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利用RNA测序鉴定环状RNA

Identification of Circular RNAs using RNA Sequencing.

作者信息

Sekar Shobana, Geiger Philipp, Cuyugan Lori, Boyle Annalee, Serrano Geidy, Beach Thomas G, Liang Winnie S

机构信息

Translational Genomic Research Institute; Arizona Alzheimer's Consortium.

Arizona Alzheimer's Consortium; Banner Sun Health Research Institute.

出版信息

J Vis Exp. 2019 Nov 14(153). doi: 10.3791/59981.

Abstract

Circular RNAs (circRNAs) are a class of non-coding RNAs involved in functions including micro-RNA (miRNA) regulation, mediation of protein-protein interactions, and regulation of parental gene transcription. In classical next generation RNA sequencing (RNA-seq), circRNAs are typically overlooked as a result of poly-A selection during construction of mRNA libraries, or are found at very low abundance, and are therefore difficult to isolate and detect. Here, a circRNA library construction protocol was optimized by comparing library preparation kits, pre-treatment options and various total RNA input amounts. Two commercially available whole transcriptome library preparation kits, with and without RNase R pre-treatment, and using variable amounts of total RNA input (1 to 4 µg), were tested. Lastly, multiple tissue types; including liver, lung, lymph node, and pancreas; as well as multiple brain regions; including the cerebellum, inferior parietal lobe, middle temporal gyrus, occipital cortex, and superior frontal gyrus; were compared to evaluate circRNA abundance across tissue types. Analysis of the generated RNA-seq data using six different circRNA detection tools (find_circ, CIRI, Mapsplice, KNIFE, DCC, and CIRCexplorer) revealed that a stranded total RNA library preparation kit with RNase R pre-treatment and 4 µg RNA input is the optimal method for identifying the highest relative number of circRNAs. Consistent with previous findings, the highest enrichment of circRNAs was observed in brain tissues compared to other tissue types.

摘要

环状RNA(circRNAs)是一类非编码RNA,其功能包括微小RNA(miRNA)调控、蛋白质-蛋白质相互作用介导以及亲本基因转录调控。在经典的下一代RNA测序(RNA-seq)中,由于mRNA文库构建过程中的多聚腺苷酸选择,circRNAs通常被忽视,或者其丰度极低,因此难以分离和检测。在此,通过比较文库制备试剂盒、预处理选项和各种总RNA输入量,优化了circRNA文库构建方案。测试了两种市售的全转录组文库制备试剂盒,一种进行了RNase R预处理,另一种未进行预处理,并使用了不同量的总RNA输入(1至4μg)。最后,比较了多种组织类型,包括肝脏、肺、淋巴结和胰腺,以及多个脑区,包括小脑、顶下叶、颞中回、枕叶皮质和额上回,以评估不同组织类型中circRNA的丰度。使用六种不同的circRNA检测工具(find_circ、CIRI、Mapsplice、KNIFE、DCC和CIRCexplorer)对生成的RNA-seq数据进行分析,结果表明,采用RNase R预处理和4μg RNA输入的链特异性总RNA文库制备试剂盒是鉴定circRNAs相对数量最高的最佳方法。与先前的研究结果一致,与其他组织类型相比,在脑组织中观察到circRNAs的富集程度最高。

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