Huo Liang, Zhang Ping, Li Chenxi, Rahim Kashif, Hao Xiaoran, Xiang Biyun, Zhu Xudong
Beijing Key Laboratory of Genetic Engineering Drug and Biotechnology, Institute of Biochemistry and Molecular Biology, College of Life Sciences, Beijing Normal University (CLS-BNU), Beijing 100875, China.
Genes (Basel). 2018 Feb 26;9(3):118. doi: 10.3390/genes9030118.
Circular RNAs (circRNAs), a novel class of ubiquitous and intriguing noncoding RNA, have been found in a number of eukaryotes but not yet basidiomycetes. In this study, we identified 73 circRNAs from 39.28 million filtered RNA reads from the basidiomycete JEC21 using next-generation sequencing (NGS) and the bioinformatics tool circular RNA identification (CIRI). Furthermore, mapping of newly found circRNAs to the genome showed that 73.97% of the circRNAs originated from exonic regions, whereas 20.55% were from intergenic regions and 5.48% were from intronic regions. Enrichment analysis of circRNA host genes was conducted based on the Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway databases. The results reveal that host genes are mainly responsible for primary metabolism and, interestingly, ribosomal protein production. Furthermore, we uncovered a high-level circRNA that was a transcript from the guanosine triphosphate (GTP)ase gene (gene ID: 3255052) in our yeast. Coincidentally, , 's ortholog of the GTPase in , protists, and humans, has already been proven to generate circRNAs. Additionally, overexpression of RNA debranching enzyme had varied influence on the expression of circRNAs, indicating that multiple circRNA biosynthesis pathways exist in . Our study provides evidence for the existence of stable circRNAs in the opportunistic human pathogen and raises a question regarding their role related to pathogenesis in this yeast.
环状RNA(circRNAs)是一类新型的普遍存在且引人关注的非编码RNA,已在多种真核生物中被发现,但尚未在担子菌中发现。在本研究中,我们使用下一代测序(NGS)和生物信息学工具环状RNA鉴定(CIRI),从担子菌JEC21的3928万个过滤后的RNA读数中鉴定出73种circRNAs。此外,将新发现的circRNAs映射到基因组表明,73.97%的circRNAs起源于外显子区域,而20.55%来自基因间区域,5.48%来自内含子区域。基于基因本体论和京都基因与基因组百科全书途径数据库对circRNA宿主基因进行了富集分析。结果表明,宿主基因主要负责初级代谢,有趣的是,还负责核糖体蛋白的产生。此外,我们在酵母中发现了一种高水平的circRNA,它是鸟苷三磷酸(GTP)酶基因(基因ID:3255052)的转录本。巧合的是,在原生生物和人类中,GTP酶的直系同源物已被证明能产生circRNAs。此外,RNA去分支酶的过表达对circRNAs的表达有不同影响,表明在担子菌中存在多种circRNA生物合成途径。我们的研究为机会性人类病原体担子菌中存在稳定的circRNAs提供了证据,并提出了一个关于它们在这种酵母中与发病机制相关作用的问题。