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首页> 外文期刊>The international journal of biochemistry and cell biology >Molecular mechanisms underlying TGF-beta/Hippo signaling crosstalks - Role of baso-apical epithelial cell polarity
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Molecular mechanisms underlying TGF-beta/Hippo signaling crosstalks - Role of baso-apical epithelial cell polarity

机译:TGF-β/河马信号传导串扰的分子机制 - 基础上皮细胞极性的作用

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摘要

The ubiquitous distribution of both Hippo and TGF-beta signaling cascade components and their critical implication in tissue homeostasis and disease has led to the discovery of a remarkable slew of interesting and unique features regarding their functional crosstalks. Upstream cellular cues regulating the Hippo pathway, including cell cell contacts and apico-basal cell polarity have been well characterized. Herein, we provide an overview of the published models of compartmentalized signaling crosstalk mechanisms between Hippo signaling and the TGF-g/SMAD pathway. How cell polarity impacts the interaction between the two pathways is discussed, together with the specifics of cytoplasmic and nuclear events implicating SMADs and YAP/TAZ, leading to contextual regulation of target gene expression.
机译:Hippo和TGF-Beta信号传导组分的无处不在的分布及其在组织稳态和疾病中的临界意义导致了对其功能性串扰的显着有趣和独特的特征的发现。 调节河马通路的上游细胞提示,包括细胞细胞触点和Apico基细胞极性。 在此,我们提供了河马信号传导和TGF-G / SMAD路径之间的划分信号串扰机制的公开模型的概述。 电池极性如何影响两种途径之间的相互作用,以及暗示Smads和YAP / TAZ的细胞质和核事件的细节,导致靶基因表达的上下文调节。

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