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首页> 外文期刊>Nature Communications >Context-dependent switch in chemo/mechanotransduction via multilevel crosstalk among cytoskeleton-regulated MRTF and TAZ and TGFβ-regulated Smad3
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Context-dependent switch in chemo/mechanotransduction via multilevel crosstalk among cytoskeleton-regulated MRTF and TAZ and TGFβ-regulated Smad3

机译:通过骨架干扰的MRTF和TAZ和TGFβ调控的Smad3之间的多级串扰,在化学/机械转导中的上下文相关切换

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Myocardin-related transcription factor (MRTF) and TAZ are major mechanosensitive transcriptional co-activators that link cytoskeleton organization to gene expression. Despite many similarities in their regulation, their physical and/or functional interactions are unknown. Here we show that MRTF and TAZ associate partly through a WW domain-dependent mechanism, and exhibit multilevel crosstalk affecting each other’s expression, transport and transcriptional activity. Specifically, MRTF is essential for TAZ expression; TAZ and MRTF inhibit each other’s cytosolic mobility and stimulus-induced nuclear accumulation; they antagonize each other’s stimulatory effect on the α-smooth muscle actin (SMA) promoter, which harbours nearby cis-elements for both, but synergize on isolated TEAD-elements. Importantly, TAZ confers Smad3 sensitivity to the SMA promoter. Thus, TAZ is a context-dependent switch during mechanical versus mechano/chemical signalling, which inhibits stretch-induced but is indispensable for stretch+TGFβ-induced SMA expression. Crosstalk between these cytoskeleton-regulated factors seems critical for fine-tuning mechanical and mechanochemical transcriptional programmes underlying myofibroblast transition, wound healing and fibrogenesis.
机译:心肌相关转录因子(MRTF)和TAZ是主要的机械敏感性转录共激活因子,可将细胞骨架组织与基因表达联系起来。尽管它们的调节有许多相似之处,但它们的物理和/或功能相互作用尚不清楚。在这里,我们显示MRTF和TAZ部分地通过WW域依赖性机制缔合,并表现出影响彼此表达,转运和转录活性的多级串扰。具体地说,MRTF对于TAZ表达至关重要。 TAZ和MRTF彼此抑制细胞质的流动性和刺激引起的核积累;它们拮抗彼此对α平滑肌肌动蛋白(SMA)启动子的刺激作用,SMA启动子既包含附近的顺式元素,又协同分离的TEAD元素。重要的是,TAZ使Smad3对SMA启动子敏感。因此,TAZ是机械信号与机械/化学信号之间的上下文相关开关,它抑制了拉伸诱导的表达,但对于拉伸+TGFβ诱导的SMA表达却是必不可少的。这些细胞骨架调节因子之间的串扰对于微调成肌纤维细胞转化,伤口愈合和纤维形成的机械和机械化学转录程序似乎至关重要。

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