染色质
生物
重编程
DNA甲基化
表观遗传学
表观遗传学
嘉雅宠物
遗传学
计算生物学
二价染色质
母子转换
胚胎
细胞生物学
合子
染色质重塑
基因
基因表达
胚胎发生
作者
Lin Li,Fan Guo,Yun Gao,Yixin Ren,Peng Yuan,Liying Yan,Rong Li,Ying Lian,Jingyun Li,Boqiang Hu,Junpeng Gao,Lu Wen,Fuchou Tang,Jie Qiao
标识
DOI:10.1038/s41556-018-0123-2
摘要
DNA methylation, chromatin states and their interrelationships represent critical epigenetic information, but these are largely unknown in human early embryos. Here, we apply single-cell chromatin overall omic-scale landscape sequencing (scCOOL-seq) to generate a genome-wide map of DNA methylation and chromatin accessibility at single-cell resolution during human preimplantation development. Unlike in mice, the chromatin of the paternal genome is already more open than that of the maternal genome at the mid-zygote stage in humans, and this state is maintained until the 4-cell stage. After fertilization, genes with high variations in DNA methylation, and those with high variations in chromatin accessibility, tend to be two different sets. Furthermore, 1,797 out of 5,155 (35%) widely open chromatin regions in promoters closed when transcription activity was inhibited, indicating a feedback mechanism between transcription and open chromatin maintenance. Our work paves the way for dissecting the complex, yet highly coordinated, epigenetic reprogramming during human preimplantation development.
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