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Canonical Wnt signalling activates TAZ through PP1A during osteogenic differentiation

机译:典型的Wnt信号在成骨分化过程中通过PP1A激活TAZ。

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TAZ, a transcriptional modulator, has a key role in cell proliferation, differentiation and stem cell self-renewal. TAZ activity is regulated by several signalling pathways, including Hippo, GPCR and Wnt signalling, but the regulatory mechanisms of TAZ activation are not yet clearly understood. In this report, we show that TAZ is regulated by canonical Wnt signalling during osteogenic differentiation. Wnt3a increases TAZ expression and an inhibitor of GSK3β, a downstream effector of Wnt signalling, induces TAZ. Wnt3a facilitates the dephosphorylation of TAZ, which stabilises TAZ and prevents it from binding 14-3-3 proteins, thus inducing the nuclear localisation of TAZ. Dephosphorylation of TAZ occurs via PP1A, and depletion of PP1A blocks Wnt3a-induced TAZ stabilisation. Wnt3a-induced TAZ activates osteoblastic differentiation and siRNA-induced TAZ depletion decreases Wnt3a-induced osteoblast differentiation. Taken together, these results show that TAZ mediates Wnt3a-stimulated osteogenic differentiation through PP1A, suggesting that the Wnt signal regulates the Hippo pathway.
机译:TAZ是一种转录调节剂,在细胞增殖,分化和干细胞自我更新中起关键作用。 TAZ的活性受几种信号传导途径的调控,包括Hippo,GPCR和Wnt信号传导,但TAZ活化的调控机制尚不清楚。在本报告中,我们显示TAZ在成骨分化过程中受到规范Wnt信号的调控。 Wnt3a增加TAZ的表达,Wnt信号的下游效应器GSK3β抑制剂诱导TAZ。 Wnt3a促进TAZ的去磷酸化,从而稳定TAZ并阻止其结合14-3-3蛋白,从而诱导TAZ的核定位。 TAZ的去磷酸化通过PP1A发生,而PP1A的耗尽会阻止Wnt3a诱导的TAZ稳定。 Wnt3a诱导的TAZ激活成骨细胞分化,而siRNA诱导的TAZ消耗降低Wnt3a诱导的成骨细胞分化。两者合计,这些结果表明,TAZ通过PP1A介导Wnt3a刺激的成骨分化,表明Wnt信号调节Hippo途径。

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