Human Molecular Genetics Group-Bellvitge Biomedical Research Institute (IDIBELL), 08908 Hospitalet de Llobregat, Spain.
High Content Genomics and Bioinformatics (HCGB), Germans Trias i Pujol Research Institute (IGTP), 08916 Badalona, Spain.
Int J Mol Sci. 2023 Oct 21;24(20):15436. doi: 10.3390/ijms242015436.
Small RNA-sequencing (small RNA-seq) has revealed the presence of small RNA-naturally occurring variants such as microRNA (miRNA) isoforms or isomiRs. Due to their small size and the sequence similarity among miRNA isoforms, their validation by RT-qPCR is challenging. We previously identified two miR-31-5p isomiRs-the canonical and a 3'isomiR variant (3' G addition)-which were differentially expressed between individuals with azoospermia of different origin. Here, we sought to determine the discriminatory capacity between these two closely-related miRNA isoforms of three alternative poly(A) based-RT-qPCR strategies in both synthetic and real biological context. We found that these poly(A) RT-qPCR strategies exhibit a significant cross-reactivity between these miR-31-5p isomiRs which differ by a single nucleotide, compromising the reliable quantification of individual miRNA isoforms. Fortunately, in the biological context, given that the two miRNA variants show changes in the same direction, RT-qPCR results were consistent with the findings of small RNA-seq study. We suggest that miRNA selection for RT-qPCR validation should be performed with care, prioritizing those canonical miRNAs that, in small RNA-seq, show parallel/homogeneous expression behavior with their most prevalent isomiRs, to avoid confounding RT-qPCR-based results. This is suggested as the current best strategy for robust biomarker selection to develop clinically useful tests.
小 RNA 测序(small RNA-seq)揭示了小 RNA 的存在-天然存在的变体,如 microRNA(miRNA)同种型或 isomiRs。由于 miRNA 同种型的体积小且序列相似,因此通过 RT-qPCR 对其进行验证具有挑战性。我们之前鉴定了两种 miR-31-5p isomiRs-典型的和 3' 同种型变体(3' G 添加)-它们在不同来源的无精子症个体之间存在差异表达。在这里,我们试图确定这两种密切相关的 miRNA 同种型在三种替代 poly(A) 的基于 RT-qPCR 策略中的区分能力,包括合成和真实生物学背景。我们发现,这些 poly(A) RT-qPCR 策略在单核苷酸差异的情况下,这些 miR-31-5p isomiRs 之间存在显著的交叉反应性,从而影响了单个 miRNA 同种型的可靠定量。幸运的是,在生物学背景下,由于两种 miRNA 变体都表现出相同的变化方向,因此 RT-qPCR 结果与 small RNA-seq 研究的结果一致。我们建议,对于 RT-qPCR 验证,应谨慎选择 miRNA,优先选择那些在 small RNA-seq 中与其最常见同种型具有平行/均匀表达行为的典型 miRNA,以避免基于 RT-qPCR 的结果出现混淆。这是目前用于稳健生物标志物选择以开发临床有用测试的最佳策略。