Institute of Organic Chemistry and Biochemistry of the CAS, Prague 6, Czechia.
Department of Cell Biology, Charles University, Faculty of Science, Prague 2, Czechia.
RNA Biol. 2024 Jan;21(1):1-13. doi: 10.1080/15476286.2024.2372138. Epub 2024 Jul 15.
RNA capping is a prominent RNA modification that influences RNA stability, metabolism, and function. While it was long limited to the study of the most abundant eukaryotic canonical mG cap, the field recently went through a large paradigm shift with the discovery of non-canonical RNA capping in bacteria and ultimately all domains of life. The repertoire of non-canonical caps has expanded to encompass metabolite caps, including NAD, FAD, CoA, UDP-Glucose, and ADP-ribose, alongside alarmone dinucleoside polyphosphate caps, and methylated phosphate cap-like structures. This review offers an introduction into the field, presenting a summary of the current knowledge about non-canonical RNA caps. We highlight the often still enigmatic biological roles of the caps together with their processing enzymes, focusing on the most recent discoveries. Furthermore, we present the methods used for the detection and analysis of these non-canonical RNA caps and thus provide an introduction into this dynamic new field.
RNA 加帽是一种重要的 RNA 修饰,影响 RNA 的稳定性、代谢和功能。虽然它长期以来仅限于对最丰富的真核生物典型 mG 帽的研究,但随着细菌中非典型 RNA 加帽的发现,最终在所有生命领域都发现了这一现象,该领域最近发生了重大范式转变。非典型加帽的范围已经扩大到包括代谢物加帽,如 NAD、FAD、CoA、UDP-葡萄糖和 ADP-核糖,以及警报素二核苷酸多磷酸帽和甲基化磷酸帽样结构。这篇综述对该领域进行了介绍,概述了目前关于非典型 RNA 帽的知识。我们强调了这些帽及其加工酶的生物学作用,重点介绍了最近的发现。此外,我们还介绍了用于检测和分析这些非典型 RNA 帽的方法,从而对这个充满活力的新领域进行了介绍。