染色质
下调和上调
细胞生物学
抄写(语言学)
转录因子
生物
生物物理学
化学
遗传学
DNA
基因
语言学
哲学
作者
Arash Tajik,Yuejin Zhang,Fuxiang Wei,Jian Sun,Qiong Jia,Wenwen Zhou,Rishi Singh,Nimish Khanna,Andrew S. Belmont,Ning Wang
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2016-08-22
卷期号:15 (12): 1287-1296
被引量:609
摘要
Mechanical forces play critical roles in the function of living cells. However, the underlying mechanisms of how forces influence nuclear events remain elusive. Here, we show that chromatin deformation as well as force-induced transcription of a green fluorescent protein (GFP)-tagged bacterial-chromosome dihydrofolate reductase (DHFR) transgene can be visualized in a living cell by using three-dimensional magnetic twisting cytometry to apply local stresses on the cell surface via an Arg-Gly-Asp-coated magnetic bead. Chromatin stretching depended on loading direction. DHFR transcription upregulation was sensitive to load direction and proportional to the magnitude of chromatin stretching. Disrupting filamentous actin or inhibiting actomyosin contraction abrogated or attenuated force-induced DHFR transcription, whereas activating endogenous contraction upregulated force-induced DHFR transcription. Our findings suggest that local stresses applied to integrins propagate from the tensed actin cytoskeleton to the LINC complex and then through lamina–chromatin interactions to directly stretch chromatin and upregulate transcription. Local surface forces of physiological magnitudes can directly stretch chromatin and induce transcription upregulation in a living cell.
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