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E-GEOD-70545 GSE70545, SRP060371 ChIP-seq Mus musculus

Foxd3 promotes the exit from naïve pluripotency and prevents germline specification through enhancer decommissioning [ChIP-Seq]

·发布 2015年9月14日 ·更新 2015年9月20日
3
样本数
3
实验数
实验描述

Following implantation, mouse epiblast cells transit from a naïve to a primed state in which they are competent for both somatic and primordial germ cell (PGC) specification. Using mouse embryonic stem cells (mESC) as an in vitro model to study the transcriptional regulatory principles orchestrating peri-implantation development, here we show that the transcription factor Foxd3 is necessary for the exit from naïve pluripotency and the progression to a primed pluripotent state. During this transition, Foxd3 acts as a repressor that dismantles a significant fraction of the naïve pluripotency expression program through the decommissioning of active enhancers associated with key naïve pluripotency and early germline genes. Subsequently, Foxd3 needs to be silenced in primed pluripotent cells to allow the reactivation of relevant genes required for proper PGC specification. Our findings uncover a wave of activation-deactivation of Foxd3 as a crucial step for the exit from naïve pluripotency and subsequent PGC specification. Genome-wide binding profiles for Foxd3 were investigated in mouse embryonic stem cells (mESC). A mESC line (FH-Foxd3 mESC line) expressing exogenous Foxd3 tagged with Flag and HA epitope (FH-Foxd3) at nearly endogenous levels was generated. ChIPs were performed against FH-Foxd3 using anti-HA or anti-Flag antibodies.

样本属性
cell line
FH-Foxd3
chip antibody
anti-Flag (F3165, Sigma), anti-HA (H3663, Sigma), input
organism
Mus musculus
实验信息
登记号
E-GEOD-70545
GEO 编号
GSE70545, SRP060371
实验类型
ChIP-seq
物种
Mus musculus
发布日期
2015年9月14日
更新日期
2015年9月20日
提交者
Milos Nikolic、 Patricia Respuela、 Alvaro Rada-Iglesias、 Alvaro Rada-Iglesias
分析服务
分析服务

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