The <i>Citrobacter rodentium</i> type III secretion system effector EspO affects mucosal damage repair and antimicrobial responses

Infection with Citrobacter rodentium triggers robust tissue damage repair responses, manifested by secretion of IL-22, in the absence of which mice succumbed to the infection. Of the main hallmarks of C. rodentium infection are colonic crypt hyperplasia (CCH) and dysbiosis. In order to colonize the host and compete with the gut microbiota, C. rodentium employs a type III secretion system (T3SS) that injects effectors into colonic intestinal epithelial cells (IECs). Once injected, the effectors subvert processes involved in innate immune responses, cellular metabolism and oxygenation of the mucosa. Importantly, the identity of the effector/s triggering the tissue repair response is/are unknown. Here we report that the effector EspO ,an orthologue of OspE found in Shigella spp, affects proliferation of IECs 8 and 14 days post C. rodentium infection as well as secretion of IL-22 from colonic explants. While we observed no differences in the recruitment of group 3 innate lymphoid cells (ILC3s) and T cells, which are the main sources of IL-22 at the early and late stages of C. rodentium infection respectively, infection with ΔespO was characterized by diminished recruitment of sub-mucosal neutrophils, which coincided with lower abundance of Mmp9 and chemokines (e.g. S100a8/9) in IECs. Moreover, mice infected with ΔespO triggered significantly lesser nutritional immunity (e.g. calprotectin, Lcn2) and expression of antimicrobial peptides (Reg3β, Reg3γ) compared to mice infected with WT C. rodentium. This overlapped with a decrease in STAT3 phosphorylation in IECs. Importantly, while the reduced CCH and abundance of antimicrobial proteins during ΔespO infection did not affect C. rodentium colonization or the composition of commensal Proteobacteria, they had a subtle consequence on Firmicutes subpopulations. EspO is the first bacterial virulence factor that affects neutrophil recruitment and secretion of IL-22, as well as expression of antimicrobial and nutritional immunity proteins in IECs.

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PID https://www.doi.org/10.1371/journal.ppat.1007406
URL http://dx.doi.org/10.1371/journal.ppat.1007406
URL https://figshare.com/articles/The_i_Citrobacter_rodentium_i_type_III_secretion_system_effector_EspO_affects_mucosal_damage_repair_and_antimicrobial_responses/7261337
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Author Berger, Cedric N.
Author F. Crepin, Valerie
Author Roumeliotis, Theodoros I.
Author Wright, James C.
Author Serafini, Nicolas
Author Pevsner-Fischer, Meirav
Author Yu, Lu
Author Elinav, Eran
Author P. Di Santo, James
Author S. Choudhary, Jyoti
Author Frankel, Gad
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Collected From figshare
Hosted By figshare
Publication Date 2018-01-01
Publisher Figshare
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Language UNKNOWN
Resource Type Dataset
keyword Δ espO infection
keyword Δ espO
system:type dataset
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Source https://science-innovation-policy.openaire.eu/search/dataset?datasetId=r37980778c78::d8d1848bb16d92b0f65e4fa818aa398e
Author jsonws_user
Last Updated 16 December 2020, 04:28 (CET)
Created 16 December 2020, 04:28 (CET)