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A single anti-microRNA antisense oligodeoxyribonucleotide (AMO) targeting multiple microRNAs offers an improved approach for microRNA interference

机译:靶向多个microRNA的单个抗microRNA反义寡聚脱氧核糖核苷酸(AMO)为microRNA干扰提供了一种改进的方法

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摘要

Anti-miRNA antisense inhibitors (AMOs) have demonstrated their utility in miRNA research and potential in miRNA therapy. Here we report a modified AMO approach in which multiple antisense units are engineered into a single unit that is able to simultaneously silence multiple-target miRNAs, the multiple-target AMO or MTg-AMO. We validated the technique with two separate MTg-AMOs: anti-miR-21/anti-miR-155/anti-miR-17-5p and anti-miR-1/anti-miR-133. We first verified the ability of the MTg-AMOs to antagonize the repressive actions of their target miRNAs using luciferase reporter activity assays and to specifically knock down the levels of their target miRNAs using real-time RT-PCR methods. We then used the MTg-AMO approach to identify several tumor suppressors—TGFBI, APC and BCL2L11 as the target genes for oncogenic miR-21, miR-155 and miR-17-5p, respectively, and two cardiac ion channel genes HCN2 (encoding a subunit of cardiac pacemaker channel) and CACNA1C (encoding the α-subunit of cardiac L-type Ca2+ channel) for the muscle-specific miR-1 and miR-133. We further demonstrated that the MTg-AMO targeting miR-21, miR-155 and miR-17-5p produced a greater inhibitory effect on cancer cell growth, compared with the regular single-target AMOs. Moreover, while using the regular single-target AMOs excluded HCN2 as a target gene for either miR-1 or miR-133, the MTg-AMO approach is able to reveal HCN2 as the target for both miR-1 and miR-133. Our findings suggest the MTg-AMO as an improved approach for miRNA target finding and for studying function of miRNAs. This approach may find its broad application for exploring biological processes involving multiple miRNAs and multiple genes.
机译:抗miRNA反义抑制剂(AMO)已证明其在miRNA研究中的实用性以及在miRNA治疗中的潜力。在这里,我们报告了一种改良的AMO方法,其中将多个反义单元工程化为一个单元,该单元能够同时沉默多靶点miRNA,多靶点AMO或MTg-AMO。我们用两个独立的MTg-AMO验证了该技术:抗miR-21 /抗miR-155 /抗miR-17-5p和抗miR-1 /抗miR-133。我们首先验证了萤光素酶报道分子活性测定法MTg-AMOs拮抗其靶标miRNA的抑制作用,并使用实时RT-PCR方法特异性敲低其靶标miRNA的能力。然后,我们使用MTg-AMO方法确定了几种肿瘤抑制因子-TGFBI,APC和BCL2L11分别作为致癌miR-21,miR-155和miR-17-5p的靶基因,以及两个心脏离子通道基因HCN2(编码心脏特异的miR-1和miR-133的心脏起搏器通道的一个亚基)和CACNA1C(编码心脏L型Ca2 +通道的α-亚基)。我们进一步证明,与常规的单靶AMO相比,靶向mig-21,miR-155和miR-17-5p的MTg-AMO对癌细胞的生长产生更大的抑制作用。此外,尽管使用排除HCN2的常规单靶AMO作为miR-1或miR-133的靶基因,MTg-AMO方法却能够揭示HCN2作为miR-1和miR-133的靶。我们的研究结果表明MTg-AMO是一种用于miRNA目标发现和研究miRNA功能的改进方法。该方法可广泛用于探索涉及多个miRNA和多个基因的生物过程。

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