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LABRAT 揭示了可变多聚腺苷酸化与转录定位、RNA 结合蛋白表达、转录速度和癌症生存的关联。

LABRAT reveals association of alternative polyadenylation with transcript localization, RNA binding protein expression, transcription speed, and cancer survival.

机构信息

Department of Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.

RNA Bioscience Initiative, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.

出版信息

BMC Genomics. 2021 Jun 26;22(1):476. doi: 10.1186/s12864-021-07781-1.

Abstract

BACKGROUND

The sequence content of the 3' UTRs of many mRNA transcripts is regulated through alternative polyadenylation (APA). The study of this process using RNAseq data, though, has been historically challenging.

RESULTS

To combat this problem, we developed LABRAT, an APA isoform quantification method. LABRAT takes advantage of newly developed transcriptome quantification techniques to accurately determine relative APA site usage and how it varies across conditions. Using LABRAT, we found consistent relationships between gene-distal APA and subcellular RNA localization in multiple cell types. We also observed connections between transcription speed and APA site choice as well as tumor-specific transcriptome-wide shifts in APA isoform abundance in hundreds of patient-derived tumor samples that were associated with patient prognosis. We investigated the effects of APA on transcript expression and found a weak overall relationship, although many individual genes showed strong correlations between relative APA isoform abundance and overall gene expression. We interrogated the roles of 191 RNA-binding proteins in the regulation of APA isoforms, finding that dozens promote broad, directional shifts in relative APA isoform abundance both in vitro and in patient-derived samples. Finally, we find that APA site shifts in the two classes of APA, tandem UTRs and alternative last exons, are strongly correlated across many contexts, suggesting that they are coregulated.

CONCLUSIONS

We conclude that LABRAT has the ability to accurately quantify APA isoform ratios from RNAseq data across a variety of sample types. Further, LABRAT is able to derive biologically meaningful insights that connect APA isoform regulation to cellular and molecular phenotypes.

摘要

背景

许多 mRNA 转录本的 3'UTR 序列内容通过可变多聚腺苷酸化(APA)进行调控。然而,使用 RNAseq 数据研究这一过程在历史上一直具有挑战性。

结果

为了解决这个问题,我们开发了 LABRAT,一种 APA 异构体定量方法。LABRAT 利用新开发的转录组定量技术,准确确定相对 APA 位点使用情况及其在不同条件下的变化。使用 LABRAT,我们在多种细胞类型中发现了基因远端 APA 与亚细胞 RNA 定位之间的一致关系。我们还观察到转录速度与 APA 位点选择之间的联系,以及数百个患者来源的肿瘤样本中肿瘤特异性全转录组 APA 异构体丰度的变化与患者预后相关。我们研究了 APA 对转录本表达的影响,发现总体上相关性较弱,尽管许多单个基因在相对 APA 异构体丰度和整体基因表达之间表现出很强的相关性。我们研究了 191 种 RNA 结合蛋白在 APA 异构体调控中的作用,发现数十种蛋白在体外和患者来源的样本中均能促进相对 APA 异构体丰度的广泛、定向变化。最后,我们发现两种 APA 类别(串联 UTR 和可变最后外显子)中的 APA 位点变化在许多情况下具有很强的相关性,这表明它们是共同调节的。

结论

我们得出结论,LABRAT 能够准确地从各种样本类型的 RNAseq 数据中定量 APA 异构体的比值。此外,LABRAT 能够得出将 APA 异构体调控与细胞和分子表型联系起来的生物学意义上的结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e000/8234626/0773b918ed74/12864_2021_7781_Fig1_HTML.jpg

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