IFN-γ induction by neutrophil-derived IL-17A homodimer augments pulmonary antibacterial defense

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Abstract

The role of interleukin-17A (IL-17A) in host defense against Legionella pneumophila remains elusive. To address this issue, we used Il17a -/-, Il17f -/-, and Il17a/Il17f -/- mice on a C57Bl/6 (non-permissive) background and IL-17 neutralizing Abs in mice on an A/J (permissive) background. Higher bacterial (L. pneumophila) counts in the lung and blood along with reduced neutrophil recruitment were detected in Il17a -/-, but not Il17f -/-, mice. We found that neutrophils produce IL-17A homodimer (IL-17A) during L. pneumophila infection, and hematopoietic cell-derived IL-17A is known to be important for bacterial clearance. Thus, intratracheal administration of wild-type neutrophils or recombinant IL-17A restored bacterial clearance and neutrophil recruitment in Il17a -/- mice. Furthermore, neutrophil-depleted Rag2 -/- and Rag2/Il-2rγ -/- mice exhibited increased bacterial burden, reduced neutrophil influx and IL-17A production in the lung. Recombinant IFN-γ administration in Il17a -/- mice augmented bacterial elimination, whereas IL-17A administration in Ifnγ -/- mice did not augment bacterial clearance. IFN-γ is produced by T cells, but not neutrophils or macrophages, suggesting that neutrophil-derived IL-17A induces IFN-γ in a paracrine fashion. Human pneumonic lungs and human neutrophils challenged with L. pneumophila exhibited increased numbers of IL-17A producing cells. These findings display a novel function of neutrophil-derived IL-17A in antibacterial defense via the induction of IFN-γ in a paracrine manner.

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Cai, S., Batra, S., Langohr, I., Iwakura, Y., & Jeyaseelan, S. (2016). IFN-γ induction by neutrophil-derived IL-17A homodimer augments pulmonary antibacterial defense. Mucosal Immunology, 9(3), 718–729. https://doi.org/10.1038/mi.2015.95

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