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◆ Nature Communications2026-02-03· Computational biology

An absolute quantification atlas of small non-coding RNAs across diverse mammalian tissues and cell lines

Wen Xiao, Yuli Zheng, Hongdao Zhang, Beiying Xu, Ruiwen Zhang, Ligang Wu

原始摘要(英文原文)· Original abstract
The low quantitative accuracy of conventional small noncoding RNA sequencing (sncRNA-seq) methods due to extensive ligation bias commonly limits functional investigation of microRNAs (miRNAs) and PIWI-interacting RNAs (piRNAs). Here, we develop 4NBoost, a single-tube sncRNA-seq protocol designed to minimize bias in the estimated absolute quantification of miRNA and piRNA transcripts through the incorporation of quantitative exogenous RNA spike-ins. With 4NBoost, we profile sncRNA expression across 20 murine tissues, 18 macaque tissues, and 24 widely used cell lines, as well as 4 Arabidopsis tissues, to establish a comprehensive quantitative reference atlas. Compared with existing small RNA databases, our data reveal substantial biases in miRNA abundance, strand selection, and tissue-specific expression at both individual and family levels. To further extend its utility, we employ machine learning to model and correct biases in conventional datasets, effectively recovering ground truth transcript abundances. All 4NBoost data and the accompanying bias-correction model are freely available via SmRNAQuant (http://wulg-lab.sibcb.ac.cn/SmRNAQuant/), a web-based repository for exploring sncRNA expression. Together, the 4NBoost, bias-correction model, and SmRNAQuant provide powerful resources to advance sncRNA research. A comprehensive and quantitatively accurate reference for small noncoding RNAs is lacking. Here, the authors present 4NBoost and create an absolute quantification atlas of sncRNA expression across tissues and cell lines, along with a bias-correction model and the SmRNAQuant web resource
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