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概况分析揭示了参与斑马鱼生理发育的环状RNA。

Profiles analysis reveals circular RNAs involving zebrafish physiological development.

作者信息

Liu Heng, Hu Yin, Yin Jing, Yan Xiang-Yun, Chen Wen-Juan, Jiang Cheng-Yao, Hu Xiao-Shan, Wang Xing-Yun, Zhu Jin-Gai, Yu Zhang-Bin, Han Shu-Ping

机构信息

Department of Pediatrics, Women's Hospital of Nanjing Medical University, Nanjing Maternity and Child Health Care Hospital, Tian Fei Xiang, Nanjing, Jiangsu, China.

出版信息

J Cell Physiol. 2019 Sep;234(9):15922-15933. doi: 10.1002/jcp.28250. Epub 2019 Feb 11.

Abstract

Recent studies have found that known functions of circular RNAs (circRNAs) include sequestration of microRNAs (miRNAs) or proteins, modulation of transcription and interference with splicing, and even translation to produce polypeptides. The zebrafish model is also demonstrably similar to humans in many studies. To explore the changes in circRNAs during embryonic development and to further research the mechanism of action of circRNAs in development-related diseases, Zebrafish embryos at the blastula period, gastrula period, segmentation period, throat stage, and incubation period were collected. Illumina deep-sequencing technology and CircRNA Identifier (CIRI) algorithm were used to detect circRNAs. In total, we identified 1,028 circRNAs (junction reads ≥5 and p < 0.05). Considering that the function of circRNAs is related to host genes, a bioinformatics analysis revealed these differentially expressed host genes are involved in NOTCH signaling pathways, cardiovascular system development, retinal ganglion cell axon guidance, and so on. Moreover, circRNAs can participate in biological regulation through the function of miRNA sponges. TargetScan and miRanda were used to predict 73 miRNAs binding to circRNAs such as miR-19b, miR-124, and so on. Some miRNAs play important roles in embryogenesis. The peak expression of circRNAs is distributed at different time points, suggesting that it may be involved in embryogenesis at different stages. Our study provides a foundation for understanding the dynamic regulation of circRNA transcriptomes during embryogenesis and identifies novel key circRNAs that might control embryonic development in a zebrafish model.

摘要

最近的研究发现,环状RNA(circRNA)的已知功能包括隔离微小RNA(miRNA)或蛋白质、调节转录和干扰剪接,甚至进行翻译以产生多肽。在许多研究中,斑马鱼模型也明显与人类相似。为了探索胚胎发育过程中circRNA的变化,并进一步研究circRNA在发育相关疾病中的作用机制,收集了囊胚期、原肠胚期、体节期、咽期和孵化期的斑马鱼胚胎。使用Illumina深度测序技术和CircRNA标识符(CIRI)算法来检测circRNA。我们总共鉴定出1028个circRNA(连接读数≥5且p<0.05)。考虑到circRNA的功能与宿主基因相关,生物信息学分析显示这些差异表达的宿主基因参与NOTCH信号通路、心血管系统发育、视网膜神经节细胞轴突导向等。此外,circRNA可通过miRNA海绵功能参与生物调节。使用TargetScan和miRanda预测了73种与circRNA结合的miRNA,如miR-19b、miR-124等。一些miRNA在胚胎发生中起重要作用。circRNA的峰值表达分布在不同时间点,表明其可能参与不同阶段的胚胎发生。我们的研究为理解胚胎发生过程中circRNA转录组的动态调控提供了基础,并鉴定出可能在斑马鱼模型中控制胚胎发育的新型关键circRNA。

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