Quark Biosciences, Zhubei, Hsinchu, 30261, Taiwan.
RNA. 2018 Mar;24(3):304-312. doi: 10.1261/rna.061150.117. Epub 2017 Dec 5.
MicroRNAs (miRNAs) are 18-25 nucleotides (nt) of highly conserved, noncoding RNAs involved in gene regulation. Because of miRNAs' short length, the design of miRNA primers for PCR amplification remains a significant challenge. Adding to the challenge are miRNAs similar in sequence and miRNA family members that often only differ in sequences by 1 nt. Here, we describe a novel empirical-based method, miPrimer, which greatly reduces primer dimerization and increases primer specificity by factoring various intrinsic primer properties and employing four primer design strategies. The resulting primer pairs displayed an acceptable qPCR efficiency of between 90% and 110%. When tested on miRNA families, miPrimer-designed primers are capable of discriminating among members of miRNA families, as validated by qPCR assays using Quark Biosciences' platform. Of the 120 miRNA primer pairs tested, 95.6% and 93.3% were successful in amplifying specifically non-family and family miRNA members, respectively, after only one design trial. In summary, miPrimer provides a cost-effective and valuable tool for designing miRNA primers.
MicroRNAs (miRNAs) 是长度为 18-25 个核苷酸的高度保守的非编码 RNA,参与基因调控。由于 miRNAs 长度较短,因此用于 PCR 扩增的 miRNA 引物设计仍然是一个重大挑战。此外,序列相似的 miRNAs 和 miRNA 家族成员也增加了难度,这些家族成员通常仅在序列上相差 1 个核苷酸。在这里,我们描述了一种新颖的基于经验的方法 miPrimer,该方法通过考虑各种内在引物特性并采用四种引物设计策略,极大地减少了引物二聚体的形成并提高了引物的特异性。得到的引物对在 qPCR 中显示出可接受的效率在 90%到 110%之间。在 miRNA 家族上进行测试时,miPrimer 设计的引物能够区分 miRNA 家族成员,这通过使用 Quark Biosciences 平台进行的 qPCR 验证得到证实。在测试的 120 对 miRNA 引物中,经过一次设计尝试,分别有 95.6%和 93.3%的引物能够特异性扩增非家族和家族 miRNA 成员。总之,miPrimer 为 miRNA 引物的设计提供了一种具有成本效益且有价值的工具。