Yao Bo, Li Juan, Huang Huang, Sun Changhong, Wang Zhao, Fan Yu, Chang Qing, Li Shaolu, Xi Jianzhong
Department of Biomedical Engineering, College of Engineering, Peking University, Beijing 100871, China.
RNA. 2009 Sep;15(9):1787-94. doi: 10.1261/rna.1555209. Epub 2009 Jul 20.
To date, approximately 700 microRNA (miRNA) molecules have been identified in humans. Accurate and sensitive quantification of miRNA levels will help unveil their biological functions. Here, we extend the isothermal ramification amplification (RAM) approach to a sensitive and specific real-time assay for quantitative analysis of miRNA. This RAM miRNA assay is based on the threshold cycle (C(T)) principle similar to that of real-time PCR. It has a dynamic range of at least seven orders of magnitude, allowing for the quantification of miRNA input from 10(3) to 10(10) copies per reaction (10 nM to 1 fM). The capabilities of discriminating single-base mismatch and distinguishing mature miRNAs from their precursors are achieved by coupling the reverse-transcription of miRNA to the generation of a closed C-probe, rather than using expensive detection probes like in real-time PCR. Quantitative measurement of 5 miRNAs (mir-1, miR-122, mir-150, mir-143, and let-7a) across 12 mouse tissues is validated in total RNA samples without further purification. U6 snRNA, snoRNA 135, and miRNA-191 could be simultaneously quantified as endogenous controls. These results suggest that our RAM miRNA assay might provide a universal tool for miRNA detection and functional studies to meet the needs for bench examination, clinical diagnosis, and on-site detection.
迄今为止,在人类中已鉴定出约700种微小RNA(miRNA)分子。对miRNA水平进行准确而灵敏的定量分析将有助于揭示其生物学功能。在此,我们将等温分支扩增(RAM)方法扩展为一种用于miRNA定量分析的灵敏且特异的实时检测方法。这种RAM miRNA检测方法基于与实时PCR类似的阈值循环(C(T))原理。它具有至少七个数量级的动态范围,能够对每个反应中从10³到10¹⁰个拷贝(10 nM至1 fM)的miRNA输入量进行定量。通过将miRNA的逆转录与封闭C探针的生成相耦合,而不是像实时PCR那样使用昂贵的检测探针,实现了区分单碱基错配以及区分成熟miRNA与其前体的能力。在未经进一步纯化的总RNA样品中,对12种小鼠组织中的5种miRNA(mir-1、miR-122、mir-150、mir-143和let-7a)进行了定量测量验证。U6 snRNA、snoRNA 135和miRNA-191可作为内参同时进行定量。这些结果表明,我们的RAM miRNA检测方法可能为miRNA检测和功能研究提供一种通用工具,以满足实验室检测、临床诊断和现场检测的需求。