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Is an observed non-co-linear RNA product spliced intrans, incisor justin vitro?

反式剪接 生物 RNA剪接 核糖核酸 生物信息学 环状RNA 选择性拼接 遗传学 内含子 假阳性悖论 转录组 基因 计算生物学 反作用 外显子 基因表达 机器学习 计算机科学 突变体
作者
Hung‐Chih Kuo,Hsiao-Jung Liu,Li-Yuan Hung,Hung‐Chih Kuo,Trees‐Juen Chuang
出处
期刊:Nucleic Acids Research [Oxford University Press]
卷期号:42 (14): 9410-9423 被引量:53
标识
DOI:10.1093/nar/gku643
摘要

Global transcriptome investigations often result in the detection of an enormous number of transcripts composed of non-co-linear sequence fragments. Such 'aberrant' transcript products may arise from post-transcriptional events or genetic rearrangements, or may otherwise be false positives (sequencing/alignment errors or in vitro artifacts). Moreover, post-transcriptionally non-co-linear ('PtNcl') transcripts can arise from trans-splicing or back-splicing in cis (to generate so-called 'circular RNA'). Here, we collected previously-predicted human non-co-linear RNA candidates, and designed a validation procedure integrating in silico filters with multiple experimental validation steps to examine their authenticity. We showed that >50% of the tested candidates were in vitro artifacts, even though some had been previously validated by RT-PCR. After excluding the possibility of genetic rearrangements, we distinguished between trans-spliced and circular RNAs, and confirmed that these two splicing forms can share the same non-co-linear junction. Importantly, the experimentally-confirmed PtNcl RNA events and their corresponding PtNcl splicing types (i.e. trans-splicing, circular RNA, or both sharing the same junction) were all expressed in rhesus macaque, and some were even expressed in mouse. Our study thus describes an essential procedure for confirming PtNcl transcripts, and provides further insight into the evolutionary role of PtNcl RNA events, opening up this important, but understudied, class of post-transcriptional events for comprehensive characterization.
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