Division of Cell Matrix Biology and Regenerative Medicine, Faculty of Biology Medicine and Health, University of Manchester, Manchester M13 9PT, United Kingdom.
Skeletal Research Group, Biosciences Institute, Newcastle University, Newcastle upon Tyne NE1 3BZ, United Kingdom.
RNA. 2020 Nov;26(11):1575-1588. doi: 10.1261/rna.075176.120. Epub 2020 Jul 13.
miR-140 is selectively expressed in cartilage. Deletion of the entire locus in mice results in growth retardation and early-onset osteoarthritis-like pathology; however, the relative contribution of miR-140-5p or miR-140-3p to the phenotype remains to be determined. An unbiased small RNA sequencing approach identified miR-140-3p as significantly more abundant (>10-fold) than miR-140-5p in human cartilage. Analysis of these data identified multiple miR-140-3p isomiRs differing from the miRBase annotation at both the 5' and 3' end, with >99% having one of two seed sequences (5' bases 2-8). Canonical (miR-140-3p.2) and shifted (miR-140-3p.1) seed isomiRs were overexpressed in chondrocytes and transcriptomics performed to identify targets. miR-140-3p.1 and miR-140-3p.2 significantly down-regulated 694 and 238 genes, respectively, of which only 162 genes were commonly down-regulated. IsomiR targets were validated using 3'UTR luciferase assays. miR-140-3p.1 targets were enriched within up-regulated genes in rib chondrocytes of -null mice and within down-regulated genes during human chondrogenesis. Finally, through imputing the expression of miR-140 from the expression of the host gene in 124 previously published data sets, an inverse correlation with miR-140-3p.1 predicted targets was identified. Together these data suggest the novel seed containing isomiR miR-140-3p.1 is more functional than original consensus miR-140-3p seed containing isomiR.
miR-140 特异性表达于软骨。在小鼠中,整个 基因座的缺失会导致生长迟缓和早期骨关节炎样病变;然而,miR-140-5p 或 miR-140-3p 对表型的相对贡献仍有待确定。一种无偏的小 RNA 测序方法表明,miR-140-3p 在人软骨中的丰度明显高于 miR-140-5p(>10 倍)。对这些数据的分析表明,与 miRBase 注释相比,miR-140-3p 存在多个差异 3'端的异构体,其中>99%的异构体具有两种种子序列之一(5'端的第 2-8 个碱基)。经典(miR-140-3p.2)和移位(miR-140-3p.1)种子的异构体在软骨细胞中过表达,并进行转录组学分析以鉴定靶标。miR-140-3p.1 和 miR-140-3p.2 分别显著下调了 694 个和 238 个基因,其中只有 162 个基因共同下调。使用 3'UTR 荧光素酶测定法验证了异构体的靶标。miR-140-3p.1 的靶标在 -null 小鼠的肋软骨中上调基因和人类软骨发生过程中下调基因中富集。最后,通过在 124 个先前发表的数据集中推断 miR-140 的表达,发现与 miR-140-3p.1 预测靶标呈负相关。总之,这些数据表明,新型种子包含的异构体 miR-140-3p.1 比原始共识 miR-140-3p 种子包含的异构体更具功能。