外胚层
生物
细胞滋养层
内细胞团
胚胎干细胞
同源盒蛋白纳米
细胞生物学
滋养层
诱导多能干细胞
雷克斯1
干细胞
胚泡
胚胎
节的
遗传学
胚胎发生
胎儿
基因
原肠化
胎盘
怀孕
作者
Ge Guo,Giuliano Giuseppe Stirparo,Stanley E. Strawbridge,Daniel Spindlow,Jian Yang,James Clarke,Anish Dattani,Ayaka Yanagida,Meng Amy Li,Sam Myers,Buse Nurten Özel,Jennifer Nichols,Austin Smith
标识
DOI:10.1101/2020.02.04.933812
摘要
SUMMARY Classical mouse embryology has established a paradigm of early development driven by sequential lineage bifurcations. Accordingly, mouse embryonic stem cells derived from early epiblast have lost the potency to produce extraembryonic trophectoderm. We show in contrast that human naïve epiblast cells readily make trophectoderm. Inhibition of ERK signalling, instrumental in naïve stem cell propagation, unexpectedly potentiates trophectoderm formation, an effect enhanced by Nodal inhibition. Transcriptome analyses authenticate conversion into trophectoderm with subsequent production of syncitiotrophoblast, cytotrophoblast and trophoblast stem cells. Genetic perturbations indicate that NANOG suppresses and TFAP2C enables trophectoderm induction. Consistent with post-implantation progression, trophectoderm potential is extinguished in conventional human pluripotent stem cells, which instead make amnion. Finally, human embryo epiblasts from late blastocysts efficiently generate trophectoderm and differentiated trophoblast. Thus, pluripotent cells in the human embryo retain extraembryonic lineage plasticity and regenerative potential until implantation. Harnessing this unanticipated regulative capacity may be beneficial for assisted reproduction technology.
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