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首页> 外文期刊>Cell Reports >Mutual Zonated Interactions of Wnt and Hh Signaling Are Orchestrating the Metabolism of the Adult Liver in Mice and Human
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Mutual Zonated Interactions of Wnt and Hh Signaling Are Orchestrating the Metabolism of the Adult Liver in Mice and Human

机译:Wnt和Hh信号的相互分区相互作用正在协调小鼠和人类中成年肝脏的代谢。

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The Hedgehog (Hh) and Wnt/β-Catenin (Wnt) cascades are morphogen pathways whose pronounced influence on adult liver metabolism has been identified in recent years. How both pathways communicate and control liver metabolic functions are largely unknown. Detecting core components of Wnt and Hh signaling and mathematical modeling showed that both pathways in healthy liver act largely complementary to each other in the pericentral (Wnt) and the periportal zone (Hh) and communicate mainly by mutual repression. The Wnt/Hh module inversely controls the spatiotemporal operation of various liver metabolic pathways, as revealed by transcriptome, proteome, and metabolome analyses. Shifting the balance to Wnt (activation) or Hh (inhibition) causes pericentralization and periportalization of liver functions, respectively. Thus, homeostasis of the Wnt/Hh module is essential for maintaining proper liver metabolism and to avoid the development of certain metabolic diseases. With caution due to minor species-specific differences, these conclusions may hold for human liver as well.
机译:Hedgehog(Hh)和Wnt /β-Catenin(Wnt)级联是形态发生子途径,近年来已确定其对成人肝脏代谢的显着影响。两种途径如何沟通和控制肝脏代谢功能尚不清楚。检测Wnt和Hh信号的核心成分并进行数学建模表明,健康肝脏中的这两种途径在中心周围(Wnt)和门静脉周围区域(Hh)中都具有很大的互补作用,并且主要通过相互抑制来进行交流。 Wnt / Hh模块可逆地控制各种肝脏代谢途径的时空操作,如转录组,蛋白质组和代谢组学分析所揭示。将平衡转移到Wnt(激活)或Hh(抑制)会分别导致肝功能的周围集中和周围分布。因此,Wnt / Hh模块的动态平衡对于维持适当的肝脏代谢和避免某些代谢性疾病的发展至关重要。由于种属间的细微差异,应谨慎行事,这些结论也可能适用于人类肝脏。

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