增强子
生物
机械敏感通道
细胞生物学
基质(化学分析)
遗传学
计算生物学
基因表达
化学
基因
色谱法
受体
离子通道
作者
Brian D. Cosgrove,Lexi R. Bounds,Carson Key Taylor,Alan L. Su,Anthony Rizzo,Alejandro Barrera,Gregory E. Crawford,Brenton D. Hoffman,Charles A. Gersbach
标识
DOI:10.1101/2024.01.10.574997
摘要
Epigenetic control of cellular transcription and phenotype is influenced by changes in the cellular microenvironment, yet how mechanical cues from these microenvironments precisely influence epigenetic state to regulate transcription remains largely unmapped. Here, we combine genome-wide epigenome profiling, epigenome editing, and phenotypic and single-cell RNA-seq CRISPR screening to identify a new class of genomic enhancers that responds to the mechanical microenvironment. These ‘mechanoenhancers’ could be active on either soft or stiff extracellular matrix contexts, and regulated transcription to influence critical cell functions including apoptosis, mechanotransduction, proliferation, and migration. Epigenetic editing of mechanoenhancers on rigid materials tuned gene expression to levels observed on softer materials, thereby reprogramming the cellular response to the mechanical microenvironment. These editing approaches may enable the precise alteration of mechanically-driven disease states.
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