Key Laboratory of Carcinogenesis and Cancer Invasion, Ministry of Education, Xiangya Hospital, Central South University, 87 Xiangya Road, Changsha, Hunan, 410008, China.
Key Laboratory of Carcinogenesis, Ministry of Education, Cancer Research Institute, School of Basic Medicine, Central South University, 110 Xiangya Road, Changsha, Hunan, 410078, China.
Mol Cancer. 2018 Feb 22;17(1):64. doi: 10.1186/s12943-018-0765-5.
MicroRNAs (miRNAs) are endogenous non-coding RNAs that contain approximately 22 nucleotides. They serve as key regulators in various biological processes and their dysregulation is implicated in many diseases including cancer and autoimmune disorders. It has been well established that the maturation of miRNAs occurs in the cytoplasm and miRNAs exert post-transcriptional gene silencing (PTGS) via RNA-induced silencing complex (RISC) pathway in the cytoplasm. However, numerous studies reaffirm the existence of mature miRNA in the nucleus, and nucleus-cytoplasm transport mechanism has also been illustrated. Moreover, active regulatory functions of nuclear miRNAs were found including PTGS, transcriptional gene silencing (TGS), and transcriptional gene activation (TGA), in which miRNAs bind nascent RNA transcripts, gene promoter regions or enhancer regions and exert further effects via epigenetic pathways. Based on existing interaction rules, some miRNA binding sites prediction software tools are developed, which are evaluated in this article. In addition, we attempt to explore and review the nuclear functions of miRNA in immunity, tumorigenesis and invasiveness of tumor. As a non-canonical aspect of miRNA action, nuclear miRNAs supplement miRNA regulatory networks and could be applied in miRNA based therapies.
微小 RNA(miRNA)是含有约 22 个核苷酸的内源性非编码 RNA。它们在各种生物过程中作为关键调节剂发挥作用,其失调与许多疾病有关,包括癌症和自身免疫性疾病。已经证实 miRNA 的成熟发生在细胞质中,并且 miRNA 通过细胞质中的 RNA 诱导沉默复合物(RISC)途径发挥转录后基因沉默(PTGS)作用。然而,许多研究再次证实了成熟 miRNA 存在于细胞核中,并且已经阐明了核质转运机制。此外,还发现了核 miRNA 的活跃调节功能,包括 PTGS、转录基因沉默(TGS)和转录基因激活(TGA),其中 miRNA 与新生 RNA 转录物、基因启动子区域或增强子区域结合,并通过表观遗传途径发挥进一步的作用。基于现有的相互作用规则,开发了一些 miRNA 结合位点预测软件工具,并在本文中进行了评估。此外,我们试图探索和综述 miRNA 在免疫、肿瘤发生和肿瘤侵袭中的核功能。作为 miRNA 作用的非典型方面,核 miRNA 补充了 miRNA 调控网络,并可应用于 miRNA 为基础的治疗。