生物
表观遗传学
后生
细胞生物学
进化生物学
计算生物学
DNA甲基化
遗传学
基因
基因表达
作者
Stephanie Gehrs,Moritz Jakab,Ewgenija Gutjahr,Zuguang Gu,Dieter Weichenhan,Jan‐Philipp Mallm,Carolin Mogler,Matthias Schlesner,Christoph Plass,Katharina Schlereth,Hellmut G. Augustin
标识
DOI:10.1016/j.devcel.2024.12.037
摘要
The labyrinthian fetoplacental capillary network is vital for proper nourishment of the developing embryo. Dysfunction of the maternal-fetal circulation is a primary cause of placental insufficiency. Here, we show that the spatial zonation of the murine placental labyrinth vasculature is controlled by flow-regulated epigenetic mechanisms. Spatiotemporal transcriptomic profiling identified a gradual change in the expression of epigenetic enzymes, including the de novo DNA methyltransferase 3a (DNMT3A). Loss of Dnmt3a resulted in DNA hypomethylation and perturbation of zonated placental gene expression. The resulting global DNA hypomethylation impaired the angiogenic capacity of endothelial cells. Global or endothelium-predominant deletion of Dnmt3a resulted in impaired placental vascularization and fetal growth retardation (FGR). Human placental endothelial gene expression profiling associated preeclampsia with reduced DNMT3A expression. Collectively, our study identified DMNT3A as critical methylome-regulator of placental endothelial gene expression and function with clinical implications for placental dysfunction, as it occurs during preeclampsia or FGR.
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