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The paradox of Foxd3: how does it function in pluripotency and differentiation of embryonic stem cells?

机译:Foxd3的悖论:它如何在胚胎干细胞的多能性和分化中起作用?

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摘要

Uncommitted cells of the early mammalian embryo transition through distinct stages of pluripotency, including establishment of ground state “naïve” pluripotency in the early epiblast, transition to a post-implantation “primed” state, and subsequent lineage commitment of the gastrulating epiblast. Previous transcriptional profiling of in vitro models to recapitulate early to late epiblast transition and differentiation suggest that distinct gene regulatory networks are likely to function in each of these states. While the mechanisms underlying transition between pluripotent states are poorly understood, the forkhead family transcription factor Foxd3 has emerged as a key regulatory factor. Foxd3 is required to maintain pluripotent cells of the murine epiblast and for survival, self-renewal and pluripotency of embryonic stem cells (ESCs). Two recent, simultaneous studies have shed light on how Foxd3 regulates gene expression in early cell fate transitions of progenitor cells. While the two publications shared some common findings, they also presented some conflicting results and suggest different models for the mechanisms underlying Foxd3 function. Here, we discuss the key similarities and differences between the publications, highlight data from the literature relevant to their findings, and hypothesize a potential mechanism of Foxd3 action.
机译:哺乳动物早期胚胎的未定殖细胞通过多能性的不同阶段转变,包括在早期表皮细胞中建立基态“幼稚”的多能性,过渡到植入后的“启动”状态,以及随后的成胃表皮细胞谱系。体外模型的早期转录概况分析总结了表皮细胞从早到晚的过渡和分化,这表明不同的基因调控网络可能在每种状态下都起作用。尽管对多能状态之间转换的潜在机制了解甚少,但叉头家族转录因子Foxd3已成为关键的调控因子。 Foxd3是维持鼠类成骨细胞的多能细胞以及胚胎干细胞(ESC)存活,自我更新和多能性所必需的。最近的两项同步研究揭示了Foxd3如何调控祖细胞早期细胞命运转变中的基因表达。虽然这两个出版物具有一些共同的发现,但它们也提出了一些相互矛盾的结果,并为Foxd3功能的潜在机制提出了不同的模型。在这里,我们讨论了出版物之间的关键相似点和不同点,突出了与他们的发现相关的文献数据,并假设了Foxd3作用的潜在机制。

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