LGR5型
细胞生物学
细胞外基质
间质细胞
人口
生物
机械转化
干细胞
细胞外
伤口愈合
肌成纤维细胞
下调和上调
化学
激酶
癌症研究
信号转导
适应(眼睛)
组织修复
再生(生物学)
调制(音乐)
间充质干细胞
细胞
再生医学
河马信号通路
基底膜
病态的
作者
Qiaoyu Fu,Xi Cheng,Nuo Chen,Yong Sun,Lingfeng Xu,Yu Cheng,Chen Wang,Yin Li,Tingting Yu,Yuao Yan,Wenwan Zhang,Yu Bu,Lifang Lei,Yining Chen,Zhen Li,Peiying Zhu,Caibing Wang,Liang Zhang,Caiyue Liu,Qingfeng Li
标识
DOI:10.1038/s41467-026-77113-y
摘要
Abstract Mechanical adaptation is a fundamental yet poorly understood process in stromal tissue biology. Here, we identify a population of LGR5 + mechanically induced regulatory fibroblasts (LGR5 + MIRFs) in mouse and human dermis, whose induction requires a YAP/AP-1-dependent transcriptional program. LGR5 + MIRFs channel mechanical input toward adaptive tissue remodeling by coordinating extracellular matrix reorganization while restraining inflammation. Their ablation or fibroblast-specific deletion of Lgr5 converts adaptive stretching into pathological fibro-inflammation, while dermal Lgr5 overexpression enhances tissue extensibility. Mechanistically, we uncover a non-canonical LGR5-JAK1 interaction that suppresses JAK-STAT signaling, directly coupling mechanosensing to kinase pathway activity. Topical JAK1 inhibition recapitulates the pro-remodeling effects of LGR5 + MIRFs, suggesting a translatable therapeutic strategy for optimizing skin expansion, treating striae, and mitigating fibrotic disorders. Our work redefines LGR5 as a conserved stromal mechanoresponder and provides a new conceptual framework for understanding adaptive tissue plasticity under mechanical stress.
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