拉明
细胞外基质
细胞生物学
细胞分化
核基质
生物
化学
核心
染色质
遗传学
基因
作者
Joe Swift,Irena L. Ivanovska,Amnon Buxboim,Takamasa Harada,P.C. Dave P. Dingal,Joel Pinter,J. David Pajerowski,Kyle Spinler,Jae Won Shin,Manu Tewari,Florian Rehfeldt,David W. Speicher,Dennis E. Discher
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2013-08-30
卷期号:341 (6149)
被引量:1582
标识
DOI:10.1126/science.1240104
摘要
Tissues can be soft like fat, which bears little stress, or stiff like bone, which sustains high stress, but whether there is a systematic relationship between tissue mechanics and differentiation is unknown. Here, proteomics analyses revealed that levels of the nucleoskeletal protein lamin-A scaled with tissue elasticity, E, as did levels of collagens in the extracellular matrix that determine E. Stem cell differentiation into fat on soft matrix was enhanced by low lamin-A levels, whereas differentiation into bone on stiff matrix was enhanced by high lamin-A levels. Matrix stiffness directly influenced lamin-A protein levels, and, although lamin-A transcription was regulated by the vitamin A/retinoic acid (RA) pathway with broad roles in development, nuclear entry of RA receptors was modulated by lamin-A protein. Tissue stiffness and stress thus increase lamin-A levels, which stabilize the nucleus while also contributing to lineage determination.
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