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首页> 外文期刊>Hepatology: Official Journal of the American Association for the Study of Liver Diseases >Large tumor suppressor homologs 1 and 2 regulate mouse liver progenitor cell proliferation and maturation through antagonism of the coactivators YAP and TAZ
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Large tumor suppressor homologs 1 and 2 regulate mouse liver progenitor cell proliferation and maturation through antagonism of the coactivators YAP and TAZ

机译:大型抑癌同源物1和2通过共激活因子YAP和TAZ的拮抗作用来调节小鼠肝祖细胞的增殖和成熟

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In the adult liver, the Hippo pathway mammalian STE20-like protein kinases 1 and 2 and large tumor suppressor homologs 1 and 2 (LATS1/2) control activation of the transcriptional coactivators Yes-associated protein (YAP) and WW domain containing transcription regulator 1 (TAZ) in hepatocytes and biliary epithelial cells, thereby regulating liver cell proliferation, differentiation, and malignant transformation. Less is known about the contribution of Hippo signaling to liver development. We used conditional mutagenesis to show that the Hippo signaling pathway kinases LATS1 and LATS2 are redundantly required during mouse liver development to repress YAP and TAZ in both the biliary epithelial and hepatocyte lineages. In the absence of LATS1/2, biliary epithelial cells exhibit excess proliferation while hepatoblasts fail to mature into hepatocytes, defects that result in perinatal lethality. Using an in vitro hepatocyte differentiation assay, we demonstrate that YAP activity decreases and Hippo pathway kinase activities increase upon differentiation. In addition, we show that YAP activation in vitro, resulting from either depletion of its negative regulators LATS1/2 or expression of a mutant form of YAP that is less efficiently phosphorylated by LATS1/2, results in transcriptional suppression of genes that normally accompany hepatocyte maturation. Moreover, we provide evidence that YAP activity is repressed by Hippo pathway activation upon hepatocytic maturation in vitro. Finally, we examine the localization of YAP during fetal liver development and show that higher levels of YAP are found in biliary epithelial cells, while in hepatocytes YAP levels decrease with hepatocyte maturation. Conclusion: Hippo signaling, mediated by the LATS1 and LATS2 kinases, is required to restrict YAP and TAZ activation during both biliary and hepatocyte differentiation. These findings suggest that dynamic regulation of the Hippo signaling pathway plays an important role in differentiation and functional maturation of the liver. (Hepatology 2016;64:1757-1772).
机译:在成年肝脏中,河马途径哺乳动物STE20样蛋白激酶1和2以及大型肿瘤抑制同源物1和2(LATS1 / 2)控制转录共激活因子Yes相关蛋白(YAP)和包含转录调节因子1的WW结构域的激活。 (TAZ)在肝细胞和胆管上皮细胞中的表达,从而调节肝细胞的增殖,分化和恶性转化。关于河马信号对肝脏发育的贡献知之甚少。我们使用条件诱变来表明,在小鼠肝脏发育过程中,在胆道上皮和肝细胞谱系中抑制YAP和TAZ时,多余地需要Hippo信号通路激酶LATS1和LATS2。在没有LATS1 / 2的情况下,胆管上皮细胞会过度增殖,而成肝细胞则无法成熟为肝细胞,这些缺陷会导致围生期致死。使用体外肝细胞分化测定法,我们证明分化后YAP活性降低而Hippo途径激酶活性提高。此外,我们表明,YAP的体外激活是由于其负调控因子LATS1 / 2的耗竭或LATS1 / 2磷酸化效率较低的YAP突变形式的表达而导致的,通常是肝细胞伴随基因的转录抑制成熟。此外,我们提供的证据表明,体外肝细胞成熟后,河马途径激活可抑制YAP活性。最后,我们检查了胎儿肝发育过程中YAP的定位,并发现在胆道上皮细胞中发现了更高水平的YAP,而在肝细胞中,随着肝细胞的成熟,YAP水平降低了。结论:由LATS1和LATS2激酶介导的Hippo信号传导是限制胆汁和肝细胞分化过程中YAP和TAZ活化所必需的。这些发现表明,Hippo信号通路的动态调节在肝脏的分化和功能成熟中起着重要的作用。 (肝病2016; 64:1757-1772)。

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