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破坏β-连环蛋白与激活型TCF之间的相互作用可在小鼠胚胎干细胞中重建基础多能性。

Disrupting Interactions Between β-Catenin and Activating TCFs Reconstitutes Ground State Pluripotency in Mouse Embryonic Stem Cells.

作者信息

Saj Abil, Chatterjee Sujash S, Zhu Bowen, Cukuroglu Engin, Gocha Tenzin, Zhang Xiaoqian, Göke Jonathan, DasGupta Ramanuj

机构信息

Cancer Therapeutics and Stratified Oncology.

Computational and Systems Biology, Genome Institute of Singapore, Singapore, Singapore.

出版信息

Stem Cells. 2017 Aug;35(8):1924-1933. doi: 10.1002/stem.2647. Epub 2017 Jun 15.

Abstract

The 2i-media, composed of two small molecule inhibitors (PD0325901 and CHIR99021) against MEK and GSK3-kinases, respectively, is known to establish naïve ground state pluripotency in mouse embryonic stem cells (mESCs). These inhibitors block MEK-mediated differentiation, while driving β-catenin dependent de-repression of pluripotency promoting targets. However, accumulating evidence suggest that β-catenin's association with activating TCFs (TCF7 and TCF7L2) can induce expression of several lineage-specific prodifferentiation genes. We posited that CHIR-induced upregulation of β-catenin levels could therefore compromise the stability of the naïve state in long-term cultures. Here, we investigated whether replacing CHIR with iCRT3, a small molecule that abrogates β-catenin-TCF interaction, can still retain ground state pluripotency in mESCs. Our data suggests that iCRT3 + PD mediated coinhibition of MEK and β-catenin/TCF-dependent transcriptional activity over multiple passages significantly reduces expression of differentiation markers, as compared to 2i. Furthermore, the ability to efficiently contribute toward chimera generation and germline transmission suggests that the inhibition of β-catenin's TCF-dependent transcriptional activity, independent of its protein expression level, retains the naïve ground state pluripotency in mESCs. Additionally, growth medium containing iCRT3 + PD can provide an alternative to 2i as a stable culture method. Stem Cells 2017;35:1924-1933.

摘要

2i培养基由分别针对MEK和GSK3激酶的两种小分子抑制剂(PD0325901和CHIR99021)组成,已知其能在小鼠胚胎干细胞(mESC)中建立幼稚态多能性。这些抑制剂阻断MEK介导的分化,同时驱动β-连环蛋白依赖性去抑制多能性促进靶点。然而,越来越多的证据表明,β-连环蛋白与激活型TCF(TCF7和TCF7L2)的结合可诱导几种谱系特异性促分化基因的表达。我们推测,因此CHIR诱导的β-连环蛋白水平上调可能会损害长期培养中幼稚态的稳定性。在这里,我们研究了用消除β-连环蛋白-TCF相互作用的小分子iCRT3替代CHIR,是否仍能在mESC中保留多能性的基态。我们的数据表明,与2i培养基相比,iCRT3 + PD在多次传代中对MEK和β-连环蛋白/TCF依赖性转录活性的联合抑制显著降低了分化标志物的表达。此外,有效参与嵌合体形成和种系传递的能力表明,抑制β-连环蛋白的TCF依赖性转录活性,与其蛋白质表达水平无关,可在mESC中保留幼稚态多能性。此外,含有iCRT3 + PD的生长培养基可作为2i培养基的替代物,作为一种稳定的培养方法。《干细胞》2017年;35:1924 - 1933。

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