Developmental dynamics of RNA translation in the human brain

核糖体分析 生物 开放式参考框架 平动调节 人脑 翻译(生物学) 打开阅读框 神经科学 转录组 RNA结合蛋白 核糖核酸 基因 基因表达 遗传学 信使核糖核酸 肽序列
作者
Erin E. Duffy,Benjamin Finander,GiHun Choi,Ava C. Carter,Iva Pritišanac,Aqsa Alam,Victor Luria,Amir Karger,William Phu,Maxwell A. Sherman,Elena G. Assad,Naomi Pajarillo,Alexandra Khitun,Elizabeth E. Crouch,Sanika Ganesh,Jin Chen,Bonnie Berger,Nenad Šestan,Anne O’Donnell-Luria,Eric J. Huang,Eric C. Griffith,Julie D. Forman-Kay,Alan M. Moses,Brian T. Kalish,Michael E. Greenberg
出处
期刊:Nature Neuroscience [Springer Nature]
卷期号:25 (10): 1353-1365 被引量:22
标识
DOI:10.1038/s41593-022-01164-9
摘要

The precise regulation of gene expression is fundamental to neurodevelopment, plasticity and cognitive function. Although several studies have profiled transcription in the developing human brain, there is a gap in understanding of accompanying translational regulation. In this study, we performed ribosome profiling on 73 human prenatal and adult cortex samples. We characterized the translational regulation of annotated open reading frames (ORFs) and identified thousands of previously unknown translation events, including small ORFs that give rise to human-specific and/or brain-specific microproteins, many of which we independently verified using proteomics. Ribosome profiling in stem-cell-derived human neuronal cultures corroborated these findings and revealed that several neuronal activity-induced non-coding RNAs encode previously undescribed microproteins. Physicochemical analysis of brain microproteins identified a class of proteins that contain arginine-glycine-glycine (RGG) repeats and, thus, may be regulators of RNA metabolism. This resource expands the known translational landscape of the human brain and illuminates previously unknown brain-specific protein products. Duffy et al. profiled mRNA translation in 73 human prenatal and adult cortex samples and identified thousands of previously unknown translation events, including small open reading frames that give rise to human-specific and/or brain-specific microproteins.
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