Ma Jiani, Zhang Lin, Chen Shutao, Liu Hui
Engineering Research Center of Intelligent Control for Underground Space, Ministry of Education, China University of Mining and Technology, Xuzhou 221116, China; School of Information and Control Engineering, China University of Mining and Technology, Xuzhou 221116, China.
Engineering Research Center of Intelligent Control for Underground Space, Ministry of Education, China University of Mining and Technology, Xuzhou 221116, China; School of Information and Control Engineering, China University of Mining and Technology, Xuzhou 221116, China.
Methods. 2022 Jul;203:342-353. doi: 10.1016/j.ymeth.2021.03.003. Epub 2021 Mar 8.
To date, over 150 different RNA modifications have been identified, playing crucial roles in biological processes and disease pathogenesis. Thanks to the advancement of high-throughput sequencing technologies employed for transcriptome-wide mapping, a bunch of RNA modification databases have emerged as an exciting area, which promotes further investigation of the mechanisms and functions of these modified ribonucleotides. This article introduces the high-throughput sequencing technique developed for transcriptome-wide mapping of RNA modifications, as well as the procedures and main techniques of building these databases from the developers' perspective. It also reviews existing RNA modification databases in terms of their main functions, species, the number of sites they collected, the annotations, and the tools they provided. From the view of users, we further analyze and compare these databases in terms of their functions. For instance, these databases can be applied to record chemical structures and biosynthetic pathways, or unravel the epi-transcriptome comprehensively, or only investigate specific features of RNA modifications. Additionally, the limitations of the existing approaches are discussed, and some future suggestions are offered.
迄今为止,已鉴定出150多种不同的RNA修饰,它们在生物过程和疾病发病机制中发挥着关键作用。由于用于全转录组图谱绘制的高通量测序技术的进步,一大批RNA修饰数据库应运而生,成为一个令人兴奋的领域,促进了对这些修饰核糖核苷酸的机制和功能的进一步研究。本文介绍了用于RNA修饰全转录组图谱绘制的高通量测序技术,以及从开发者角度构建这些数据库的程序和主要技术。还从现有RNA修饰数据库的主要功能、物种、收集的位点数量、注释以及提供的工具等方面进行了综述。从用户的角度,我们进一步从功能方面分析和比较了这些数据库。例如,这些数据库可用于记录化学结构和生物合成途径,或全面解析表观转录组,或仅研究RNA修饰的特定特征。此外,还讨论了现有方法的局限性,并提出了一些未来建议。