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Targeting the Hippo Signaling Pathway for Tissue Regeneration and Cancer Therapy

机译:针对河马信号通路的组织再生和癌症治疗

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The Hippo signaling pathway is a highly-conserved developmental pathway that plays an essential role in organ size control, tumor suppression, tissue regeneration and stem cell self-renewal. The YES-associated protein (YAP) and the transcriptional co-activator with PDZ-binding motif (TAZ) are two important transcriptional co-activators that are negatively regulated by the Hippo signaling pathway. By binding to transcription factors, especially the TEA domain transcription factors (TEADs), YAP and TAZ induce the expression of growth-promoting genes, which can promote organ regeneration after injury. Therefore, controlled activation of YAP and TAZ can be useful for regenerative medicine. However, aberrant activation of YAP and TAZ due to deregulation of the Hippo pathway or overexpression of YAP/TAZ and TEADs can promote cancer development. Hence, pharmacological inhibition of YAP and TAZ may be a useful approach to treat tumors with high YAP and/or TAZ activity. In this review, we present the mechanisms regulating the Hippo pathway, the role of the Hippo pathway in tissue repair and cancer, as well as a detailed analysis of the different strategies to target the Hippo signaling pathway and the genes regulated by YAP and TAZ for regenerative medicine and cancer therapy.
机译:Hippo信号通路是高度保守的发育通路,在器官大小控制,肿瘤抑制,组织再生和干细胞自我更新中起着至关重要的作用。 YES相关蛋白(YAP)和带有PDZ结合基序的转录共激活因子(TAZ)是两个重要的转录共激活因子,它们受到Hippo信号通路的负调控。通过与转录因子特别是TEA域转录因子(TEAD)结合,YAP和TAZ诱导了促生长基因的表达,从而促进了损伤后的器官再生。因此,YAP和TAZ的受控激活可用于再生医学。然而,由于河马通路的失调或YAP / TAZ和TEADs的过度表达而引起的YAP和TAZ的异常激活可以促进癌症的发展。因此,药理抑制YAP和TAZ可能是治疗具有高YAP和/或TAZ活性的肿瘤的有用方法。在这篇综述中,我们介绍了调节Hippo途径的机制,Hippo途径在组织修复和癌症中的作用,以及对靶向Hippo信号传导途径的不同策略以及YAP和TAZ调控的基因的详细分析。再生医学和癌症治疗。

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