卵母细胞
染色质
合子
细胞生物学
母子转换
表观遗传学
生物
基因
遗传学
胚胎
胚胎发生
作者
Qing Tian,Ying Yin,Yu Tian,Yufan Wang,Y Wang,Rikiro Fukunaga,Toshihiro Fujii,Aihua Liao,Lei Li,Wei Zhang,Ximiao He,Wenpei Xiang,Liquan Zhou
标识
DOI:10.1002/advs.202308018
摘要
Abstract Epigenetic modifiers that accumulate in oocytes, play a crucial role in steering the developmental program of cleavage embryos and initiating life. However, the identification of key maternal epigenetic regulators remains elusive. In the findings, the essential role of maternal Ep400 , a chaperone for H3.3, in oocyte quality and early embryo development in mice is highlighted. Depletion of Ep400 in oocytes resulted in a decline in oocyte quality and abnormalities in fertilization. Preimplantation embryos lacking maternal Ep400 exhibited reduced major zygotic genome activation (ZGA) and experienced developmental arrest at the 2‐to‐4‐cell stage. The study shows that EP400 forms protein complex with NFYA, occupies promoters of major ZGA genes, modulates H3.3 distribution between euchromatin and heterochromatin, promotes transcription elongation, activates the expression of genes regulating mitochondrial functions, and facilitates the expression of rate‐limiting enzymes of the TCA cycle. This intricate process driven by Ep400 ensures the proper execution of the developmental program, emphasizing its critical role in maternal‐to‐embryonic transition.
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