HMGB1-mediated chromatin remodeling attenuatesIl24gene expression for the protection from allergic contact dermatitis

Author:

Senda Naoyuki,Yanai Hideyuki,Hibino Sana,Li Lei,Mizushima YuORCID,Miyagaki TomomitsuORCID,Saeki Mai,Kishi YusukeORCID,Hangai Sho,Nishio Junko,Sugaya Makoto,Taniguchi Tadatsugu,Sato Shinichi

Abstract

Dysregulation of inflammatory cytokines in keratinocytes promote the pathogenesis of the skin inflammation, such as allergic contact dermatitis (ACD). High-mobility group box 1 protein (HMGB1) has been implicated in the promotion of skin inflammation upon its extracellular release as a damage-associated molecular pattern molecule. However, whether and how HMGB1 in keratinocytes contributes to ACD and other skin disorders remain elusive. In this study, we generated conditional knockout mice in which theHmgb1gene is specifically deleted in keratinocytes, and examined its role in ACD models. Interestingly, the mutant mice showed exacerbated skin inflammation, accompanied by increased ear thickening in 2,4-dinitrofluorobenezene-induced ACDs. The mRNA expression of interleukin-24 (IL-24), a cytokine known to critically contribute to ACD pathogenesis, was elevated in skin lesions of the mutant mice. As with constitutively expressed, IL-4–inducedIl24mRNA, expression was also augmented in theHmgb1-deficient keratinocytes, which would account for the exacerbation of ACD in the mutant mice. Mechanistically, we observed an increased binding of trimethyl histone H3 (lys4) (H3K4me3), a hallmark of transcriptionally active genes, to the promoter region of theIl24gene in thehmgb1-deficient cells. Thus, the nuclear HMGB1 is a critical “gate keeper” in that the dermal homeostasis is contingent to its function in chromatin remodeling. Our study revealed a facet of nuclear HMGB1, namely its antiinflammatory function in keratinocytes for the skin homeostasis.

Funder

MEXT | Japan Society for the Promotion of Science

Japan Agency for Medical Research and Development

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference48 articles.

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