Live imaging endogenous transcription factor dynamics reveals mechanisms of epiblast and primitive endoderm fate segregation.

IF 7.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Current Biology Pub Date : 2025-09-08 Epub Date: 2025-07-31 DOI:10.1016/j.cub.2025.07.031
Rebecca P Kim-Yip, David Denberg, Denis F Faerberg, Hayden Nunley, Isabella Leite, Madeleine Chalifoux, Bradley Joyce, Jared Toettcher, Bin Gu, Eszter Posfai
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Abstract

The segregation of the epiblast (EPI) and primitive endoderm (PE) cell types in the preimplantation mouse embryo is not only a crucial decision that sets aside the precursors of the embryo proper from extraembryonic cells, respectively, but also has served as a central model to study a key concept in mammalian development: how much of developmental patterning is predetermined vs. stochastically emergent. Here, we address this question by quantitative live imaging of multiple endogenously tagged transcription factors key to this fate decision and trace their dynamics at a single-cell resolution through the formation of EPI and PE cell fates. Strikingly, we reveal an initial symmetry breaking event, the formation of a primary EPI cell lineage, and show that this is linked to the dynamics of the prior inner cell mass/trophectoderm fate decision through the expression of SOX2. This primary EPI lineage, through fibroblast growth factor (FGF) signaling, induces an increase in the transcription factor GATA6 in other inner cell mass cells, setting them on the course toward PE differentiation. Interestingly, this trajectory can switch during a defined developmental window, leading to the emergence of secondary EPI cells. Finally, we show that early expression levels of NANOG, which are seemingly stochastic, can bias whether a cell's trajectory switches to secondary EPI or continues as PE. Our data give unique insight into how fate patterning is initiated and propagated during unperturbed embryonic development through the interplay of lineage-history-biased and stochastic cell-intrinsic molecular features, unifying previous models of EPI/PE segregation.

实时成像内源性转录因子动力学揭示了外胚层和原始内胚层命运分离的机制。
着床前小鼠胚胎中外胚层(EPI)和原始内胚层(PE)细胞类型的分离不仅是区分胚胎原体细胞和胚胎外细胞的关键决定,而且还作为研究哺乳动物发育中一个关键概念的中心模型:多少发育模式是预先确定的,多少是随机出现的。在这里,我们通过对多个内源性标记的转录因子的定量实时成像来解决这个问题,这些转录因子是决定这种命运的关键,并通过EPI和PE细胞命运的形成在单细胞分辨率上追踪它们的动力学。引人注目的是,我们揭示了一个初始的对称性破坏事件,即初级EPI细胞谱系的形成,并表明这与通过SOX2表达的先前内细胞质量/滋养外胚层命运决定的动力学有关。这种初级EPI谱系通过成纤维细胞生长因子(FGF)信号传导,诱导其他内细胞团细胞中转录因子GATA6的增加,使其向PE分化。有趣的是,这一轨迹可以在一个确定的发育窗口期间转换,导致继发性EPI细胞的出现。最后,我们发现NANOG的早期表达水平似乎是随机的,它可以影响细胞的轨迹是切换到继发性EPI还是继续作为PE。我们的数据提供了独特的见解,通过谱系历史偏差和随机细胞固有分子特征的相互作用,在未受干扰的胚胎发育过程中,命运模式是如何启动和传播的,统一了以前的EPI/PE分离模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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