核糖核酸
基因亚型
生物
非编码RNA
信使核糖核酸
RNA结合蛋白
细胞生物学
RNA编辑
分子生物学
基因
生物化学
计算生物学
作者
Kerstin C. Maier,Saskia Gressel,Patrick Cramer,Björn Schwalb
出处
期刊:Genome Research
[Cold Spring Harbor Laboratory]
日期:2020-09-01
卷期号:30 (9): 1332-1344
被引量:42
标识
DOI:10.1101/gr.257857.119
摘要
Eukaryotic genes often generate a variety of RNA isoforms that can lead to functionally distinct protein variants. The synthesis and stability of RNA isoforms is poorly characterized because current methods to quantify RNA metabolism use short-read sequencing and cannot detect RNA isoforms. Here we present nanopore sequencing-based isoform dynamics (nano-ID), a method that detects newly synthesized RNA isoforms and monitors isoform metabolism. Nano-ID combines metabolic RNA labeling, long-read nanopore sequencing of native RNA molecules, and machine learning. Nano-ID derives RNA stability estimates and evaluates stability determining factors such as RNA sequence, poly(A)-tail length, secondary structure, translation efficiency, and RNA-binding proteins. Application of nano-ID to the heat shock response in human cells reveals that many RNA isoforms change their stability. Nano-ID also shows that the metabolism of individual RNA isoforms differs strongly from that estimated for the combined RNA signal at a specific gene locus. Nano-ID enables studies of RNA metabolism at the level of single RNA molecules and isoforms in different cell states and conditions.
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