Iron controls the development of airway hyperreactivity by regulating ILC2 metabolism and effector function

Author:

Hurrell Benjamin P.1ORCID,Sakano Yoshihiro1ORCID,Shen Stephen1ORCID,Helou Doumet Georges1ORCID,Li Meng2ORCID,Shafiei-Jahani Pedram1,Kazemi Mohammad Hossein1ORCID,Sakano Kei1ORCID,Li Xin1ORCID,Quach Christine1ORCID,Barbers Richard3ORCID,Akbari Omid1ORCID

Affiliation:

1. Department of Molecular Microbiology and Immunology, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA.

2. USC Libraries Bioinformatics Service, University of Southern California, Los Angeles, CA 90033, USA.

3. Department of Medicine, Division of Pulmonary, Critical Care and Sleep Medicine, Keck School of Medicine, University of Southern California, Los Angeles, CA 90033, USA.

Abstract

Group 2 innate lymphoid cells (ILC2s) rapidly induce a type 2 inflammation in the lungs in response to allergens. Here, we focused on the role of iron, a critical nutritional trace element, on ILC2 function and asthma pathogenesis. We found that transferrin receptor 1 (TfR1) is rapidly up-regulated and functional during ILC2 activation in the lungs, and blocking transferrin uptake reduces ILC2 expansion and activation. Iron deprivation reprogrammed ILC2 metabolism, inducing a HIF-1α–driven up-regulation of glycolysis and inhibition of oxidative mitochondrial activity. Consequently, we observed that in vivo iron chelation or induction of hypoferremia reduced the development of airway hyperreactivity in experimental models of ILC2-driven allergic asthma. Human circulating ILC2s rapidly induced TfR1 during activation, whereas inhibition of iron uptake or iron deprivation reduced effector functions. Last, we found a negative relationship between circulating ILC2 TfR1 expression and airway function in cohorts of patients with asthma. Collectively, our studies define cellular iron as a critical regulator of ILC2 function.

Publisher

American Association for the Advancement of Science (AAAS)

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