De novo DUOX2 expression in neutrophil subsets shapes the pathogenesis of intestinal disease

A Ashish K. Singh (Conway Institute, University College Dublin) M Marina Ainciburu (National Institute of Bioprocessing Research and Training) K Kieran Wynne S Sajad A. Bhat (Conway Institute, University College Dublin) A Alfonso Blanco (Conway Institute, University College Dublin) I Ioanna Tzani (National Institute of Bioprocessing Research and Training) Y Yasutada Akiba (Medical Service, Greater Los Angeles Veterans Affairs Healthcare System) S Stephen J. Lalor (Conway Institute, University College Dublin) J Jonathan Kaunitz (Medical Service, Greater Los Angeles Veterans Affairs Healthcare System) B Billy Bourke (School of Medicine, University College Dublin) V Vincent P. Kelly (School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin) G Glen A. Doherty (School of Medicine, University College Dublin) C Christa S. Zerbe (Laboratory of Clinical Immunology and Microbiology, National Institute of Allergy and Infectious Diseases, National Institutes of Health) C Colin Clarke (National Institute of Bioprocessing Research and Training) S Séamus Hussey (School of Medicine, University College Dublin) U Ulla G. Knaus (Conway Institute, School of Medicine, University College Dublin)

Abstract

Infiltrating neutrophils are key effector cells in inflammatory bowel disease (IBD) while providing antimicrobial defense and tissue restitution in the intestine. The complexity of neutrophil functions in local environments underscores our limited understanding of how their adaptation in tissues influences disease progression. Here, we demonstrate that neutrophils recruited in murine colitis and infection models, idiopathic IBD, and chronic granulomatous disease-associated IBD undergo extensive transcriptional reprogramming, resulting in the emergence of neutrophil populations that feature unique DUOX2 NADPH oxidase expression. Functional studies utilizing mice with myeloid and neutrophil specific DUOX2 inactivation reveal a vital and dichotomous role for this NADPH oxidase in both colitis and intestinal infection. Niche-directed reprogramming promoted a DUOX2-dependent chemokine and cytokine-rich intestinal environment that amplified and prolonged inflammatory responses, suggesting that selectively suppressing DUOX2 may constitute an anti-inflammatory strategy for IBD treatment. Altering spatiotemporal redox signaling by de novo expression of a ROS-generating enzyme represents an important feature for functional neutrophil diversification in disease, with implications for other neutrophil-driven diseases in specialized niches.

Article Details

Volume / Issue Vol. 122, Issue 19
Published May 13, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (16)

A

Ashish K. Singh

Conway Institute, University College Dublin

M

Marina Ainciburu

National Institute of Bioprocessing Research and Training

K

Kieran Wynne

S

Sajad A. Bhat

Conway Institute, University College Dublin

A

Alfonso Blanco

Conway Institute, University College Dublin

I

Ioanna Tzani

National Institute of Bioprocessing Research and Training

Y

Yasutada Akiba

Medical Service, Greater Los Angeles Veterans Affairs Healthcare System

S

Stephen J. Lalor

Conway Institute, University College Dublin

J

Jonathan Kaunitz

Medical Service, Greater Los Angeles Veterans Affairs Healthcare System

B

Billy Bourke

School of Medicine, University College Dublin

V

Vincent P. Kelly

School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin

G

Glen A. Doherty

School of Medicine, University College Dublin

C

Christa S. Zerbe

Laboratory of Clinical Immunology and Microbiology, National Institute of Allergy and Infectious Diseases, National Institutes of Health

C

Colin Clarke

National Institute of Bioprocessing Research and Training

S

Séamus Hussey

School of Medicine, University College Dublin

U

Ulla G. Knaus

Conway Institute, School of Medicine, University College Dublin