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富含骨骼肌的 microRNA 在体内极不稳定,可能以一种非依赖 Dicer 的方式进行调控。

Skeletal muscle-enriched miRNAs are highly unstable in vivo and may be regulated in a Dicer-independent manner.

机构信息

Laboratory of Muscle Biology, Faculty of Sport Sciences, Waseda University, Tokorozawa, Japan.

Waseda Institute for Sport Sciences, Waseda University, Tokorozawa, Japan.

出版信息

FEBS J. 2023 Dec;290(24):5692-5703. doi: 10.1111/febs.16917. Epub 2023 Aug 11.

DOI:10.1111/febs.16917
PMID:37525425
Abstract

MicroRNAs (miRNAs) are small noncoding RNAs that control essential cellular processes. For several decades, the molecular mechanisms underlying the functions and biogenesis of miRNAs have been clarified, whereas the molecular dynamics of miRNAs are poorly understood. We recently found that muscle-enriched miRNAs were reduced by only 20 ~ 50% in the skeletal muscles even 4 weeks after the suppression of miRNA processing through an inducible depletion of Dicer1 gene. These data suggest that miRNAs are stably expressed in skeletal muscle. In this study, we investigated the half-lives of those miRNAs in adult skeletal muscle with an in vivo metabolic labeling strategy and a genetic mouse model. In contrast to the hypothesis, in vivo metabolic labeling revealed that the half-lives of skeletal-muscle-enriched miRNAs were approximately 11-20 h. Furthermore, the levels of mature miR-23a decreased rapidly in the skeletal muscle of mice lacking miR-23 clusters in a tamoxifen-inducible manner. These data suggest that skeletal-muscle-enriched miRNAs are not highly stable in vivo. We also observed that the transfer of miR-150 into Dicer1-deficient muscle increased the miR-150 level to the same as that in control muscle. Taken together, our data demonstrate that miRNAs are degraded within a few days in adult skeletal muscle and that a Dicer-independent biogenetic pathway may produce mature miRNAs.

摘要

MicroRNAs (miRNAs) 是一类小的非编码 RNA,可调控重要的细胞过程。几十年来,miRNA 功能和生物发生的分子机制已经得到阐明,而 miRNA 的分子动力学仍知之甚少。我们最近发现,通过诱导型敲除 Dicer1 基因抑制 miRNA 加工,骨骼肌中肌肉特异性 miRNA 的表达水平仅降低 20%~50%,这表明 miRNA 在骨骼肌中稳定表达。在这项研究中,我们利用体内代谢标记策略和遗传小鼠模型研究了这些 miRNA 在成年骨骼肌中的半衰期。与假设相反,体内代谢标记显示,富含骨骼肌的 miRNA 的半衰期约为 11-20 小时。此外,在缺乏 miR-23 簇的小鼠中,以他莫昔芬诱导的方式,成熟的 miR-23a 在骨骼肌中的水平迅速下降。这些数据表明,富含骨骼肌的 miRNA 在体内并不稳定。我们还观察到,将 miR-150 转染到 Dicer1 缺陷的肌肉中,可将 miR-150 水平提高到与对照肌肉相同的水平。综上所述,我们的数据表明,miRNA 在成年骨骼肌中可在几天内降解,而非依赖 Dicer 的生物发生途径可能会产生成熟的 miRNA。

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