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利用氧化深度测序和茎环逆转录定量PCR对3'-末端2'-O-甲基化小RNA进行准确定量

Accurate quantification of 3'-terminal 2'-O-methylated small RNAs by utilizing oxidative deep sequencing and stem-loop RT-qPCR.

作者信息

Kong Yan, Hu Huanhuan, Shan Yangyang, Zhou Zhen, Zen Ke, Sun Yulu, Yang Rong, Fu Zheng, Chen Xi

机构信息

Nanjing Drum Tower Hospital Center of Molecular Diagnostic and Therapy, State Key Laboratory of Pharmaceutical Biotechnology, Jiangsu Engineering Research Center for MicroRNA Biology and Biotechnology, NJU Advanced Institute of Life Sciences (NAILS), Institute of Artificial Intelligence Biomedicine, School of Life Sciences, Nanjing University, Nanjing, 210023, China.

Department of General Surgery, Drum Tower Hospital, Medical school of Nanjing University, Nanjing, 210008, China.

出版信息

Front Med. 2022 Apr;16(2):240-250. doi: 10.1007/s11684-021-0909-7. Epub 2022 Apr 13.

Abstract

The continuing discoveries of novel classes of RNA modifications in various organisms have raised the need for improving sensitive, convenient, and reliable methods for quantifying RNA modifications. In particular, a subset of small RNAs, including microRNAs (miRNAs) and Piwi-interacting RNAs (piRNAs), are modified at their 3'-terminal nucleotides via 2'-O-methylation. However, quantifying the levels of these small RNAs is difficult because 2'-O-methylation at the RNA 3'-terminus inhibits the activity of polyadenylate polymerase and T4 RNA ligase. These two enzymes are indispensable for RNA labeling or ligation in conventional miRNA quantification assays. In this study, we profiled 3'-terminal 2'-O-methyl plant miRNAs in the livers of rice-fed mice by oxidative deep sequencing and detected increasing amounts of plant miRNAs with prolonged oxidation treatment. We further compared the efficiency of stem-loop and poly(A)-tailed RT-qPCR in quantifying plant miRNAs in animal tissues and identified stem-loop RT-qPCR as the only suitable approach. Likewise, stem-loop RT-qPCR was superior to poly(A)-tailed RT-qPCR in quantifying 3'-terminal 2'-O-methyl piRNAs in human seminal plasma. In summary, this study established a standard procedure for quantifying the levels of 3'-terminal 2'-O-methyl miRNAs in plants and piRNAs. Accurate measurement of the 3'-terminal 2'-O-methylation of small RNAs has profound implications for understanding their pathophysiologic roles in biological systems.

摘要

在各种生物体中不断发现新型RNA修饰类别,这就需要改进用于定量RNA修饰的灵敏、便捷且可靠的方法。特别是,包括微小RNA(miRNA)和Piwi相互作用RNA(piRNA)在内的一小部分小RNA,在其3'末端核苷酸上通过2'-O-甲基化进行修饰。然而,定量这些小RNA的水平很困难,因为RNA 3'末端的2'-O-甲基化会抑制聚腺苷酸聚合酶和T4 RNA连接酶的活性。这两种酶在传统的miRNA定量分析中对于RNA标记或连接是不可或缺的。在本研究中,我们通过氧化深度测序分析了以大米喂养的小鼠肝脏中3'末端2'-O-甲基化的植物miRNA,并检测到随着氧化处理时间延长,植物miRNA的量增加。我们进一步比较了茎环RT-qPCR和poly(A)尾RT-qPCR在定量动物组织中植物miRNA的效率,并确定茎环RT-qPCR是唯一合适的方法。同样,在定量人类精液浆中3'末端2'-O-甲基化的piRNA时,茎环RT-qPCR也优于poly(A)尾RT-qPCR。总之,本研究建立了一种定量植物中3'末端2'-O-甲基化miRNA和piRNA水平的标准程序。准确测量小RNA的3'末端2'-O-甲基化对于理解它们在生物系统中的病理生理作用具有深远意义。

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