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Klf2 是维持基础态多能性的必需因素。

Klf2 is an essential factor that sustains ground state pluripotency.

机构信息

Genome Institute of Singapore, 60 Biopolis Street, #02-01 Genome Building, Singapore 138672, Singapore; School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore.

Genome Institute of Singapore, 60 Biopolis Street, #02-01 Genome Building, Singapore 138672, Singapore.

出版信息

Cell Stem Cell. 2014 Jun 5;14(6):864-72. doi: 10.1016/j.stem.2014.04.015.

Abstract

The maintenance of mouse embryonic stem cells (mESCs) requires LIF and serum. However, a pluripotent "ground state," bearing resemblance to preimplantation mouse epiblasts, can be established through dual inhibition (2i) of both prodifferentiation Mek/Erk and Gsk3/Tcf3 pathways. While Gsk3 inhibition has been attributed to the transcriptional derepression of Esrrb, the molecular mechanism mediated by Mek inhibition remains unclear. In this study, we show that Krüppel-like factor 2 (Klf2) is phosphorylated by Erk2 and that phospho-Klf2 is proteosomally degraded. Mek inhibition hence prevents Klf2 protein phosphodegradation to sustain pluripotency. Indeed, while Klf2-null mESCs can survive under LIF/Serum, they are not viable under 2i, demonstrating that Klf2 is essential for ground state pluripotency. Importantly, we also show that ectopic Klf2 expression can replace Mek inhibition in mESCs, allowing the culture of Klf2-null mESCs under Gsk3 inhibition alone. Collectively, our study defines the Mek/Erk/Klf2 axis that cooperates with the Gsk3/Tcf3/Esrrb pathway in mediating ground state pluripotency.

摘要

维持小鼠胚胎干细胞(mESCs)需要 LIF 和血清。然而,通过双重抑制分化的 Mek/Erk 和 Gsk3/Tcf3 通路,可以建立类似于植入前小鼠内细胞团的多能“基础状态”。虽然 Gsk3 的抑制归因于 Esrrb 的转录去抑制,但 Mek 抑制介导的分子机制尚不清楚。在这项研究中,我们表明,Krüppel 样因子 2(Klf2)被 Erk2 磷酸化,并且磷酸化的 Klf2 被蛋白酶体降解。因此,Mek 抑制可防止 Klf2 蛋白磷酸化降解,从而维持多能性。事实上,虽然 Klf2 缺失的 mESCs 在 LIF/血清条件下可以存活,但在 2i 条件下不能存活,这表明 Klf2 对于基础状态的多能性是必需的。重要的是,我们还表明,异位表达 Klf2 可以在 mESCs 中替代 Mek 抑制,从而允许在 Gsk3 抑制下单独培养 Klf2 缺失的 mESCs。总之,我们的研究定义了 Mek/Erk/Klf2 轴,该轴与 Gsk3/Tcf3/Esrrb 通路合作介导基础状态的多能性。

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