Turicibacterales protect mice from severe Citrobacter rodentium infection
Hoek, K. L.; McClanahan, K. G.; Latour, Y. L.; Shealy, N.; Piazuelo, M. B.; Vallance, B. A.; Byndloss, M. X.; Olivares-Villagomez, D.; Wilson, K. T.
Show abstract
One of the major contributors to child mortality in the world is diarrheal diseases, with an estimated 800,000 deaths per year. Many pathogens are causative agents of these illnesses, including the enteropathogenic (EPEC) or enterohemorrhagic (EHEC) forms of Escherichia coli. These bacteria are characterized by their ability to cause attaching and effacing lesions in the gut mucosa. Although much has been learned about the pathogenicity of these organisms and the immune response against them, the role of the intestinal microbiota during these infections is not well characterized. Infection of mice with E. coli requires pre-treatment with antibiotics in most mouse models, which hinders the study of the microbiota in an undisturbed environment. Using Citrobacter rodentium as a murine model for attaching and effacing bacteria, we show that C57BL/6 mice deficient in granzyme B expression are highly susceptible to severe disease caused by C. rodentium infection. Although a previous publication from our group shows that granzyme B-deficient CD4+ T cells are partially responsible for this phenotype, in this report we present data demonstrating that the microbiota, in particular members of the order Turicibacterales, have an important role in conferring resistance. Mice deficient in Turicibacter sanguinis have increased susceptibility to severe disease. However, when these mice are co-housed with resistant mice, or colonized with T. sanguinis, susceptibility to severe infection is reduced. These results clearly suggest a critical role for this commensal in the protection against entero-pathogens.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Protection from lethal Clostridioides difficile infection via intraspecies competition for co-germinant 97%
- Modelling the gastrointestinal carriage of Klebsiella pneumoniae infections. 97%
- Intestinal inflammation reversibly alters the microbiota to drive susceptibility to Clostridioides difficile colonization in a mouse model of colitis 96%
Similar papers in this journal
- An Animal Model to Study Klebsiella pneumoniae Gastro-Intestinal Colonization and Host-to-Host Transmission 97%
- Neonatal enteropathogenic Escherichia coli infection disrupts microbiota-gut-brain axis signaling 96%
- Klebsiella pneumoniae L-Fucose metabolism promotes gastrointestinal colonization and modulates its virulence determinants 95%
Similar papers in this journal
- Clearance of Clostridioides difficile colonization is associated with antibiotic-specific bacterial changes 95%
- Wnt5A Signaling Regulates Gut Bacterial Survival and T cell Homeostasis 95%
- Identification of simplified microbial communities that inhibit Clostridioides difficile infection through dilution/extinction 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.