Faculty of Biology and Biotechnology, National Research University Higher School of Economics, Moscow 101000, Russia.
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow 117997, Russia.
Biochim Biophys Acta Gene Regul Mech. 2024 Sep;1867(3):195046. doi: 10.1016/j.bbagrm.2024.195046. Epub 2024 Jun 12.
shRNA-mediated strategy of miRNA overexpression based on RNA Polymerase III (Pol III) expression cassettes is widely used for miRNA functional studies. For some miRNAs, e.g., encoded in the genome as a part of a polycistronic miRNA cluster, it is most likely the only way for their individual stable overexpression. Here we have revealed that expression of miRNAs longer than 19 nt (e.g. 23 nt in length hsa-miR-93-5p) using such approach could be accompanied by undesired predominant generation of 5' end miRNA isoforms (5'-isomiRs). Extra U residues (up to five) added by Pol III at the 3' end of the transcribed shRNA during transcription termination could cause a shift in the Dicer cleavage position of the shRNA. This results in the formation of 5'-isomiRs, which have a significantly altered seed region compared to the initially encoded canonical hsa-miR-93-5p. We demonstrated that the commonly used qPCR method is insensitive to the formation of 5'-isomiRs and cannot be used to confirm miRNA overexpression. However, the predominant expression of 5'-isomiRs without three or four first nucleotides instead of the canonical isoform could be disclosed based on miRNA-Seq analysis. Moreover, mRNA sequencing data showed that the 5'-isomiRs of hsa-miR-93-5p presumably regulate their own mRNA targets. Thus, omitting miRNA-Seq analysis may lead to erroneous conclusions regarding revealed mRNA targets and possible molecular mechanisms in which studied miRNA is involved. Overall, the presented results show that structures of shRNAs for stable overexpression of miRNAs requires careful design to avoid generation of undesired 5'-isomiRs.
基于 RNA 聚合酶 III (Pol III) 表达盒的 miRNA 过表达的 shRNA 介导策略被广泛用于 miRNA 功能研究。对于某些 miRNA,例如作为多顺反子 miRNA 簇的一部分在基因组中编码,这可能是它们单独稳定过表达的唯一方法。在这里,我们揭示了使用这种方法表达长度超过 19nt 的 miRNA(例如 23nt 长的 hsa-miR-93-5p)可能伴随着不期望的主要产生 5'端 miRNA 同种型(5'-isomiRs)。Pol III 在转录终止时在转录的 shRNA 的 3'末端添加的额外 U 残基(多达五个)可能导致 shRNA 的 Dicer 切割位置发生移位。这导致了 5'-isomiRs 的形成,与最初编码的典型 hsa-miR-93-5p 相比,其种子区域发生了明显改变。我们证明了常用的 qPCR 方法对 5'-isomiRs 的形成不敏感,不能用于确认 miRNA 的过表达。然而,基于 miRNA-Seq 分析,可以揭示没有前三个或前四个核苷酸的典型同种型的 5'-isomiRs 的主要表达。此外,mRNA 测序数据表明,hsa-miR-93-5p 的 5'-isomiRs 可能调节其自身的 mRNA 靶标。因此,省略 miRNA-Seq 分析可能导致关于揭示的 mRNA 靶标和研究 miRNA 可能涉及的可能分子机制的错误结论。总的来说,所呈现的结果表明,用于 miRNA 稳定过表达的 shRNA 的结构需要仔细设计以避免产生不期望的 5'-isomiRs。