小鼠胚胎干细胞在悬浮状态下抵抗c-Jun诱导的分化

IF 4 Q2 CELL & TISSUE ENGINEERING
Bo Wang , Dongwei Li , Jiekai Chen , Jing Liu , Duanqing Pei
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引用次数: 0

摘要

致癌基因c-Jun在发育和癌症中起着关键作用。然而,它在细胞命运决定中的作用在分子水平上仍然知之甚少。在这里,我们报道了c-Jun赋予小鼠胚胎干细胞(mESCs)在粘附和悬浮培养中的不同命运决定。我们开发了一个Tet-on系统,通过强力霉素处理在mESCs中暂时诱导c-Jun的表达。我们发现,当c-Jun表达被诱导时,携带可诱导的c-Jun TetOn的mESCs保持多能性,并且在悬浮中生长缓慢,而当细胞粘附时,它们在c-Jun诱导下进行分化并表现出正常的增殖潜能。我们的数据表明,c- jun通过激活细胞周期抑制剂Cdkn1a/b和Cdkn2/a/b/c,将悬浮中的mESCs在G1/S时进入细胞周期阻滞。尽管这种细胞周期阻滞,它们在转移到粘附表面后仍然可以重新进入细胞周期,并生长成典型的mESC集落,尽管效率较低。这些结果表明,在悬浮培养和贴壁培养中,mESCs对诱导的c-Jun过表达的反应不同。我们的研究结果表明,悬浮细胞可能比粘附细胞更能抵抗分化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mouse embryonic stem cells resist c-Jun induced differentiation when in suspension

Mouse embryonic stem cells resist c-Jun induced differentiation when in suspension

Mouse embryonic stem cells resist c-Jun induced differentiation when in suspension

Mouse embryonic stem cells resist c-Jun induced differentiation when in suspension

The oncogene c-Jun plays a key role in development and cancer. Yet, its role in cell fate decision remains poorly understood at the molecular level. Here we report that c-Jun confers different fate decisions upon mouse embryonic stem cells (mESCs) in adhesion vs suspension culture. We developed a Tet-on system for temporal induction of c-Jun expression by Doxycycline treatment in mESCs. We show that mESCs carrying the inducible c-Jun TetOn remain pluripotent and grow slowly in suspension when c-Jun expression is induced, whilst when the cells adhere they undergo differentiation and show normal proliferative potential upon c-Jun induction. Our data indicates that c-Jun pushes mESCs in suspension into cell cycle arrest at G1/S, by activating the cell cycle inhibitors Cdkn1a/b and Cdkn2/a/b/c. Despite this cell cycle arrest, they can still re-enter the cell cycle upon transfer to an adhesive surface, and grow into typical mESC colonies, albeit at a lower efficiency. These results demonstrate that mESCs respond to induced c-Jun overexpression differently in suspension or adherent cultures. Our results suggest that cells in suspension may be more resistant to differentiation than when they adhere.

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来源期刊
Cell Regeneration
Cell Regeneration Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.80
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Cell Regeneration aims to provide a worldwide platform for researches on stem cells and regenerative biology to develop basic science and to foster its clinical translation in medicine. Cell Regeneration welcomes reports on novel discoveries, theories, methods, technologies, and products in the field of stem cells and regenerative research, the journal is interested, but not limited to the following topics: ◎ Embryonic stem cells ◎ Induced pluripotent stem cells ◎ Tissue-specific stem cells ◎ Tissue or organ regeneration ◎ Methodology ◎ Biomaterials and regeneration ◎ Clinical translation or application in medicine
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