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Wnt/β-catenin signaling plays an ever-expanding role in stem cell self-renewal tumorigenesis and cancer chemoresistance

机译:Wnt /β-catenin信号在干细胞自我更新肿瘤发生和癌症化学耐药中起着不断扩大的作用

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摘要

Wnt signaling transduces evolutionarily conserved pathways which play important roles in initiating and regulating a diverse range of cellular activities, including cell proliferation, calcium homeostasis, and cell polarity. The role of Wnt signaling in controlling cell proliferation and stem cell self-renewal is primarily carried out through the canonical pathway, which is the best-characterized the multiple Wnt signaling branches. The past 10 years has seen a rapid expansion in our understanding of the complexity of this pathway, as many new components of Wnt signaling have been identified and linked to signaling regulation, stem cell functions, and adult tissue homeostasis. Additionally, a substantial body of evidence links Wnt signaling to tumorigenesis of cancer types and implicates it in the development of cancer drug resistance. Thus, a better understanding of the mechanisms by which dysregulation of Wnt signaling precedes the development and progression of human cancer may hasten the development of pathway inhibitors to augment current therapy. This review summarizes and synthesizes our current knowledge of the canonical Wnt pathway in development and disease. We begin with an overview of the components of the canonical Wnt signaling pathway and delve into the role this pathway has been shown to play in stemness, tumorigenesis, and cancer drug resistance. Ultimately, we hope to present an organized collection of evidence implicating Wnt signaling in tumorigenesis and chemoresistance to facilitate the pursuit of Wnt pathway modulators that may improve outcomes of cancers in which Wnt signaling contributes to aggressive disease and/or treatment resistance.
机译:Wnt信号转导了进化保守的途径,这些途径在启动和调节各种细胞活动(包括细胞增殖,钙稳态和细胞极性)中起着重要作用。 Wnt信号传导在控制细胞增殖和干细胞自我更新中的作用主要是通过经典途径进行的,该途径是最典型的多个Wnt信号分支。在过去的10年中,由于对Wnt信号传导的许多新成分已被识别并与信号传导调节,干细胞功能和成人组织动态平衡相关联,因此我们对这种途径的复杂性的理解迅速扩展。另外,大量证据将Wnt信号传导与癌症类型的肿瘤发生联系起来,并将其牵涉到癌症耐药性的发展。因此,对在人类癌症的发生和发展之前Wnt信号传导失调的机制的更好的理解可以加速通路抑制剂的发展以增强当前的治疗。这篇综述总结和综合了我们目前在发育和疾病中经典Wnt途径的知识。我们首先概述经典Wnt信号通路的组成部分,并深入研究该通路在干性,肿瘤发生和抗癌性中的作用。最终,我们希望提出有组织的证据,将Wnt信号传导牵涉到肿瘤发生和化学耐药中,以促进对Wnt信号通路调节剂的追求,该信号调节剂可能会改善Wnt信号传导导致侵略性疾病和/或治疗耐药性的癌症的预后。

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