滋养层
转录因子
生物
染色质
细胞生物学
转录组
胎盘形成
表观基因组
遗传学
基因
胎盘
基因表达
DNA甲基化
怀孕
胎儿
作者
Kaela M. Varberg,Esteban M. Domínguez,Boryana Koseva,Joseph M. Varberg,Ross P. McNally,Ayelen Moreno‐Irusta,Emily R. Wesley,Khursheed Iqbal,Warren Cheung,Carl Schwendinger-Schreck,Craig Smail,Hiroaki Okae,Takahiro Arima,Michael Lydic,Kristin Holoch,Courtney Marsh,Michael J. Soares,Elin Grundberg
标识
DOI:10.1038/s41467-023-40424-5
摘要
Abstract The extravillous trophoblast cell lineage is a key feature of placentation and successful pregnancy. Knowledge of transcriptional regulation driving extravillous trophoblast cell development is limited. Here, we map the transcriptome and epigenome landscape as well as chromatin interactions of human trophoblast stem cells and their transition into extravillous trophoblast cells. We show that integrating chromatin accessibility, long-range chromatin interactions, transcriptomic, and transcription factor binding motif enrichment enables identification of transcription factors and regulatory mechanisms critical for extravillous trophoblast cell development. We elucidate functional roles for TFAP2C , SNAI1 , and EPAS1 in the regulation of extravillous trophoblast cell development. EPAS1 is identified as an upstream regulator of key extravillous trophoblast cell transcription factors, including ASCL2 and SNAI1 and together with its target genes, is linked to pregnancy loss and birth weight. Collectively, we reveal activation of a dynamic regulatory network and provide a framework for understanding extravillous trophoblast cell specification in trophoblast cell lineage development and human placentation.
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