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RNA中包含转录后修饰的碱基对的结构格局

Structural landscape of base pairs containing post-transcriptional modifications in RNA.

作者信息

Seelam Preethi P, Sharma Purshotam, Mitra Abhijit

机构信息

Center for Computational Natural Sciences and Bioinformatics, International Institute of Information Technology Hyderabad (IIIT-H), Gachibowli, Hyderabad, Telangana 500032, India.

Computational Biochemistry Laboratory, Department of Chemistry and Centre for Advanced Studies in Chemistry, Panjab University, Chandigarh 160014, India.

出版信息

RNA. 2017 Jun;23(6):847-859. doi: 10.1261/rna.060749.117. Epub 2017 Mar 24.

Abstract

Base pairs involving post-transcriptionally modified nucleobases are believed to play important roles in a wide variety of functional RNAs. Here we present our attempts toward understanding the structural and functional role of naturally occurring modified base pairs using a combination of X-ray crystal structure database analysis, sequence analysis, and advanced quantum chemical methods. Our bioinformatics analysis reveals that despite their presence in all major secondary structural elements, modified base pairs are most prevalent in tRNA crystal structures and most commonly involve guanine or uridine modifications. Further, analysis of tRNA sequences reveals additional examples of modified base pairs at structurally conserved tRNA regions and highlights the conservation patterns of these base pairs in three domains of life. Comparison of structures and binding energies of modified base pairs with their unmodified counterparts, using quantum chemical methods, allowed us to classify the base modifications in terms of the nature of their electronic structure effects on base-pairing. Analysis of specific structural contexts of modified base pairs in RNA crystal structures revealed several interesting scenarios, including those at the tRNA:rRNA interface, antibiotic-binding sites on the ribosome, and the three-way junctions within tRNA. These scenarios, when analyzed in the context of available experimental data, allowed us to correlate the occurrence and strength of modified base pairs with their specific functional roles. Overall, our study highlights the structural importance of modified base pairs in RNA and points toward the need for greater appreciation of the role of modified bases and their interactions, in the context of many biological processes involving RNA.

摘要

涉及转录后修饰核碱基的碱基对被认为在多种功能性RNA中发挥重要作用。在此,我们展示了我们的尝试,即结合X射线晶体结构数据库分析、序列分析和先进的量子化学方法,来理解天然存在的修饰碱基对的结构和功能作用。我们的生物信息学分析表明,尽管修饰碱基对存在于所有主要的二级结构元件中,但它们在tRNA晶体结构中最为普遍,且最常涉及鸟嘌呤或尿嘧啶修饰。此外,对tRNA序列的分析揭示了在结构保守的tRNA区域中修饰碱基对的更多实例,并突出了这些碱基对在生命三个域中的保守模式。使用量子化学方法比较修饰碱基对与其未修饰对应物的结构和结合能,使我们能够根据它们对碱基配对的电子结构效应的性质对碱基修饰进行分类。对RNA晶体结构中修饰碱基对的特定结构背景的分析揭示了几种有趣的情况,包括tRNA:rRNA界面、核糖体上的抗生素结合位点以及tRNA内的三向接头处的情况。当在现有实验数据的背景下分析这些情况时,使我们能够将修饰碱基对的出现和强度与其特定的功能作用相关联。总体而言,我们的研究突出了修饰碱基对在RNA中的结构重要性,并指出在涉及RNA的许多生物过程中,需要更充分地认识修饰碱基及其相互作用的作用。

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