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1.
Front Immunol ; 15: 1282680, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38318189

RESUMEN

Background: Helicobacter pylori (H. pylori) uses various strategies that attenuate mucosal immunity to ensure its persistence in the stomach. We recently found evidence that H. pylori might modulate the natural killer group 2, member 2 (NKG2D) system. The NKG2D receptor and its ligands are a major activation system of natural killer and cytotoxic T cells, which are important for mucosal immunity and tumor immunosurveillance. The NKG2D system allows recognition and elimination of infected and transformed cells, however viruses and cancers often subvert its activation. Here we aimed to identify a potential evasion of the NKG2D system in H. pylori infection. Methods: We analyzed expression of NKG2D system genes in gastric tissues of H. pylori gastritis and gastric cancer patients, and performed cell-culture based infection experiments using H. pylori isogenic mutants and epithelial and NK cell lines. Results: In biopsies of H. pylori gastritis patients, NKG2D receptor expression was reduced while NKG2D ligands accumulated in the lamina propria, suggesting NKG2D evasion. In vitro, H. pylori induced the transcription and proteolytic shedding of NKG2D ligands in stomach epithelial cells, and these effects were associated with specific H. pylori virulence factors. The H. pylori-driven release of soluble NKG2D ligands reduced the immunogenic visibility of infected cells and attenuated the cytotoxic activity of effector immune cells, specifically the anti-tumor activity of NK cells. Conclusion: H. pylori manipulates the NKG2D system. This so far unrecognized strategy of immune evasion by H. pylori could potentially facilitate chronic bacterial persistence and might also promote stomach cancer development by allowing transformed cells to escape immune recognition and grow unimpeded to overt malignancy.


Asunto(s)
Gastritis , Infecciones por Helicobacter , Helicobacter pylori , Neoplasias Gástricas , Humanos , Subfamilia K de Receptores Similares a Lectina de Células NK/metabolismo , Evasión Inmune , Infecciones por Helicobacter/metabolismo , Células Asesinas Naturales , Neoplasias Gástricas/patología , Gastritis/metabolismo , Péptido Hidrolasas/metabolismo
2.
Nat Microbiol ; 9(7): 1792-1811, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38862602

RESUMEN

The Klebsiella oxytoca species complex is part of the human microbiome, especially during infancy and childhood. K. oxytoca species complex strains can produce enterotoxins, namely, tilimycin and tilivalline, while also contributing to colonization resistance (CR). The relationship between these seemingly contradictory roles is not well understood. Here, by coupling ex vivo assays with CRISPR-mutagenesis and various mouse models, we show that K. oxytoca provides CR against Salmonella Typhimurium. In vitro, the antimicrobial activity against various Salmonella strains depended on tilimycin production and was induced by various simple carbohydrates. In vivo, CR against Salmonella depended on toxin production in germ-free mice, while it was largely toxin-independent in mice with residual microbiota. This was linked to the relative levels of toxin-inducing carbohydrates in vivo. Finally, dulcitol utilization was essential for toxin-independent CR in gnotobiotic mice. Together, this demonstrates that nutrient availability is key to both toxin-dependent and substrate-driven competition between K. oxytoca and Salmonella.


Asunto(s)
Klebsiella oxytoca , Infecciones por Salmonella , Salmonella typhimurium , Klebsiella oxytoca/genética , Klebsiella oxytoca/metabolismo , Animales , Ratones , Infecciones por Salmonella/microbiología , Salmonella typhimurium/genética , Salmonella typhimurium/metabolismo , Salmonella typhimurium/crecimiento & desarrollo , Salmonella typhimurium/efectos de los fármacos , Humanos , Modelos Animales de Enfermedad , Enterotoxinas/metabolismo , Enterotoxinas/genética , Femenino , Ratones Endogámicos C57BL , Infecciones por Klebsiella/microbiología , Microbiota , Microbioma Gastrointestinal , Antibiosis , Benzodiazepinonas
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