Interleukin-13 Mediates Airways Hyperreactivity through the IL-4 Receptor-Alpha Chain and STAT-6 Independently of IL-5 and Eotaxin

Date

2001

Authors

Yang, Ming
Hogan, Simon
Henry, Peter J.
Matthaei, Klaus
Mckenzie, Andrew N
Young, Ian
Rothenberg, Marc E
Foster, Paul S

Journal Title

Journal ISSN

Volume Title

Publisher

American Thoracic Society

Abstract

Interleukin (IL)-13 is a central mediator of the processes underlying the induction of airways hyperreactivity (AHR) in the allergic lung. However, the mechanisms by which IL-13 induces AHR and the associated role of inflammatory infiltrates as effector cells has not been fully elucidated. In this investigation, we show that intratracheal administration of IL-13 induces AHR in the presence and absence of inflammation. The initial AHR response (peak, 6 to 24 h; preinflammatory phase [PIP]) was dissociated from inflammation (eosinophilia) and mucus hypersecretion but was critically regulated by signaling through the IL-4 receptor α chain (IL-4Rα) and signal transducers and activators of transcription (STAT)-6. The second response (> 24 h, inflammatory phase [IP]) was characterized by an amplified AHR, eosinophil accumulation, and mucus hypersecretion. These features of the IP were not observed in IL-4Rα-or STAT-6-deficient mice. To determine the role of eosinophils in the induction of IP AHR and mucus hypersecretion, we administered IL-13 to IL-5-, eotaxin-, and IL-5/eotaxin-deficient mice. IL-13-mediated eosinophil accumulation was significantly attenuated (but not ablated) in IL-5-, eotaxin-, or IL-5/eotaxin-deficient mice. However, IL-13-induced AHR and mucus secretion occurred independently of IL-5 and/or eotaxin. These findings demonstrate that IL-13 can induce AHR independently of these eosinophil regulatory cytokines and mucus hypersecretion. Furthermore, IL-13-induced AHR, eosinophilia, and mucus production are critically dependent on the IL-4Rα chain and STAT-6.

Description

Keywords

Keywords: beta chemokine; bronchoconstricting agent; eotaxin; interleukin 13; interleukin 4; interleukin 4 receptor; interleukin 5; methacholine chloride; STAT6 protein; Stat6 protein, mouse; transactivator protein; animal; article; Bagg albino mouse; bronchus hype

Citation

Source

American Journal of Respiratory Cell and Molecular Biology

Type

Journal article

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2037-12-31