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A Functional Interaction between Hippo-YAP Signaling and FoxO1 Mediates the Oxidative Stress Response

机译:河马YAP信号和FoxO1之间的功能相互作用介导氧化应激反应。

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摘要

The Hippo pathway is an evolutionarily conserved regulator of organ size and tumorigenesis that negatively regulates cell growth and survival. Here we report that YAP, the terminal effector of the Hippo pathway, interacts with FoxO1 in the nucleus of cardiomyocytes, thereby promoting survival. YAP and FoxO1 form a functional complex on the promoters of the catalase and MnSOD antioxidant genes and stimulate their transcription. Inactivation of YAP, induced by Hippo activation, suppresses FoxO1 activity and decreases antioxidant gene expression, suggesting that Hippo signaling modulates the FoxO1-mediated antioxidant response. In the setting of ischemia/reperfusion (I/R) in the heart, activation of Hippo antagonizes YAP-FoxO1, leading to enhanced oxidative stress-induced cell death through downregulation of catalase and MnSOD. Conversely, restoration of YAP activity protects against I/R injury. These results suggest that YAP is a nuclear co-factor of FoxO1 and that the Hippo pathway negatively affects cardiomyocyte survival by inhibiting the function of YAP-FoxO1.
机译:河马途径是器官大小和肿瘤发生的进化保守的调节剂,它负调控细胞的生长和存活。在这里我们报告说,YAP,河马途径的终端效应子,与心肌细胞核中的FoxO1相互作用,从而促进存活。 YAP和FoxO1在过氧化氢酶和MnSOD抗氧化剂基因的启动子上形成功能复合物,并刺激其转录。由Hippo激活引起的YAP失活抑制FoxO1活性并降低抗氧化剂基因的表达,这表明Hippo信号调节了FoxO1介导的抗氧化反应。在心脏局部缺血/再灌注(I / R)的情况下,河马的激活拮抗YAP-FoxO1,从而通过下调过氧化氢酶和MnSOD导致氧化应激诱导的细胞死亡增加。相反,恢复YAP活性可防止I / R损伤。这些结果表明,YAP是FoxO1的核辅因子,而Hippo途径通过抑制YAP-FoxO1的功能对心肌细胞的存活产生负面影响。

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