Cancer Research UK Nucleic Acid Structure Research Group, MSI/WTB Complex, The University of Dundee, Dundee, UK.
Wiley Interdiscip Rev RNA. 2021 Sep;12(5):e1651. doi: 10.1002/wrna.1651. Epub 2021 May 5.
It is commonly thought that in the early development of life on this planet RNA would have acted both as a store of genetic information and as a catalyst. While a number of RNA enzymes are known in contemporary cells, they are largely confined to phosphoryl transfer reactions, whereas an RNA based metabolism would have required a much greater chemical diversity of catalysis. Here we discuss how RNA might catalyze a wider variety of chemistries, and particularly how information gleaned from riboswitches could suggest how ribozymes might recruit coenzymes to expand their chemical range. We ask how we might seek such activities in modern biology. This article is categorized under: RNA-Based Catalysis > Miscellaneous RNA-Catalyzed Reactions Regulatory RNAs/RNAi/Riboswitches > Riboswitches RNA Structure and Dynamics > RNA Structure, Dynamics and Chemistry.
人们普遍认为,在这个星球上生命早期的发展过程中,RNA 既可以作为遗传信息的储存库,也可以作为催化剂。虽然现代细胞中已经发现了一些 RNA 酶,但它们主要局限于磷酸转移反应,而基于 RNA 的新陈代谢则需要更多样化的催化化学反应。在这里,我们讨论了 RNA 如何催化更广泛的化学变化,特别是从核糖开关中获得的信息如何表明核酶如何招募辅酶来扩大它们的化学范围。我们还探讨了在现代生物学中如何寻找这些活性。本文属于以下分类:RNA 催化 > 其他 RNA 催化反应 调控 RNA/RNAi/核糖开关 > 核糖开关 RNA 结构和动态 > RNA 结构、动态和化学。