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Native Polyacrylamide Gel Electrophoresis Immunoblot Analysis of Endogenous IRF5 Dimerization
Published on: October 6, 2019
Interferon regulatory factor 5 associated neutrophil reprogramming by trained immunity protects against lethal-dose
Liyuan Li1, Chibo Liu1, Mingming Zhang1
1College of Basic Medical Sciences, Medical Basic Research Innovation Center of Airway Disease in North China, Key Laboratory of Pathobiology, Ministry of Education, Jilin University, Changchun 130021, China; Jilin Province Cross-regional Cooperation Science and Technology Innovation Center of Aquatic Laboratory Animals, Jilin Provincial Science and Technology Agency, Changchun 130021, China; Jilin Province Zebrafish Genetic Engineering Laboratory, Jilin Province Development and Reform Commission, Changchun 130021, China.
Abstract:
Intra-abdominal infection is a major driver of sepsis with limited therapeutic options. Although innate immune memory (trained immunity) has been studied in monocytes and macrophages, its role in neutrophils is unclear. Here, using mouse and zebrafish models of bacterial peritonitis, we show that a low-dose bacterial exposure induces an interferon regulatory factor 5 (Irf5) + neutrophil state; upon lethal re-challenge, these cells differentiate into Cd274⁺ checkpoint-enriched and Fth1⁺ ROS-adaptive subsets. Functionally, primed-then-challenged mice exhibit amplified early cytokine responses, increased reactive oxygen species and neutrophil extracellular trap formation, and reduced bacterial burden with improved survival compared with lethal controls. Consistent with a cross-species program, Irf5 overexpression in zebrafish similarly enhances resistance to patient-derived pathogens. Mechanistically, Irf5-MyD88 signaling links priming to neutrophil fate diversification and heightened antibacterial function. These findings suggest Irf5-based modulation may inform future strategies to strengthen innate immunity and improve host resistance in infectious disease settings.
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