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ERK 信号消除 Nanog 并维持 Oct4 以驱动形成性多能性过渡。

ERK signalling eliminates Nanog and maintains Oct4 to drive the formative pluripotency transition.

机构信息

Wellcome Trust - Medical Research Council Stem Cell Institute, University of Cambridge, Cambridge CB2 0AW, UK.

Randall Centre for Cell and Molecular Biology, King's College London, London SE1 1YR, UK.

出版信息

Development. 2024 Jul 15;151(14). doi: 10.1242/dev.203106. Epub 2024 Jul 26.

Abstract

Naïve epiblast cells in the embryo and pluripotent stem cells in vitro undergo developmental progression to a formative state competent for lineage specification. During this transition, transcription factors and chromatin are rewired to encode new functional features. Here, we examine the role of mitogen-activated protein kinase (ERK1/2) signalling in pluripotent state transition. We show that a primary consequence of ERK activation in mouse embryonic stem cells is elimination of Nanog, which precipitates breakdown of the naïve state gene regulatory network. Variability in pERK dynamics results in heterogeneous loss of Nanog and metachronous state transition. Knockdown of Nanog allows exit without ERK activation. However, transition to formative pluripotency does not proceed and cells collapse to an indeterminate identity. This outcome is due to failure to maintain expression of the central pluripotency factor Oct4. Thus, during formative transition ERK signalling both dismantles the naïve state and preserves pluripotency. These results illustrate how a single signalling pathway can both initiate and secure transition between cell states.

摘要

胚胎中的原始外胚层细胞和体外多能干细胞经历发育进展,形成具有谱系特化能力的形态发生状态。在此过程中,转录因子和染色质被重新布线以编码新的功能特征。在这里,我们研究了丝裂原活化蛋白激酶 (ERK1/2) 信号在多能性状态转变中的作用。我们表明,ERK 在小鼠胚胎干细胞中的激活的主要后果是消除 Nanog,这促使原始状态基因调控网络的崩溃。pERK 动力学的可变性导致 Nanog 的异质性丢失和异步状态转变。Nanog 的敲低允许在没有 ERK 激活的情况下退出。然而,向形态发生多能性的过渡并没有进行,细胞崩溃到不确定的身份。这种结果是由于未能维持中央多能性因子 Oct4 的表达。因此,在形态发生过渡期间,ERK 信号既破坏了原始状态,又保持了多能性。这些结果说明了如何单一信号通路可以启动和确保细胞状态之间的转变。

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