Jacobsen Nana, Andreasen Ditte, Mouritzen Peter
Exiqon A/S, Vedbaek, Denmark.
Methods Mol Biol. 2011;732:39-54. doi: 10.1007/978-1-61779-083-6_4.
A variety of physiological processes are associated with changes in microRNA (miRNA) expression. Analysis of miRNA has been applied to study normal physiology as well as diseased states including cancer. One major challenge in miRNA research is to accurately and practically determine the expression level of miRNAs in various experimental systems. Many genome-wide miRNA expression profiling studies have relied on microarrays technology, and frequently differentially expressed miRNAs have subsequently been confirmed with real-time quantitative PCR studies. Here, we describe how different primer strategies for first-strand cDNA synthesis and PCR amplification can affect measurements of miRNA expression levels. Overcoming the small nature of miRNAs is a difficult task as the short sequence available does not allow for designing primers using standard PCR primer design guidelines. Finally, we demonstrate how to determine differentially expressed miRNAs using a locked nucleic acid-based real-time PCR approach.
多种生理过程与微小RNA(miRNA)表达的变化相关。miRNA分析已被应用于研究正常生理以及包括癌症在内的疾病状态。miRNA研究中的一个主要挑战是在各种实验系统中准确且实际地确定miRNA的表达水平。许多全基因组miRNA表达谱研究依赖于微阵列技术,随后经常通过实时定量PCR研究来确认差异表达的miRNA。在此,我们描述了用于第一链cDNA合成和PCR扩增的不同引物策略如何影响miRNA表达水平的测量。克服miRNA短小的特性是一项艰巨的任务,因为可用的短序列不允许使用标准PCR引物设计指南来设计引物。最后,我们展示了如何使用基于锁核酸的实时PCR方法来确定差异表达的miRNA。