Institute of Bioinformatics and Systems Biology, National Chiao Tung University, Hsinchu, 300, Taiwan.
Institute of Genomics and Bioinformatics, National Chung Hsing University, Taichung, Taiwan.
BMC Genomics. 2018 Jan 19;19(Suppl 1):958. doi: 10.1186/s12864-017-4335-9.
Emerging evidence has been experimentally confirmed the tissue-specific expression of circRNAs (circRNAs). Global identification of human tissue-specific circRNAs is crucial for the functionality study, which facilitates the discovery of circRNAs for potential diagnostic biomarkers.
In this study, circRNA back-splicing junctions were identified from 465 publicly available transcriptome sequencing samples. The number of reads aligned to these identified junctions was normalized with the read length and sequence depth for each sample. We generated 66 models representing enriched circRNAs among human tissue transcriptome through biclustering algorithm. The result provides thousands of newly identified human tissue-specific circRNAs.
This result suggests that expression of circRNAs is not prompted by random splicing error but serving molecular functional roles. We also identified circRNAs enriched within circulating system, which, along with identified tissue-specific circRNAs, can serve as potential diagnostic biomarkers.
新兴证据已经在实验上证实了 circRNAs(circRNAs)的组织特异性表达。对人类组织特异性 circRNAs 的全面鉴定对于功能研究至关重要,这有助于发现潜在的诊断生物标志物的 circRNAs。
在这项研究中,从 465 个公开的转录组测序样本中鉴定了 circRNA 反向剪接接头。通过双聚类算法,我们生成了 66 个代表人类组织转录组中富集 circRNAs 的模型。结果提供了数千个新鉴定的人类组织特异性 circRNAs。
这一结果表明,circRNAs 的表达不是由随机剪接错误引发的,而是具有分子功能作用。我们还鉴定了在循环系统中富集的 circRNAs,这些与鉴定的组织特异性 circRNAs 一起,可以作为潜在的诊断生物标志物。