Convergence of external and internal stressors on a stress-responsive enhancer of the <i>Sonic hedgehog</i> gene to induce hair disorders.

Chen, ZiYu; Chen, XiaoQi; Yang, KaiBin; Zhou, HouDong; Zhang, YaFei; Huang, Zhen; Zhang, YanDing; Paus, Ralf et al. · Proc Natl Acad Sci U S A · 2026

basic_science · Level V

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Abstract

Mammals are constantly exposed to various stressors of internal and external origin. Though hair follicles (HFs) are exquisitely sensitive to stress, it remains largely unknown how stress-induced responses are linked with the intrinsic regulators of HF growth, cycling, and regeneration. Here, we characterize the long-range enhancer of <i>Sonic hedgehog</i> (<i>Shh</i>) gene which encodes a crucial mitogen in the HF, and identify a hair stress-responsive enhancer (<i>HSRE</i>) as a unified target on which various internal and external stressors converge. Together with the immediate early gene <i>Early growth response 1</i> (<i>Egr1</i>), this combination of enhancer and transcription factor mediates hair growth arrest and regeneration defects under several stress conditions, including chemotherapy-induced hair loss, noise-induced hair dystrophy, and retarded hair regeneration in aging and obesity. Under stress, the increased expression of <i>Egr1</i> suppresses <i>Shh</i> gene expression; however, this suppression does not occur when the <i>HSRE</i> is absent. Furthermore, two chemical agents SR11302 and T-5224 which suppress <i>Egr1</i> expression both rescued the hair disorders under the various stressors. We propose that an <i>Egr1</i>-<i>Shh</i> axis integrates distinct stress signals and induces hair disorders via suppression of <i>Shh</i> gene expression, and provide a plausible strategy for therapeutic intervention. Our results establish a paradigm of how stress perturbs organ growth and regeneration through the regulation of key intrinsic morphogenetic factors.

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