Azeem Sayma, Aritonang Imelda Margaretha, Peng Chi, Huang Yi-Shuian
Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan.
Taiwan International Graduate Program in Interdisciplinary Neuroscience, National Yang-Ming Chiao Tung University and Academia Sinica, Taipei, Taiwan.
Wiley Interdiscip Rev RNA. 2025 May-Jun;16(3):e70018. doi: 10.1002/wrna.70018.
Since the discovery of pseudouridine in the 1950s, the field of epitranscriptomics has expanded substantially, with over 330 RNA modifications now documented in the MODOMICS database. Among these, 2'-O-ribose methylation (2'-O-Me) is a prevalent modification characterized by the addition of a methyl group to the 2'-hydroxyl position of the ribose sugar, irrespective of the nucleotide bases. Initially detected in ribosomal RNA (rRNA), transfer RNA (tRNA), and messenger RNA (mRNA) in the 1970s, the methyltransferases responsible for 2'-O-Me were subsequently identified starting in the 1980s. Advancements in transcriptome-wide mapping techniques have since enabled precise identification of 2'-O-Me sites across various RNA species. Functional studies using knockdown or knockout models of specific 2'-O-Me methyltransferases have further elucidated their roles in different physiological processes. Notably, dysregulation of 2'-O-Me has been implicated in human diseases, including cancers and neurological disorders, underscoring its significance in controlling cellular homeostasis. This review covers the catalytic mechanisms and molecular functions of 2'-O-Me in different RNA species, discusses its physiological importance, and highlights the methods for transcriptome-wide mapping of this modification.
自20世纪50年代假尿苷被发现以来,表观转录组学领域得到了极大的扩展,目前MODOMICS数据库中已记录了超过330种RNA修饰。其中,2'-O-核糖甲基化(2'-O-Me)是一种普遍存在的修饰,其特征是在核糖的2'-羟基位置添加一个甲基,与核苷酸碱基无关。20世纪70年代,人们最初在核糖体RNA(rRNA)、转运RNA(tRNA)和信使RNA(mRNA)中检测到2'-O-Me,随后在20世纪80年代开始鉴定负责2'-O-Me的甲基转移酶。此后,转录组范围映射技术的进步使得能够精确鉴定各种RNA物种中的2'-O-Me位点。使用特定2'-O-Me甲基转移酶的敲低或敲除模型进行的功能研究进一步阐明了它们在不同生理过程中的作用。值得注意的是,2'-O-Me的失调与包括癌症和神经疾病在内的人类疾病有关,这突出了其在控制细胞稳态中的重要性。本综述涵盖了2'-O-Me在不同RNA物种中的催化机制和分子功能,讨论了其生理重要性,并重点介绍了该修饰的转录组范围映射方法。