Division of Translational Cancer Research, Department of Laboratory Medicine, Lund University, Lund, Sweden.
Current address: Eugene Bell Center, Marine Biological Laboratory, Woods Hole, Massachusetts.
Curr Protoc. 2023 Jan;3(1):e645. doi: 10.1002/cpz1.645.
MicroRNAs are short non-coding RNAs with important functions in the regulation of gene expression in healthy and diseased tissues. To optimally utilize the biological and clinical information that is contained in microRNA expression levels, tools for their accurate and cost-effective quantification are needed. While the standard method, qPCR, allows for quick and cheap microRNA quantification, specificity is limited due to the short lengths of microRNAs and the high similarity between closely related microRNA family members. A-to-I editing can further diversify the microRNA pool by altering individual nucleotides. There is currently a lack of protocols for the accurate quantification of A-to-I-edited microRNA isoforms using qPCR. Here, we describe a protocol to quantify microRNA editing isoforms using two-tailed RT-qPCR, with either SYBR Green or hydrolysis probes. The user will perform reverse transcription of RNA samples, generate standard curves, and quantify the resulting cDNA in the following qPCR step. We also give guidelines for primer design and for the evaluation of assays using synthetic oligonucleotides. These tools are expected to be transferable to any A-to-I-edited microRNA and its isoforms. © 2023 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Two-tailed reverse transcription of A-to-I-edited microRNAs Basic Protocol 2: SYBR Green-based qPCR for A-to-I-edited microRNAs Alternate Protocol: Hydrolysis probe-based qPCR for A-to-I-edited microRNAs Support Protocol: Preparation of standard curves using synthetic RNA oligonucleotides.
miRNAs 是一类短链非编码 RNA,在健康组织和病变组织中基因表达的调控中具有重要功能。为了最大限度地利用 miRNA 表达水平所包含的生物学和临床信息,需要开发准确且经济有效的 miRNA 定量工具。虽然 qPCR 这种标准方法可以快速且廉价地定量 miRNA,但由于 miRNA 较短且密切相关的 miRNA 家族成员之间高度相似,其特异性受到限制。A-to-I 编辑可以通过改变个别核苷酸进一步使 miRNA 池多样化。目前缺乏使用 qPCR 准确定量 A-to-I 编辑 miRNA 异构体的方案。在这里,我们描述了一种使用双尾 RT-qPCR 定量 miRNA 编辑异构体的方案,该方案使用 SYBR Green 或水解探针。用户将对 RNA 样本进行反转录,生成标准曲线,并在下一个 qPCR 步骤中定量所得 cDNA。我们还提供了引物设计和使用合成寡核苷酸评估检测的指南。这些工具预计可转移到任何 A-to-I 编辑的 miRNA 及其异构体。© 2023 作者。Wiley Periodicals LLC 出版的《当代协议》。基本方案 1:A-to-I 编辑 miRNA 的双尾反转录基本方案 2:用于 A-to-I 编辑 miRNA 的 SYBR Green 基 qPCR 备用方案:使用合成 RNA 寡核苷酸制备标准曲线。