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小分子核 RNA 的修饰及其在剪接体组装和功能中的作用。

Modifications in small nuclear RNAs and their roles in spliceosome assembly and function.

机构信息

Department of Molecular Biology, University Medical Center Göttingen, Humboldtallee 23, D-37073 Göttingen, Germany.

Göttingen Centre for Molecular Biosciences, Georg August University, Justus-von-Liebig-Weg 11, D-37077 Göttingen, Germany.

出版信息

Biol Chem. 2018 Oct 25;399(11):1265-1276. doi: 10.1515/hsz-2018-0205.

Abstract

Modifications in cellular RNAs have emerged as key regulators of all aspects of gene expression, including pre-mRNA splicing. During spliceosome assembly and function, the small nuclear RNAs (snRNAs) form numerous dynamic RNA-RNA and RNA-protein interactions, which are required for spliceosome assembly, correct positioning of the spliceosome on substrate pre-mRNAs and catalysis. The human snRNAs contain several base methylations as well as a myriad of pseudouridines and 2'-O-methylated nucleotides, which are largely introduced by small Cajal body-specific ribonucleoproteins (scaRNPs). Modified nucleotides typically cluster in functionally important regions of the snRNAs, suggesting that their presence could optimise the interactions of snRNAs with each other or with pre-mRNAs, or may affect the binding of spliceosomal proteins. snRNA modifications appear to play important roles in snRNP biogenesis and spliceosome assembly, and have also been proposed to influence the efficiency and fidelity of pre-mRNA splicing. Interestingly, alterations in the modification status of snRNAs have recently been observed in different cellular conditions, implying that some snRNA modifications are dynamic and raising the possibility that these modifications may fine-tune the spliceosome for particular functions. Here, we review the current knowledge on the snRNA modification machinery and discuss the timing, functions and dynamics of modifications in snRNAs.

摘要

细胞 RNA 的修饰已成为基因表达各个方面的关键调节剂,包括前体 mRNA 的剪接。在剪接体组装和功能中,小核 RNA(snRNA)形成许多动态的 RNA-RNA 和 RNA-蛋白质相互作用,这些相互作用对于剪接体组装、剪接体在底物前体 mRNA 上的正确定位和催化都是必需的。人类 snRNA 含有几个碱基甲基化以及无数的假尿嘧啶和 2'-O-甲基化核苷酸,这些主要由小 Cajal 体特异性核蛋白(scaRNP)引入。修饰核苷酸通常聚集在 snRNA 的功能重要区域,这表明它们的存在可以优化 snRNA 之间或与前体 mRNA 之间的相互作用,或者可能影响剪接体蛋白的结合。snRNA 修饰似乎在 snRNP 生物发生和剪接体组装中发挥重要作用,并且还被提议影响前体 mRNA 剪接的效率和保真度。有趣的是,最近在不同的细胞条件下观察到 snRNA 修饰状态的改变,这意味着一些 snRNA 修饰是动态的,并提出了这些修饰可能微调剪接体以适应特定功能的可能性。在这里,我们综述了 snRNA 修饰机制的最新知识,并讨论了 snRNA 修饰的时间、功能和动态。

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