College of Science, Mathematics and Technology, Wenzhou-Kean University, Wenzhou, 325060, China.
Wenzhou Institute, The University of Chinese Academy of Science, Wenzhou, 325001, China.
Funct Integr Genomics. 2024 Nov 18;24(6):217. doi: 10.1007/s10142-024-01494-w.
An increasing number of non-coding RNAs (ncRNAs) are found to have roles in gene expression and cellular regulations. However, there are still a large number of ncRNAs whose functions remain to be studied. Despite decades of research, the field continues to evolve, with each newly identified ncRNA undergoing processes such as biogenesis, identification, and functional annotation. Bioinformatics methodologies, alongside traditional biochemical experimental methods, have played an important role in advancing ncRNA research across various stages. Presently, over 50 types of ncRNAs have been characterized, each exhibiting diverse functions. However, there remains a need for standardization and integration of these ncRNAs within a unified framework. In response to this gap, this review traces the historical trajectory of ncRNA research and proposes a unified notation system. Additionally, we comprehensively elucidate the ncRNA interactome, detailing its associations with DNAs, RNAs, proteins, complexes, and chromatin. A web portal named ncRNA Hub ( https://bis.zju.edu.cn/nchub/ ) is also constructed to provide detailed notations of ncRNAs and share a collection of bioinformatics resources. This review aims to provide a broader perspective and standardized paradigm for advancing ncRNA research.
越来越多的非编码 RNA(ncRNA)被发现具有基因表达和细胞调控的作用。然而,仍有大量的 ncRNA 的功能有待研究。尽管经过几十年的研究,该领域仍在不断发展,每个新鉴定的 ncRNA 都要经过生物发生、鉴定和功能注释等过程。生物信息学方法与传统的生化实验方法一起,在 ncRNA 研究的各个阶段都发挥了重要作用。目前,已经有超过 50 种 ncRNA 被鉴定出来,每种都具有不同的功能。然而,仍然需要在统一的框架内对这些 ncRNA 进行标准化和整合。针对这一差距,本综述追溯了 ncRNA 研究的历史轨迹,并提出了一个统一的符号系统。此外,我们还全面阐述了 ncRNA 相互作用组,详细描述了它与 DNA、RNA、蛋白质、复合物和染色质的关联。还构建了一个名为 ncRNA Hub(https://bis.zju.edu.cn/nchub/)的网络门户,提供 ncRNA 的详细符号和共享一系列生物信息学资源。本综述旨在为推进 ncRNA 研究提供更广泛的视角和标准化范式。