河马信号通路
效应器
基因沉默
增强子
细胞生物学
核出口信号
转录因子
生物
WW域
抄写(语言学)
核心
细胞核
基因
遗传学
语言学
哲学
作者
Yiju Wei,Huacheng Luo,Patricia Yee,Lijun Zhang,Zhijun Liu,Haiyan Zheng,Lei Zhang,Benjamin M. Anderson,Miaolu Tang,Suming Huang,Wei Li
标识
DOI:10.1002/advs.202102653
摘要
The Hippo pathway effector TAZ promotes cellular growth, survival, and stemness through regulating gene transcription. Recent studies suggest that TAZ liquid-liquid phase separation (LLPS) compartmentalizes key cofactors to activate transcription. However, how TAZ LLPS is achieved remains unknown. Here, it is shown that the paraspeckle protein NONO is required for TAZ LLPS and activation in the nucleus. NONO is a TAZ-binding protein. Their interaction shows temporal regulation parallel to the interaction between TAZ and TEAD as well as to the expression of TAZ target genes. NONO depletion reduces nuclear TAZ LLPS, while ectopic NONO expression promotes the LLPS. Accordingly, NONO depletion reduces TAZ interactions with TEAD, Rpb1, and enhancers. In glioblastoma, expressions of NONO and TAZ are both upregulated and predict poor prognosis. Silencing NONO expression in an orthotopic glioblastoma mouse model inhibits TAZ-driven tumorigenesis. Together, this study suggests that NONO is a nuclear factor that promotes TAZ LLPS and TAZ-driven oncogenic transcriptional program.
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