Brief Bioinform. 2017 Nov 1;18(6):984-992. doi: 10.1093/bib/bbw081.
Circular RNA (circRNA) is a group of RNA family generated by RNA circularization, which was discovered ubiquitously across different species and tissues. However, there is no global view of tissue specificity for circRNAs to date. Here we performed the comprehensive analysis to characterize the features of human and mouse tissue-specific (TS) circRNAs. We identified in total 302 853 TS circRNAs in the human and mouse genome, and showed that the brain has the highest abundance of TS circRNAs. We further confirmed the existence of circRNAs by reverse transcription polymerase chain reaction (RT-PCR). We also characterized the genomic location and conservation of these TS circRNAs and showed that the majority of TS circRNAs are generated from exonic regions. To further understand the potential functions of TS circRNAs, we identified microRNAs and RNA binding protein, which might bind to TS circRNAs. This process suggested their involvement in development and organ differentiation. Finally, we constructed an integrated database TSCD (Tissue-Specific CircRNA Database: http://gb.whu.edu.cn/TSCD) to deposit the features of TS circRNAs. This study is the first comprehensive view of TS circRNAs in human and mouse, which shed light on circRNA functions in organ development and disorders.
环状 RNA (circRNA) 是一类由 RNA 环化产生的 RNA 家族,广泛存在于不同物种和组织中。然而,迄今为止,还没有关于 circRNA 在组织特异性方面的全局观点。在这里,我们进行了全面的分析,以描述人类和小鼠组织特异性 (TS) circRNA 的特征。我们总共在人类和小鼠基因组中鉴定了 302853 个 TS circRNA,并表明大脑具有最高丰度的 TS circRNA。我们通过逆转录聚合酶链反应 (RT-PCR) 进一步证实了 circRNA 的存在。我们还描述了这些 TS circRNA 的基因组位置和保守性,并表明大多数 TS circRNA 是由外显子区域产生的。为了进一步了解 TS circRNA 的潜在功能,我们鉴定了可能与 TS circRNA 结合的 microRNA 和 RNA 结合蛋白。这一过程表明它们参与了发育和器官分化。最后,我们构建了一个集成数据库 TSCD(组织特异性 circRNA 数据库:http://gb.whu.edu.cn/TSCD)来储存 TS circRNA 的特征。本研究首次全面描述了人类和小鼠的 TS circRNA,为器官发育和疾病中的 circRNA 功能提供了线索。