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鉴定与 EBV 非编码 RNA EBER2 相互作用的宿主 RNA。

Identification of host RNAs that interact with EBV noncoding RNA EBER2.

机构信息

a Department of Microbiology and Molecular Genetics, 450 Technology Drive , University of Pittsburgh School of Medicine , Pittsburgh , PA , USA.

出版信息

RNA Biol. 2018;15(9):1181-1191. doi: 10.1080/15476286.2018.1518854. Epub 2018 Sep 18.

Abstract

Epstein-Barr virus (EBV) expresses an abundant nuclear noncoding RNA called EBER2, which interacts with and acts as a guide RNA for the host transcription factor PAX5. This ribonucleoprotein complex localizes to the terminal repeat (TR) regions of the EBV genome via RNA-RNA interactions between EBER2 and nascent transcripts originating from these target sites. Given the fact that EBER2 base pairs with a viral RNA, we developed a protocol to identify EBER2-interacting RNAs in a transcriptome-wide manner. Our approach entails psoralen-mediated crosslinking, selection with antisense oligonucleotides targeting EBER2, and RNase V1 digestion coupled to next-generation sequencing. The use of RNase V1 circumvents the need of extensive computational analysis post data acquisition to search for predicted RNA hybrids, as the RNase V1 cleavage site marks the region of RNA duplex formation. As proof of principle, we show that our approach correctly identifies the known EBER2 interaction with TR RNAs. Moreover, we identify the host functional noncoding RNAs MRP, H1, and 7SL RNAs as well as three putative enhancer RNAs as candidate EBER2-interacting RNAs. As all of these gene loci exhibit PAX5 occupancy, we propose that EBER2 is recruited to these sites through its binding partner PAX5 and forms RNA-RNA interactions with nascent transcripts on chromatin. Thus, our novel approach facilitates the identification of targeted RNA-RNA-interactions and minimizes the need of downstream computational analyses to predict RNA duplexes.

摘要

EBV 表达一种丰富的核非编码 RNA,称为 EBER2,它与宿主转录因子 PAX5 相互作用,并作为其指导 RNA。这个核糖核蛋白复合物通过 EBER2 与源自这些靶位点的新生转录本之间的 RNA-RNA 相互作用,定位于 EBV 基因组的末端重复(TR)区域。鉴于 EBER2 与病毒 RNA 碱基配对,我们开发了一种在全转录组范围内鉴定 EBER2 相互作用 RNA 的方案。我们的方法包括补骨脂素介导的交联、针对 EBER2 的反义寡核苷酸选择以及与下一代测序相结合的 RNase V1 消化。RNase V1 的使用避免了在数据采集后进行广泛的计算分析来搜索预测的 RNA 杂交体的需要,因为 RNase V1 切割位点标记了 RNA 双链体形成的区域。作为原理验证,我们表明我们的方法正确地识别了已知的 EBER2 与 TR RNA 的相互作用。此外,我们还鉴定了宿主功能性非编码 RNA MRP、H1 和 7SL RNA 以及三个假定的增强子 RNA 作为候选 EBER2 相互作用 RNA。由于所有这些基因座都表现出 PAX5 占据,我们提出 EBER2 通过其结合伴侣 PAX5 被招募到这些位点,并与染色质上的新生转录本形成 RNA-RNA 相互作用。因此,我们的新方法促进了靶向 RNA-RNA 相互作用的鉴定,并最大限度地减少了下游计算分析来预测 RNA 双链体的需要。

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