Chu Xiaohua, He Chenyang, Sang Bo, Yang Chaofei, Yin Chong, Ji Mili, Qian Airong, Tian Ye
Lab for Bone Metabolism, Xi'an Key Laboratory of Special Medicine and Health Engineering, Key Lab for Space Biosciences and Biotechnology, Research Center for Special Medicine and Health Systems Engineering, NPU-UAB Joint Laboratory for Bone Metabolism, School of Life Sciences, Northwestern Polytechnical University, Xi'an, SN, China.
Department of Oncology, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Front Cell Dev Biol. 2022 Aug 22;10:954431. doi: 10.3389/fcell.2022.954431. eCollection 2022.
The role of tRNAs is best known as adapter components of translational machinery. According to the central dogma of molecular biology, DNA is transcribed to RNA and in turn is translated into proteins, in which tRNA outstands by its role of the cellular courier. Recent studies have led to the revision of the canonical function of transfer RNAs (tRNAs), which indicates that tRNAs also serve as a source for short non-coding RNAs called tRNA-derived small RNAs (tsRNAs). tsRNAs play key roles in cellular processes by modulating complicated regulatory networks beyond translation and are widely involved in multiple diseases. Herein, the biogenesis and classification of tsRNAs were firstly clarified. tsRNAs are generated from pre-tRNAs or mature tRNAs and are classified into tRNA-derived fragments (tRFs) and tRNA halves (tiRNA). The tRFs include five types according to the incision loci: tRF-1, tRF-2, tRF-3, tRF-5 and i-tRF which contain 3' tiRNA and 5' tiRNA. The functions of tsRNAs and their regulation mechanisms involved in disease processes are systematically summarized as well. The mechanisms can elaborate on the specific regulation of tsRNAs. In conclusion, the current research suggests that tsRNAs are promising targets for modulating pathological processes, such as breast cancer, ischemic stroke, respiratory syncytial virus, osteoporosis and so on, and maintain vital clinical implications in diagnosis and therapeutics of various diseases.
转运RNA(tRNA)的作用最为人熟知的是作为翻译机制的衔接组件。根据分子生物学的中心法则,DNA转录为RNA,进而翻译为蛋白质,其中tRNA作为细胞信使发挥着突出作用。最近的研究导致了对转运RNA(tRNA)经典功能的修正,这表明tRNA也是一种名为tRNA衍生小RNA(tsRNA)的短非编码RNA的来源。tsRNA通过调节翻译以外的复杂调控网络在细胞过程中发挥关键作用,并广泛参与多种疾病。在此,首先阐明了tsRNA的生物发生和分类。tsRNA由前体tRNA或成熟tRNA产生,分为tRNA衍生片段(tRF)和tRNA半体(tiRNA)。根据切割位点,tRF包括五种类型:tRF-1、tRF-2、tRF-3、tRF-5和包含3' tiRNA和5' tiRNA的i-tRF。还系统总结了tsRNA的功能及其在疾病过程中的调控机制。这些机制可以阐述tsRNA的具体调控。总之,目前的研究表明,tsRNA有望成为调节病理过程的靶点,如乳腺癌、缺血性中风、呼吸道合胞病毒、骨质疏松症等,并且在各种疾病的诊断和治疗中具有重要的临床意义。