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A tissue injury repair pathway distinct but parallel to host pathogen defense

Authors :
Siqi Liu
Yun Ha Hur
Xin Cai
Qian Cong
Yihao Yang
Chiwei Xu
Angelina M. Bilate
Kevin Andrew Uy Gonzales
Christopher J. Cowley
Brian Hurwitz
Ji-Dung Luo
Tiffany Tseng
Shiri Gur-Cohen
Megan Sribour
Tatiana Omelchenko
John Levorse
Hilda Amalia Pasolli
Craig B. Thompson
Daniel Mucida
Elaine Fuchs
Publication Year :
2022
Publisher :
Cold Spring Harbor Laboratory, 2022.

Abstract

Pathogen infection and tissue injury are universal insults that disrupt homeostasis. Innate immunity senses microbial infections and induces interferons (IFNs) to activate resistance mechanisms. Applying unbiased phylogenetic analysis, we show that interleukin-24 (IL24) is among the closest evolutionary homologs to the IFN family and shares a common ancestral origin. However, in contrast to IFNs, IL24 induction occurs specifically in barrier epithelial progenitors after injury and is independent of microbiome or adaptive immunity. Surprisingly,Il24ablation impedes not only epidermal proliferation and re-epithelialization, but also capillary and fibroblast regeneration within the dermal wound bed. Conversely, ectopicIl24 induction in homeostatic epidermis triggers global epithelial-mesenchymal tissue repair responses. Mechanistically, sustainedIl24expression depends upon both IL24 receptor/STAT3 signaling and also hypoxia-stabilized HIF1α, which converge following injury. Thus, parallel to the IFN-mediated innate immune sensing of pathogens to resolve infections, epithelial stem cells sense injury signals to orchestrate IL24-mediated tissue repair.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........36a5f667d1cded4e0358152b1894673b