Huang Xia, Li Shijia, Liu Xiaoming, Huang Shuting, Li Shuang, Zhuo Min
School of Biology and Biological Engineering, South China University of Technology, Guangzhou, Guangdong, China.
Guangzhou Tulip Information Technologies Ltd., Guangzhou, Guangdong, China.
PeerJ. 2020 Jul 10;8:e9347. doi: 10.7717/peerj.9347. eCollection 2020.
MicroRNAs (miRNAs) are important regulators that fine-tune diverse cellular activities. Cynomolgus macaques () are used extensively in biomedical and pharmaceutical research; however, substantially fewer miRNAs have been identified in this species than in humans. Consequently, we investigated conserved miRNA profiles in cynomolgus macaques by homology searching and small RNA sequencing. In total, 1,455 high-confidence miRNA gene loci were identified, 408 of which were also confirmed by RNA sequencing, including 73 new miRNA loci reported in cynomolgus macaques for the first time. Comparing miRNA expression with age, we found a positive correlation between sequence conservation and expression levels during miRNA evolution. Additionally, we found that the miRNA gene locations in cynomolgus macaque genome were very flexible. Most were embedded in intergenic spaces or introns and clustered together. Several miRNAs were found in certain gene locations, including 64 exon-resident miRNAs, six splice-site-overlapping miRNAs (SO-miRNAs), and two pairs of distinct mirror miRNAs. We also identified 78 miRNA clusters, 68 of which were conserved in the human genome, including 10 large miRNA clusters predicted to regulate diverse developmental and cellular processes in cynomolgus macaque. Thus, this study not only expands the number of identified miRNAs in cynomolgus macaques but also provides clues for future research on the differences in miRNA repertoire between macaques and humans.
微小RNA(miRNA)是对多种细胞活动进行精细调控的重要调节因子。食蟹猴()在生物医学和药物研究中被广泛使用;然而,该物种中已鉴定出的miRNA比人类少得多。因此,我们通过同源性搜索和小RNA测序研究了食蟹猴中保守的miRNA谱。总共鉴定出1455个高可信度的miRNA基因位点,其中408个也通过RNA测序得到证实,包括73个首次在食蟹猴中报道的新miRNA位点。将miRNA表达与年龄进行比较,我们发现在miRNA进化过程中序列保守性与表达水平之间存在正相关。此外,我们发现食蟹猴基因组中的miRNA基因位置非常灵活。大多数miRNA嵌入基因间区域或内含子中并聚集在一起。在某些基因位置发现了几个miRNA,包括64个外显子驻留miRNA、6个剪接位点重叠miRNA(SO-miRNA)和两对不同的镜像miRNA。我们还鉴定出78个miRNA簇,其中68个在人类基因组中保守,包括10个预计可调节食蟹猴多种发育和细胞过程的大型miRNA簇。因此,本研究不仅扩大了食蟹猴中已鉴定出的miRNA数量,还为未来研究猕猴和人类之间miRNA库差异提供了线索。