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Dual-specificity phosphatase 23 mediates GCM1 dephosphorylation and activation

机译:双特异性磷酸酶23介导GCM1去磷酸化和激活

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摘要

Glial cells missing homolog 1 (GCM1) is a transcription factor essential for placental development. GCM1 promotes syncytiotrophoblast formation and placental vasculogenesis by activating fusogenic and proangiogenic gene expression in placenta. GCM1 activity is regulated by multiple post-translational modifications. The cAMP/PKA-signaling pathway promotes CBP-mediated GCM1 acetylation and stabilizes GCM1, whereas hypoxia-induced GSK-3 beta-mediated phosphorylation of Ser322 causes GCM1 ubiquitination and degradation. How and whether complex modifications of GCM1 are coordinated is not known. Here we show that the interaction of GCM1 and dual-specificity phosphatase 23 (DUSP23) is enhanced by PKA-dependent phosphorylation of GCM1 on Ser269 and Ser275. The recruitment of DUSP23 reverses GSK-3 beta-mediated Ser322 phosphorylation, which in turn promotes GCM1 acetylation, stabilization and activation. Supporting a central role in coordinating GCM1 modifications, knockdown of DUSP23 suppressed GCM1 target gene expression and placental cell fusion. Our study identifies DUSP23 as a novel factor that promotes placental cell fusion and reveals a complex regulation of GCM1 activity by coordinated phosphorylation, dephosphorylation and acetylation.
机译:缺少同源物1(GCM1)的胶质细胞是胎盘发育必不可少的转录因子。 GCM1通过激活胎盘中的促融合和促血管生成基因表达来促进合体滋养层细胞形成和胎盘血管生成。 GCM1活性受多种翻译后修饰的调控。 cAMP / PKA信号通路促进CBP介导的GCM1乙酰化并稳定GCM1,而低氧诱导的GSK-3β介导的Ser322磷酸化会导致GCM1泛素化和降解。如何以及是否协调GCM1的复杂修改尚不清楚。在这里,我们显示GCM1和双特异性磷酸酶23(DUSP23)的相互作用通过在Ser269和Ser275上依赖GKA1的PKA依赖性磷酸化得到增强。募集DUSP23可逆转GSK-3β介导的Ser322磷酸化,进而促进GCM1乙酰化,稳定和激活。支持在协调GCM1修饰中的核心作用,敲低DUSP23可抑制GCM1靶基因表达和胎盘细胞融合。我们的研究确定DUSP23是促进胎盘细胞融合的新因子,并通过协同磷酸化,去磷酸化和乙酰化揭示了GCM1活性的复杂调控。

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