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Hippo signaling pathway in liver and pancreas: the potential drug target for tumor therapy

机译:肝脏和胰腺中的河马信号通路:肿瘤治疗的潜在药物靶点

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Cell behaviors, including proliferation, differentiation and apoptosis, are intricately controlled during organ development and tissue regeneration. In the past 9 years, the Hippo signaling pathway has been delineated to play critical roles in organ size control, tissue regeneration and tumorigenesis through regulating cell behaviors. In mammals, the core modules of the Hippo signaling pathway include the MST1/2-LATS1/2 kinase cascade and the transcriptional co-activators YAP/TAZ. The activity of YAP/TAZ is suppressed by cytoplasmic retention due to phosphorylation in the canonical MST1/2-LATS1/2 kinase cascade-dependent manner or the non-canonical MST1/2- and/or LATS1/2-independent manner. Hippo signaling pathway, which can be activated or inactivated by cell polarity, contact inhibition, mechanical stretch and extracellular factors, has been demonstrated to be involved in development and tumorigenesis of liver and pancreas. In addition, we have summarized several small molecules currently available that can target Hippo-YAP pathway for potential treatment of hepatic and pancreatic cancers, providing clues for other YAP initiated cancers therapy as well.
机译:在器官发育和组织再生过程中,细胞的行为,包括增殖,分化和凋亡均受到复杂控制。在过去的9年中,已经描述了Hippo信号通路通过调节细胞行为在器官大小控制,组织再生和肿瘤发生中起关键作用。在哺乳动物中,河马信号通路的核心模块包括MST1 / 2-LATS1 / 2激酶级联反应和转录共激活因子YAP / TAZ。 YAP / TAZ的活性由于以标准的MST1 / 2-LATS1 / 2激酶级联依赖性或非经典的MST1 / 2和/或LATS1 / 2依赖性磷酸化而被细胞质保留所抑制。河马信号通路可以被细胞极性,接触抑制,机械拉伸和细胞外因子激活或失活,已被证明与肝脏和胰腺的发育和肿瘤发生有关。此外,我们总结了目前可靶向Hippo-YAP途径用于肝癌和胰腺癌潜在治疗的几种小分子,也为其他YAP引发的癌症治疗提供了线索。

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