Iron drives protease-independent cleavage of gasdermin D in allergic airway diseases

Shuangfeng Chen, Fan Deng, Bo Peng, Lian Liu, Junxian Wang, Fuquan Jin, Jiefang Xu, Dongwu Lin, Wen Chen, Danyan Zhang, Chunyan Yi, Jia Zhang, Shufen Zhong, Lin Zhu, Yuying Huang, Jichao Yang, Ran Wa

Journal:CELL

IF:45.1

DOI:10.1016/j.cell.2026.06.004

PMID:42361797

Published:2026-06-26

research field:分子生物学免疫学呼吸医学细胞信号转导炎症性疾病

Abstract

Gasdermin D (GSDMD)-mediated interleukin (IL)-33 secretion by lung epithelial cells initiates airway inflammation upon allergen challenge. How environmental allergens activate GSDMD remains elusive. Here, we demonstrate that exposing epithelial cells to allergens triggers protease-activated receptor 1 (PAR1)-dependent ferritinophagy, elevating intracellular labile iron. This iron pool is essential for noncanonical, protease-independent GSDMD activation. The iron chaperone poly(rC)-binding protein 2 (PCBP2) delivers iron directly to GSDMD, initiating a highly localized Fenton reaction. This generates constrained hydroxyl radicals that cleave GSDMD, releasing the active N-terminal p40 fragment to form pores for IL-33 release. Blocking any step of this iron-GSDMD pathway, via iron chelation or genetic ablation, abolishes IL-33 secretion, prevents group 2 innate lymphoid cell (ILC2) activation, and mitigates allergic airway inflammation and tissue damage in mice. Our findings reveal an unconventional, iron-catalyzed, and protease-independent mechanism for GSDMD activation, offering potential new therapeutic targets for allergic inflammatory diseases.

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