母子转换
生物
选择性拼接
外显子
RNA剪接
细胞生物学
DNA损伤
外显子跳跃
转录组
遗传学
合子
基因
DNA
胚胎
核糖核酸
胚胎发生
基因表达
作者
Christopher D. R. Wyatt,Bárbara Pernaute,André Gohr,Marta Miret-Cuesta,Lucía Goyeneche,Quirze Rovira,Marion Claudia Salzer,Elvan Böke,Ozren Bogdanović,Sophie Bonnal,Manuel Irimia
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-04-13
卷期号:8 (15)
被引量:26
标识
DOI:10.1126/sciadv.abn4935
摘要
Transition from maternal to embryonic transcriptional control is crucial for embryogenesis. However, alternative splicing regulation during this process remains understudied. Using transcriptomic data from human, mouse, and cow preimplantation development, we show that the stage of zygotic genome activation (ZGA) exhibits the highest levels of exon skipping diversity reported for any cell or tissue type. Much of this exon skipping is temporary, leads to disruptive noncanonical isoforms, and occurs in genes enriched for DNA damage response in the three species. Two core spliceosomal components, Snrpb and Snrpd2, regulate these patterns. These genes have low maternal expression at ZGA and increase sharply thereafter. Microinjection of Snrpb/d2 messenger RNA into mouse zygotes reduces the levels of exon skipping at ZGA and leads to increased p53-mediated DNA damage response. We propose that mammalian embryos undergo an evolutionarily conserved, developmentally programmed splicing failure at ZGA that contributes to the attenuation of cellular responses to DNA damage.
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