Mechanosensitive genomic enhancers potentiate the cellular response to matrix stiffness

成果类型:
Article
署名作者:
Cosgrove, Brian D.; Bounds, Lexi R.; Taylor, Carson Key; Su, Alan L.; Rizzo, Anthony J.; Barrera, Alejandro; Sun, Tongyu; Safi, Alexias; Song, Lingyun; Whitlow, Thomas; Tata, Aleksandra; Iglesias, Nahid; Diao, Yarui; Tata, Purushothama Rao; Hoffman, Brenton D.; Crawford, Gregory E.; Gersbach, Charles A.
署名单位:
Duke University; Duke University; Duke University; Duke University; Duke University; Duke University; Duke University; Duke University
刊物名称:
SCIENCE
ISSN/ISSBN:
0036-8075; 1095-9203
DOI:
10.1126/science.adl1988
发表日期:
2025-12-11
页码:
eadl1988
关键词:
extracellular-matrix growth-factor SUBSTRATE STIFFNESS regulatory elements gene yap transcription mechanotransduction expression ANOIKIS
摘要:
Epigenetic control of gene expression and cellular phenotype is influenced by changes in the local microenvironment, yet how mechanical cues precisely influence epigenetic state to regulate transcription remains largely unmapped. In this study, we combined genome-wide epigenome profiling, epigenome editing, and phenotypic and single-cell RNA sequencing CRISPR screening to identify a class of genomic enhancers that responds to the mechanical microenvironment. These mechanoenhancers can be preferentially activated on either soft or stiff extracellular matrix contexts and regulate transcription to influence critical cell functions including apoptosis, adhesion, proliferation, and migration. Epigenetic editing of mechanoenhancers reprograms the cellular response to the mechanical microenvironment and modulates the activation of disease-related genes in lung fibroblasts from healthy and fibrotic donors. Epigenetic editing of mechanoenhancers holds potential for precise targeting of mechanically driven diseases.
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