计算生物学
核糖核酸
信使核糖核酸
多路复用
生物
基因
免疫沉淀
样品(材料)
计算机科学
遗传学
化学
色谱法
电信
作者
David Dierks,Miguel Angel García-Campos,Anna Uzonyi,Modi Safra,Sarit Edelheit,Alice Rossi,Theodora Sideri,Radhika A. Varier,Alexander Brandis,Yonatan Stelzer,Folkert J. van Werven,Ruth Scherz‐Shouval,Schraga Schwartz
出处
期刊:Nature Methods
[Nature Portfolio]
日期:2021-09-01
卷期号:18 (9): 1060-1067
被引量:94
标识
DOI:10.1038/s41592-021-01242-z
摘要
N6-methyladenosine (m6A) is the most prevalent modification of messenger RNA in mammals. To interrogate its functions and dynamics, there is a critical need to quantify m6A at three levels: site, gene and sample. Current approaches address these needs in a limited manner. Here we develop m6A-seq2, relying on multiplexed m6A-immunoprecipitation of barcoded and pooled samples. m6A-seq2 allows a big increase in throughput while reducing technical variability, requirements of input material and cost. m6A-seq2 is furthermore uniquely capable of providing sample-level relative quantitations of m6A, serving as an orthogonal alternative to mass spectrometry-based approaches. Finally, we develop a computational approach for gene-level quantitation of m6A. We demonstrate that using this metric, roughly 30% of the variability in RNA half life in mouse embryonic stem cells can be explained, establishing m6A as a main driver of RNA stability. m6A-seq2 thus provides an experimental and analytic framework for dissecting m6A-mediated regulation at three different levels.
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