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Tead4 和 Tfap2c 在全能胚胎中产生双能性和双稳态开关,以促进强大的谱系多样化。

Tead4 and Tfap2c generate bipotency and a bistable switch in totipotent embryos to promote robust lineage diversification.

机构信息

Mammalian Embryo and Stem Cell Group, Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, USA.

出版信息

Nat Struct Mol Biol. 2024 Jun;31(6):964-976. doi: 10.1038/s41594-024-01311-9. Epub 2024 May 24.

Abstract

The mouse and human embryo gradually loses totipotency before diversifying into the inner cell mass (ICM, future organism) and trophectoderm (TE, future placenta). The transcription factors TFAP2C and TEAD4 with activated RHOA accelerate embryo polarization. Here we show that these factors also accelerate the loss of totipotency. TFAP2C and TEAD4 paradoxically promote and inhibit Hippo signaling before lineage diversification: they drive expression of multiple Hippo regulators while also promoting apical domain formation, which inactivates Hippo. Each factor activates TE specifiers in bipotent cells, while TFAP2C also activates specifiers of the ICM fate. Asymmetric segregation of the apical domain reconciles the opposing regulation of Hippo signaling into Hippo OFF and the TE fate, or Hippo ON and the ICM fate. We propose that the bistable switch established by TFAP2C and TEAD4 is exploited to trigger robust lineage diversification in the developing embryo.

摘要

在分化为内细胞团(未来的生物体)和滋养外胚层(未来的胎盘)之前,老鼠和人类胚胎逐渐失去全能性。转录因子 TFAP2C 和 TEAD4 与激活的 RHOA 加速胚胎极化。在这里,我们表明这些因素也加速了全能性的丧失。TFAP2C 和 TEAD4 在谱系分化前矛盾地促进和抑制 Hippo 信号:它们驱动多个 Hippo 调节因子的表达,同时也促进顶端域的形成,从而使 Hippo 失活。每个因子在双潜能细胞中激活 TE 特化因子,而 TFAP2C 还激活 ICM 命运的特化因子。顶端域的不对称分配将 Hippo 信号的相反调节协调为 Hippo OFF 和 TE 命运,或 Hippo ON 和 ICM 命运。我们提出,TFAP2C 和 TEAD4 建立的双稳态开关被利用来触发发育中的胚胎中强大的谱系分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8501/11189297/8230c3f772b0/41594_2024_1311_Fig1_HTML.jpg

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