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抑制 Zeb1 和缺氧会导致顺序性的间质到上皮转化,并诱导 aid、Oct4 和 Dnmt1 的表达,从而导致球体中的成纤维细胞永生化和多能性重编程。

Repression of Zeb1 and hypoxia cause sequential mesenchymal-to-epithelial transition and induction of aid, Oct4, and Dnmt1, leading to immortalization and multipotential reprogramming of fibroblasts in spheres.

机构信息

James Graham Brown Cancer Center, Louisville, KY, USA.

出版信息

Stem Cells. 2013 Jul;31(7):1350-62. doi: 10.1002/stem.1382.

Abstract

In this study, we demonstrate that sphere formation triggers immortalization and stable reprogramming of mouse fibroblasts. Cell contact signaling in spheres causes downregulation of the epithelial-to-mesenchymal transition transcription factor Zeb1 leading to rapid mesenchymal-to-epithelial transition. Hypoxia within spheres together with loss of Zeb1 repression synergize to cause superinduction of Hif1a, which in turn leads to induction of the DNA demethylase Aid/Aicda, demethylation of the Oct4 promoter/enhancer and multipotency. Oct4 and Nanog expression diminish when cells are removed from the hypoxic environment of spheres and placed in monolayer culture, but the cells retain multipotential capacity, demonstrating stable reprogramming and a gene expression pattern resembling adult stem cells. Oct4 has been shown to induce Dnmt1 in mesenchymal stem cells, and we link Oct4 and Dnmt1 to silencing of cell cycle inhibitory cyclin dependent kinase inhibitors and Arf, and immortalization of the reprogrammed fibroblasts. Sphere formation then represents a novel and rapid protocol for immortalization and stable reprogramming of fibroblasts to multipotency that does not require exogenous expression of a stem cell factor or a lineage-specifying transcription factor.

摘要

在这项研究中,我们证明了球体形成会触发小鼠成纤维细胞的永生化和稳定重编程。球体中的细胞接触信号导致上皮-间充质转化转录因子 Zeb1 的下调,从而导致快速的间充质-上皮转化。球体中的缺氧以及 Zeb1 抑制的丧失协同作用导致 Hif1a 的超诱导,进而导致 DNA 去甲基化酶 Aid/Aicda 的诱导、Oct4 启动子/增强子的去甲基化和多能性。当细胞从球体的缺氧环境中取出并置于单层培养中时,Oct4 和 Nanog 的表达会减少,但细胞仍保留多能性能力,表现出稳定的重编程和类似于成体干细胞的基因表达模式。已经表明 Oct4 可以在间充质干细胞中诱导 Dnmt1,我们将 Oct4 和 Dnmt1 与细胞周期抑制性细胞周期蛋白依赖性激酶抑制剂和 Arf 的沉默以及重编程成纤维细胞的永生化联系起来。因此,球体形成代表了一种新的快速方法,可将成纤维细胞永生化和稳定重编程为多能性,而不需要外源表达干细胞因子或谱系特异性转录因子。

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