Czekay Dominic P, Kothe Ute
Department of Chemistry and Biochemistry, Alberta RNA Research and Training Institute, University of Lethbridge, Lethbridge, AB, Canada.
Front Microbiol. 2021 Mar 11;12:654370. doi: 10.3389/fmicb.2021.654370. eCollection 2021.
During ribosome synthesis, ribosomal RNA is modified through the formation of many pseudouridines and methylations which contribute to ribosome function across all domains of life. In archaea and eukaryotes, pseudouridylation of rRNA is catalyzed by H/ACA small ribonucleoproteins (sRNPs) utilizing different H/ACA guide RNAs to identify target uridines for modification. H/ACA sRNPs are conserved in archaea and eukaryotes, as they share a common general architecture and function, but there are also several notable differences between archaeal and eukaryotic H/ACA sRNPs. Due to the higher protein stability in archaea, we have more information on the structure of archaeal H/ACA sRNPs compared to eukaryotic counterparts. However, based on the long history of yeast genetic and other cellular studies, the biological role of H/ACA sRNPs during ribosome biogenesis is better understood in eukaryotes than archaea. Therefore, this review provides an overview of the current knowledge on H/ACA sRNPs from archaea, in particular their structure and function, and relates it to our understanding of the roles of eukaryotic H/ACA sRNP during eukaryotic ribosome synthesis and beyond. Based on this comparison of our current insights into archaeal and eukaryotic H/ACA sRNPs, we discuss what role archaeal H/ACA sRNPs may play in the formation of ribosomes.
在核糖体合成过程中,核糖体RNA通过形成许多假尿苷和甲基化进行修饰,这些修饰对生命所有域中的核糖体功能都有贡献。在古菌和真核生物中,rRNA的假尿苷化由H/ACA小核糖核蛋白(sRNP)催化,利用不同的H/ACA引导RNA来识别用于修饰的靶尿苷。H/ACA sRNP在古菌和真核生物中是保守的,因为它们具有共同的总体结构和功能,但古菌和真核生物的H/ACA sRNP之间也存在一些显著差异。由于古菌中蛋白质稳定性较高,与真核生物对应物相比,我们对古菌H/ACA sRNP的结构有更多了解。然而,基于酵母遗传学和其他细胞研究的悠久历史,与古菌相比,真核生物中H/ACA sRNP在核糖体生物发生过程中的生物学作用得到了更好的理解。因此,本综述概述了目前关于古菌H/ACA sRNP的知识,特别是它们的结构和功能,并将其与我们对真核生物H/ACA sRNP在真核生物核糖体合成及其他过程中的作用的理解联系起来。基于对我们目前对古菌和真核生物H/ACA sRNP的见解的比较,我们讨论了古菌H/ACA sRNP在核糖体形成中可能发挥的作用。