IL-22-dependent responses and their role during Citrobacter rodentium infection
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American Society for Microbiology
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The mouse pathogen <i>Citrobacter rodentium</i> is utilized as a model organism for studying infections caused by the human pathogens enteropathogenic <i>Escherichia coli</i> (EPEC) and enterohemorrhagic <i>E. coli</i> (EHEC) and to elucidate mechanisms of mucosal immunity. In response to <i>C. rodentium</i> infection, innate lymphoid cells and T cells secrete interleukin (IL)-22, a cytokine that promotes mucosal barrier function. IL-22 plays a pivotal role in enabling mice to survive and recover from <i>C. rodentium</i> infection, although the exact mechanisms involved remain incompletely understood. Here, we investigated whether particular components of the host response downstream of IL-22 contribute to the cytokine's protective effects during <i>C. rodentium</i> infection. In line with previous research, mice lacking the IL-22 gene (<i>Il22</i><sup>-/-</sup> mice) were highly susceptible to <i>C. rodentium</i> infection. To elucidate the role of specific antimicrobial proteins modulated by IL-22, we infected the following knockout mice: <i>S100A9</i><sup>-/-</sup> (calprotectin), <i>Lcn2</i><sup>-/-</sup> (lipocalin-2), <i>Reg3b</i><sup>-/-</sup> (Reg3β), <i>Reg3g</i><sup>-/-</sup> (Reg3γ), and <i>C3</i><sup>-/-</sup> (C3). All knockout mice tested displayed a considerable level of resistance to <i>C. rodentium</i> infection, and none phenocopied the lethality observed in <i>Il22</i><sup>-/-</sup> mice. By investigating another arm of the IL-22 response, we observed that <i>C. rodentium</i>-infected <i>Il22<sup>-/</sup></i><sup>-</sup> mice exhibited an overall decrease in gene expression related to intestinal barrier integrity as well as significantly elevated colonic inflammation, gut permeability, and pathogen levels in the spleen. Taken together, these results indicate that host resistance to lethal <i>C. rodentium</i> infection may depend on multiple antimicrobial responses acting in concert, or that other IL-22-regulated processes, such as tissue repair and maintenance of epithelial integrity, play crucial roles in host defense to attaching and effacing pathogens.





