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通过深度测序发现并鉴定小鼠胸腺对电离辐射反应中的微小RNA

Discovery and characterization of miRNAs in mouse thymus responses to ionizing radiation by deep sequencing.

作者信息

Chen Chen, Lu Jike, Hao Limin, Zheng Zhiqiang, Zhang Naixun, Wang Zhenyu

机构信息

a School of Life Sciences , Zhengzhou University , Zhengzhou , Henan , China ;

b The Quartermaster Equipment Institute of General Logistics Department of People's Liberation Army , Beijing China ;

出版信息

Int J Radiat Biol. 2016;92(10):548-557. doi: 10.1080/09553002.2016.1207821. Epub 2016 Aug 11.

Abstract

To investigate the potential regulatory roles of microRNA (miRNA) in mouse response to ionizing radiation (IR)-induced thymus injury, miRNA expression profiles of mouse thymus with or without IR were analyzed using deep sequencing technology. Potential target candidates of the identified miRNA were predicted using RNAhybrid and miRanda. Differently expressed miRNA targets functional annotation and pathways were noted using Swiss-Prot, Gene Ontology (GO), Clusters of Orthologous Groups (COG), Kyoto Encyclopedia of Genes and Genomes (KEGG) and non-redundant (NR) databases. In this study, there were 112 differently expressed miRNAs identified, including 45 known mature and 67 novel miRNAs, which meanwhile contained 77 up-regulated and 35 down-regulated miRNAs. The results of quantitative RT-polymerase chain reaction (qRT-PCR) verification were in agreement with the sequencing analysis. And the target genes of miRNA were annotated. These results revealed the differences of miRNA expression, further extended the biological knowledge and greatly facilitated future studies on the function of miRNA in IR-induced thymus injury.

摘要

为研究微小RNA(miRNA)在小鼠对电离辐射(IR)诱导的胸腺损伤反应中的潜在调控作用,利用深度测序技术分析了有或无IR处理的小鼠胸腺的miRNA表达谱。使用RNAhybrid和miRanda预测已鉴定miRNA的潜在靶标候选物。利用瑞士蛋白质数据库(Swiss-Prot)、基因本体论(GO)、直系同源簇(COG)、京都基因与基因组百科全书(KEGG)和非冗余(NR)数据库对差异表达的miRNA靶标进行功能注释和通路分析。本研究共鉴定出112个差异表达的miRNA,包括45个已知成熟miRNA和67个新miRNA,其中上调的miRNA有77个,下调的有35个。定量逆转录聚合酶链反应(qRT-PCR)验证结果与测序分析一致。并且对miRNA的靶基因进行了注释。这些结果揭示了miRNA表达的差异,进一步拓展了生物学知识,极大地促进了未来关于miRNA在IR诱导的胸腺损伤中功能的研究。

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