Please use this identifier to cite or link to this item: http://hdl.handle.net/10400.7/766
Title: IL-22 controls iron-dependent nutritional immunity against systemic bacterial infections
Author: Sakamoto, Kei
Kim, Yun-Gi
Hara, Hideki
Kamada, Nobuhiko
Caballero-Flores, Gustavo
Tolosano, Emanuela
Soares, Miguel P.
Puente, José L.
Inohara, Naohiro
Núñez, Gabriel
Keywords: IL-22
Immunity
Infectious disease
Bacteria
Hemopexin
Issue Date: 3-Feb-2017
Publisher: Nature Publishing Group
Citation: K. Sakamoto, Y.-G. Kim, H. Hara, N. Kamada, G. Caballero-Flores, E. Tolosano, M. P. Soares, J. L. Puente, N. Inohara, G. Núñez, IL-22 controls iron-dependent nutritional immunity against systemic bacterial infections. Sci. Immunol. 2(8) , eaai8371 (2017).
Abstract: Host immunity limits iron availability to pathogenic bacteria, but whether immunity limits pathogenic bacteria from accessing host heme, the major source of iron in the body, remains unclear. Using Citrobacter rodentium, a mouse enteric pathogen and Escherichia coli, a major cause of sepsis in humans as models, we find that interleukin-22, a cytokine best known for its ability to promote epithelial barrier function, also suppresses the systemic growth of bacteria by limiting iron availability to the pathogen. Using an unbiased proteomic approach to understand the mechanistic basis of IL-22 dependent iron retention in the host, we have identified that IL-22 induces the production of the plasma hemoglobin scavenger haptoglobin and heme scavenger hemopexin. Moreover, the anti-microbial effect of IL-22 depends on the induction of hemopexin expression, while haptogloblin is dispensable. Impaired pathogen clearance in infected Il22(-/-) mice was restored by administration and hemopexin-deficient mice had increased pathogen loads after infection. These studies reveal a previously unrecognized host defense mechanism regulated by IL-22 that relies on the induction of hemopexin to limit heme availability to bacteria leading to suppression of bacterial growth during systemic infections.
Description: This publication hasn't any creative commons license associated.
This publication has a exclusive licensee of the American Association for the Advancement of Science.
The deposited article contains attached the supplementary materials.
Peer review: yes
URI: http://hdl.handle.net/10400.7/766
DOI: 10.1126/sciimmunol.aai8371
Publisher Version: http://immunology.sciencemag.org/content/2/8/eaai8371/tab-pdf
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