Juzenas Simonas, Lindqvist Carl M, Ito Go, Dolshanskaya Yewgenia, Halfvarson Jonas, Franke Andre, Hemmrich-Stanisak Georg
Institute of Clinical Molecular Biology, Christian-Albrechts-University of Kiel, DE 24105 Kiel, Germany.
School of Medical Sciences, Faculty of Medicine and Health, Örebro University, SE 70182 Örebro, Sweden.
NAR Genom Bioinform. 2020 Feb 12;2(1):lqaa008. doi: 10.1093/nargab/lqaa008. eCollection 2020 Mar.
Erythroid-specific miR-451a and miR-486-5p are two of the most dominant microRNAs (miRNAs) in human peripheral blood. In small RNA sequencing libraries, their overabundance reduces diversity as well as complexity and consequently causes negative effects such as missing detectability and inaccurate quantification of low abundant miRNAs. Here we present a simple, cost-effective and easy to implement hybridization-based method to deplete these two erythropoietic miRNAs from blood-derived RNA samples. By utilization of blocking oligonucleotides, this method provides a highly efficient and specific depletion of miR-486-5p and miR-451a, which leads to a considerable increase of measured expression as well as detectability of low abundant miRNA species. The blocking oligos are compatible with common 5' ligation-dependent small RNA library preparation protocols, including commercially available kits, such as Illumina TruSeq and Perkin Elmer NEXTflex. Furthermore, the here described method and oligo design principle can be easily adapted to target many other miRNA molecules, depending on context and research question.
红细胞特异性miR-451a和miR-486-5p是人类外周血中两种最主要的微小RNA(miRNA)。在小RNA测序文库中,它们的过量存在会降低多样性和复杂性,从而导致诸如低丰度miRNA检测不到和定量不准确等负面影响。在此,我们提出一种简单、经济高效且易于实施的基于杂交的方法,用于从血液来源的RNA样本中去除这两种红细胞生成相关的miRNA。通过使用封闭寡核苷酸,该方法能高效且特异地去除miR-486-5p和miR-451a,从而显著提高低丰度miRNA物种的测量表达水平及可检测性。这些封闭寡核苷酸与常见的5'连接依赖型小RNA文库制备方案兼容,包括市售试剂盒,如Illumina TruSeq和Perkin Elmer NEXTflex。此外,根据具体情况和研究问题,本文所述方法及寡核苷酸设计原则可轻松适用于靶向许多其他miRNA分子。