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Restriction of intestinal stem cell expansion and the regenerative response by YAP

机译:肠干细胞扩增的限制和由Yap再生响应

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摘要

A remarkable feature of regenerative processes is their ability to halt proliferation once an organ’s structure has been restored. The Wnt signaling pathway is the major driving force for homeostatic self-renewal and regeneration in the mammalian intestine. The mechanisms that counterbalance Wnt-driven proliferation are poorly understood. We demonstrate here that YAP, a protein known for its powerful growth-inducing and oncogenic properties-, has an unexpected growth-suppressive function restricting Wnt signals during intestinal regeneration. Transgenic expression of YAP reduces Wnt target gene expression and results in the rapid loss of intestinal crypts. In addition, loss of YAP results in Wnt hypersensitivity during regeneration, leading to hyperplasia, expansion of intestinal stem cells (ISCs) and niche cells, and formation of ectopic crypts and microadenomas. We find that cytoplasmic YAP restricts elevated Wnt signaling independently of the APC/Axin/GSK3β complex partly by limiting the activity of Dishevelled (DVL). DVL signals in the nucleus of ISCs and its forced expression leads to enhanced Wnt signaling in crypts. YAP dampens Wnt signals by restricting DVL nuclear translocation during regenerative growth. Finally, we provide evidence that YAP is silenced in a subset of highly aggressive and undifferentiated human colorectal carcinomas (CRC) and its expression can restrict the growth of CRC xenografts. Collectively, our work describes a novel mechanistic paradigm for how proliferative signals are counterbalanced in regenerating tissues. Additionally, our findings have important implications for the targeting of YAP in human malignancies.
机译:再生过程的显着特征是一旦器官的结构恢复,它们便能够阻止增殖。 Wnt信号通路是哺乳动物肠道中自我平衡和自我更新的主要驱动力。平衡Wnt驱动的扩散的机制了解甚少。我们在这里证明,YAP是一种以其强大的诱导生长和致癌特性而著称的蛋白质-,它具有意想不到的生长抑制功能,在肠道再生过程中会限制Wnt信号。 YAP的转基因表达降低了Wnt靶基因的表达,并导致肠隐窝快速丢失。此外,YAP的丧失会导致再生过程中Wnt超敏反应,从而导致增生,肠干细胞(ISC)和壁cells细胞的扩增以及异位隐窝和微腺瘤的形成。我们发现,胞质YAP部分地通过限制Disheveled(DVL)的活性来独立于APC / Axin /GSK3β复合物来限制升高的Wnt信号传导。 ISC核中的DVL信号及其强制表达导致隐窝中Wnt信号增强。 YAP通过限制再生生长期间DVL核易位来抑制Wnt信号。最后,我们提供的证据表明,YAP在高度侵袭性和未分化的人类结直肠癌(CRC)的子集中沉默,其表达可限制CRC异种移植物的生长。总的来说,我们的工作描述了一种新颖的机制范例,说明在再生组织中如何平衡增殖信号。此外,我们的发现对以人类恶性肿瘤中的YAP为靶标具有重要意义。

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