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NRF2 Shortage in Human Skin Fibroblasts Dysregulates Matrisome Gene Expression and Affects Collagen Fibrillogenesis

Authors :
Mélanie Salamito
Benjamin Gillet
Delfien Syx
Elisabeth Vaganay
Marilyne Malbouyres
Catherine Cerutti
Nicolas Tissot
Chloé Exbrayat-Héritier
Philippe Perez
Christophe Jones
Sandrine Hughes
Fransiska Malfait
Valérie Haydont
Sibylle Jäger
Florence Ruggiero
Institut de Génomique Fonctionnelle de Lyon (IGFL)
École normale supérieure de Lyon (ENS de Lyon)-Université Claude Bernard Lyon 1 (UCBL)
Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-Institut National de Recherche pour l’Agriculture, l’Alimentation et l’Environnement (INRAE)
Centre National de la Recherche Scientifique (CNRS)
Ghent University Hospital
Center for Medical Genetics [Ghent]
L'OREAL
Research & Innovation
Source :
Journal of Investigative Dermatology, Journal of Investigative Dermatology, 2022, 109, pp.1-18. ⟨10.1016/j.jid.2022.07.034⟩
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

International audience; NRF2 is a master regulator of anti-oxidative response that was recently proposed as a potential regulator of extracellular matrix (ECM) gene expression. Fibroblasts are major ECM producers in all connective tissues including dermis. A better understanding of NRF2-mediated ECM regulation in skin fibroblasts is thus of great interest for skin homeostasis maintenance and aging protection. Here, we investigate the impact of NRF2 downregulation on matrisome gene expression and ECM deposits in human primary dermal fibroblasts. RNA-seq-based transcriptome analysis of NRF2 silenced dermal fibroblasts shows that ECM genes are the most regulated gene sets, highlighting the relevance of the NRF2-mediated matrisome program in these cells. Using complementary light and electron microscopy methods, we show that NRF2 deprivation in dermal fibroblasts results in reduced collagen I biosynthesis and impacts collagen fibril deposition. Moreover, we identify ZNF469, a putative transcriptional regulator of collagen biosynthesis, as a novel target of NRF2. Both ZNF469 silenced fibroblasts and fibroblasts derived from Brittle Corneal Syndrome patients carrying mutations in ZNF469 show reduced collagen I gene expression. Our study shows that NRF2 orchestrates matrisome expression in human skin fibroblasts through direct or indirect transcriptional mechanisms that could be prioritized to target dermal ECM homeostasis in health and disease.

Details

ISSN :
0022202X and 15231747
Volume :
143
Database :
OpenAIRE
Journal :
Journal of Investigative Dermatology
Accession number :
edsair.doi.dedup.....d556c4c02cc465795a413eac2d385170