ATG5-mediated keratinocyte ferroptosis promotes M1 polarization of macrophages to aggravate UVB-induced skin inflammation

Author:

Chen Xu1ORCID,Xiao Ta2,Liang Jinfeng3,Li Min1,Guo Yiming4,Chen Sihan3,Ke Yangying5,Gao Xiang,Gu Heng3

Affiliation:

1. Institute of Dermatology, Chinese Academy of Medical Sciences

2. Institute of Dermatology, Chinese Academy of Medical Science

3. Institute of Dermatology, Chinese Academy of Medical Sciences & Peking Union Medical College

4. School of Basic Medicine and Clinical Pharmacy, China Pharmaceutical University

5. Chinese Academy of Medical Sciences & Peking Union Medical College

Abstract

Abstract Autophagy participates in the regulation of ferroptosis. Among numerous autophagy-related genes (ATGs), ATG5 plays a pivotal role in ferroptosis. However, how ATG5-mediated ferroptosis functions in UVB-induced skin inflammation is still unclear. In this study, we confirm that the core ferroptosis inhibitor GPX4 is significantly decreased in human skin tissue exposed to sunlight. We report that ATG5 deletion in mouse keratinocytes strongly protects against UVB-induced keratinocyte ferroptosis and skin inflammation. Mechanistically, ATG5 promotes the autophagy-dependent degradation of GPX4 in UVB-exposed keratinocytes, which leads to UVB-induced keratinocyte ferroptosis. Furthermore, we find that IFN-γ secreted by ferroptotic keratinocytes facilitates the M1 polarization of macrophages, which results in the exacerbation of UVB-induced skin inflammation. Together, our data indicate that ATG5 exacerbates UVB-induced keratinocyte ferroptosis in the epidermis, which subsequently gives rise to the secretion of IFN-γ and M1 polarization. Our study provides novel evidence that targeting ATG5 may serve as a potential therapeutic strategy for the amelioration of UVB-caused skin damage.

Publisher

Research Square Platform LLC

Reference56 articles.

1. The Relationship Between Ultraviolet B and DNA Methylation in Skin Cancers;Wu Y-L,2023

2. UV radiation and the skin;D'Orazio J;Int J Mol Sci,2013

3. Ultraviolet-radiation induced skin inflammation: dissecting the role of bioactive lipids;Nicolaou A;Chem Phys Lipids,2011

4. Release of cytokines/chemokines and cell death in UVB-irradiated human keratinocytes, HaCaT;Yoshizumi M;Cell Biology International,2008

5. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018;Galluzzi L;Cell death and differentiation,2018

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