METTL3‐mediated N6‐methyladenosine exacerbates ferroptosis via m6A‐IGF2BP2‐dependent mitochondrial metabolic reprogramming in sepsis‐induced acute lung injury

Author:

Zhang Hao123,Wu Dan123,Wang Yanghanzhao123,Guo Kefang123,Spencer Charles B.4,Ortoga Lilibeth5,Qu Mengdi123,Shi Yuxin123,Shao Yuwen123,Wang Zhiping6,Cata Juan P.78,Miao Changhong123ORCID

Affiliation:

1. Department of Anesthesiology Zhongshan Hospital Fudan University Shanghai China

2. Shanghai Key Laboratory of Perioperative Stress and Protection Shanghai China

3. Department of Anesthesiology Shanghai Medical College Fudan University Shanghai China

4. Department of Cardiac Surgery Ohio State University Columbus Ohio USA

5. Department of Biomedical Engineering Ohio State University Columbus Ohio USA

6. Department of Anesthesiology Affiliated Hospital of Xuzhou Medical University Xuzhou China

7. Department of Anesthesiology and Perioperative Medicine University of Texas‐MD Anderson Cancer Center Houston Texas USA

8. Anesthesiology and Surgical Oncology Research Group Houston Texas USA

Abstract

AbstractNeutrophil extracellular traps (NETs), released by polymorphonuclear neutrophils (PMNs), exert a robust antimicrobial function in infectious diseases such as sepsis. NETs also contribute to the pathogenesis and exacerbation of sepsis. Although the lung is highly vulnerable to infections, few studies have explored the role of NETs in sepsis‐induced acute lung injury (SI‐ALI). We demonstrate that NETs induce SI‐ALI via enhanced ferroptosis in alveolar epithelial cells. Our findings reveal that the excessive release of NETs in patients and mice with SI‐ALI is accompanied by upregulation of ferroptosis depending on METTL3‐induced m6A modification of hypoxia‐inducible factor‐1α (HIF‐1α) and subsequent mitochondrial metabolic reprogramming. In addition to conducting METTL3 overexpression and knockdown experiments in vitro, we also investigated the impact of ferroptosis on SI‐ALI caused by NETs in a caecum ligation and puncture (CLP)‐induced SI‐ALI model using METTL3 condition knockout (CKO) mice and wild‐type mice. Our results indicate the crucial role of NETs in the progression of SI‐ALI via NET‐activated METTL3 m6A‐IGF2BP2‐dependent m6A modification of HIF‐1α, which further contributes to metabolic reprogramming and ferroptosis in alveolar epithelial cells.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shanghai Municipality

Publisher

Wiley

Subject

Molecular Medicine,Medicine (miscellaneous)

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