生物
核糖体
翻译(生物学)
核糖体分析
合子
计算生物学
蛋白质生物合成
细胞生物学
基因
遗传学
信使核糖核酸
核糖核酸
胚胎发生
作者
Hakan Özadam,Tori Tonn,Crystal M. Han,Alia Segura,Ian Hoskins,Shilpa Rao,Vighnesh Ghatpande,Duc Tran,David Catoe,Marc Salit,Can Cenik
出处
期刊:Nature
[Springer Nature]
日期:2023-06-21
卷期号:618 (7967): 1057-1064
被引量:10
标识
DOI:10.1038/s41586-023-06228-9
摘要
Translation regulation is critical for early mammalian embryonic development1. However, previous studies had been restricted to bulk measurements2, precluding precise determination of translation regulation including allele-specific analyses. Here, to address this challenge, we developed a novel microfluidic isotachophoresis (ITP) approach, named RIBOsome profiling via ITP (Ribo-ITP), and characterized translation in single oocytes and embryos during early mouse development. We identified differential translation efficiency as a key mechanism regulating genes involved in centrosome organization and N6-methyladenosine modification of RNAs. Our high-coverage measurements enabled, to our knowledge, the first analysis of allele-specific ribosome engagement in early development. These led to the discovery of stage-specific differential engagement of zygotic RNAs with ribosomes and reduced translation efficiency of transcripts exhibiting allele-biased expression. By integrating our measurements with proteomics data, we discovered that ribosome occupancy in germinal vesicle-stage oocytes is the predominant determinant of protein abundance in the zygote. The Ribo-ITP approach will enable numerous applications by providing high-coverage and high-resolution ribosome occupancy measurements from ultra-low input samples including single cells.
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