生物
胚胎干细胞
干细胞
细胞生物学
重编程
全能的
滋养层
胚泡
SOX2
表观遗传学
丁酸钠
人口
细胞分化
短尾鱼
胚胎
中胚层
细胞
遗传学
细胞培养
胎盘
胚胎发生
基因
胎儿
怀孕
人口学
社会学
作者
Boyen Huang,Xing Peng,Xuzhao Zhai,Jie Hu,Junyu Chen,Suming Yang,Qingpei Huang,Enze Deng,Huanhuan Li,Tahsin Stefan Barakat,Jiekai Chen,Duanqing Pei,Xiaoying Fan,Ian Chambers,Man Zhang
标识
DOI:10.1016/j.devcel.2024.05.009
摘要
Embryonic stem cells (ESCs) can differentiate into all cell types of the embryonic germ layers. ESCs can also generate totipotent 2C-like cells and trophectodermal cells. However, these latter transitions occur at low frequency due to epigenetic barriers, the nature of which is not fully understood. Here, we show that treating mouse ESCs with sodium butyrate (NaB) increases the population of 2C-like cells and enables direct reprogramming of ESCs into trophoblast stem cells (TSCs) without a transition through a 2C-like state. Mechanistically, NaB inhibits histone deacetylase activities in the LSD1-HDAC1/2 corepressor complex. This increases acetylation levels in the regulatory regions of both 2C- and TSC-specific genes, promoting their expression. In addition, NaB-treated cells acquire the capacity to generate blastocyst-like structures that can develop beyond the implantation stage in vitro and form deciduae in vivo. These results identify how epigenetics restrict the totipotent and trophectoderm fate in mouse ESCs.
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