Keck School of Medicine, University of Southern California, Los Angeles, CA 90089.
Genomics Institute of the Novartis Research Foundation, San Diego, CA 92121.
Proc Natl Acad Sci U S A. 2021 Jan 5;118(1). doi: 10.1073/pnas.2020454118.
The regulatory mechanisms of circadian rhythms have been studied primarily at the level of the transcription-translation feedback loops of protein-coding genes. Regulatory modules involving noncoding RNAs are less thoroughly understood. In particular, emerging evidence has revealed the important role of microRNAs (miRNAs) in maintaining the robustness of the circadian system. To identify miRNAs that have the potential to modulate circadian rhythms, we conducted a genome-wide miRNA screen using U2OS luciferase reporter cells. Among 989 miRNAs in the library, 120 changed the period length in a dose-dependent manner. We further validated the circadian regulatory function of an miRNA cluster, miR-183/96/182, both in vitro and in vivo. We found that all three members of this miRNA cluster can modulate circadian rhythms. Particularly, miR-96 directly targeted a core circadian clock gene, PER2. The knockout of the miR-183/96/182 cluster in mice showed tissue-specific effects on circadian parameters and altered circadian rhythms at the behavioral level. This study identified a large number of miRNAs, including the miR-183/96/182 cluster, as circadian modulators. We provide a resource for further understanding the role of miRNAs in the circadian network and highlight the importance of miRNAs as a genome-wide layer of circadian clock regulation.
昼夜节律的调节机制主要在蛋白质编码基因的转录-翻译反馈环水平上进行研究。涉及非编码 RNA 的调节模块的理解还不够透彻。特别是,新出现的证据揭示了 microRNAs(miRNAs)在维持昼夜节律系统的稳健性方面的重要作用。为了鉴定具有调节昼夜节律潜力的 miRNAs,我们使用 U2OS 荧光素酶报告细胞进行了全基因组 miRNA 筛选。在文库中的 989 个 miRNAs 中,有 120 个以剂量依赖的方式改变了周期长度。我们进一步在体外和体内验证了 miRNA 簇 miR-183/96/182 的昼夜节律调节功能。我们发现这个 miRNA 簇的所有三个成员都可以调节昼夜节律。特别是,miR-96 可以直接靶向核心生物钟基因 PER2。在小鼠中敲除 miR-183/96/182 簇显示出对昼夜参数的组织特异性影响,并在行为水平上改变了昼夜节律。这项研究确定了大量的 miRNAs,包括 miR-183/96/182 簇,作为昼夜节律调节剂。我们提供了一个资源,用于进一步了解 miRNAs 在昼夜节律网络中的作用,并强调了 miRNAs 作为全基因组昼夜节律时钟调节层的重要性。