camille Aubry,Natália Martins Breyner,Carlos Afonso,Solange Lavielle,Jean-Pierre Grill,Gérard Chassaing,Jean‐Marc Chatel,Germain Trugnan,Ramnik J. Xavier,Philippe Langella,Harry Sokol,Philippe Seksik
出处
期刊:Gut [BMJ]
卷期号:65 (3): 415-425 被引量:649
标识
DOI:10.1136/gutjnl-2014-307649
摘要

Crohn's disease (CD)-associated dysbiosis is characterised by a loss of Faecalibacterium prausnitzii, whose culture supernatant exerts an anti-inflammatory effect both in vitro and in vivo. However, the chemical nature of the anti-inflammatory compounds has not yet been determined.Peptidomic analysis using mass spectrometry was applied to F. prausnitzii supernatant. Anti-inflammatory effects of identified peptides were tested in vitro directly on intestinal epithelial cell lines and on cell lines transfected with a plasmid construction coding for the candidate protein encompassing these peptides. In vivo, the cDNA of the candidate protein was delivered to the gut by recombinant lactic acid bacteria to prevent dinitrobenzene sulfonic acid (DNBS)-colitis in mice.The seven peptides, identified in the F. prausnitzii culture supernatants, derived from a single microbial anti-inflammatory molecule (MAM), a protein of 15 kDa, and comprising 53% of non-polar residues. This last feature prevented the direct characterisation of the putative anti-inflammatory activity of MAM-derived peptides. Transfection of MAM cDNA in epithelial cells led to a significant decrease in the activation of the nuclear factor (NF)-κB pathway with a dose-dependent effect. Finally, the use of a food-grade bacterium, Lactococcus lactis, delivering a plasmid encoding MAM was able to alleviate DNBS-induced colitis in mice.A 15 kDa protein with anti-inflammatory properties is produced by F. prausnitzii, a commensal bacterium involved in CD pathogenesis. This protein is able to inhibit the NF-κB pathway in intestinal epithelial cells and to prevent colitis in an animal model.
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