Single-cell multi-omic analysis profiles defective genome activation and epigenetic reprogramming associated with human pre-implantation embryo arrest

重编程 表观遗传学 胚胎 生物 卵母细胞 转录组 细胞生物学 基因组印记 遗传学 甲基化 DNA甲基化 基因 基因表达
作者
José Ramón Hernández Mora,Claudia Buhigas,Stephen J. Clark,Raquel Del Gallego Bonilla,Dagne Daskeviciute,Ana Monteagudo,Maria Eugenia Poo-Llanillo,José V. Medrano,Carlos Simón,Marcos Meseguer,Gavin Kelsey,David Monk
出处
期刊:Cell Reports [Elsevier]
卷期号:42 (2): 112100-112100 被引量:10
标识
DOI:10.1016/j.celrep.2023.112100
摘要

During pre-implantation stages of mammalian development, maternally stored material promotes both the erasure of the sperm and oocyte epigenetic profiles and is responsible for concomitant genome activation. Here, we have utilized single-cell methylome and transcriptome sequencing (scM&T-seq) to quantify both mRNA expression and DNA methylation in oocytes and a developmental series of human embryos at single-cell resolution. We fully characterize embryonic genome activation and maternal transcript degradation and map key epigenetic reprogramming events in developmentally high-quality embryos. By comparing these signatures with early embryos that have undergone spontaneous cleavage-stage arrest, as determined by time-lapse imaging, we identify embryos that fail to appropriately activate their genomes or undergo epigenetic reprogramming. Our results indicate that a failure to successfully accomplish these essential milestones impedes the developmental potential of pre-implantation embryos and is likely to have important implications, similar to aneuploidy, for the success of assisted reproductive cycles.

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