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RNA structural motifs that entail hydrogen bonds involving sugar-phosphate backbone atoms of RNA

机译:RNA结构基序,其中氢键涉及RNA的糖-磷酸主链原子

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The growing number of high-resolution crystal structures of large RNA molecules provides much information for understanding the principles of structural organization of these complex molecules. Several in-depth analyses of nucleobase-centered RNA structural motifs and backbone conformations have been published based on this information, including a systematic classification of base pairs by Leontis and Westhof. However, hydrogen bonds involving sugar-phosphate backbone atoms of RNA have not been analyzed systematically until recently, although such hydrogen bonds appear to be common both in local and tertiary interactions. Here we review some backbone structural motifs discussed in the literature and analyze a set of eight high-resolution multi-domain RNA structures. The analyzed RNAs are highly structured: among 5372 nucleotides in this set, 89% are involved in at least one "long-range" RNA-RNA hydrogen bond, i.e., hydrogen bonds between atoms in the same residue or sequential residues are ignored. These long-range hydrogen bonds frequently use backbone atoms as hydrogen bond acceptors, i.e., OP1, OP2,O2', O3', O4', or O5', or as a donor (2'OH). A surprisingly large number of such hydrogen bonds are found, considering that neither single-stranded nor double-stranded regions will contain such hydrogen bonds unless additional interactions with other residues exist. Among 8327 long-range hydrogen bonds found in this set of structures, 2811, or about one-third, are hydrogen bonds entailing RNA backbone atoms; they involve 39% of all nucleotides in the structures. The majority of them (2111) are hydrogen bonds entailing ribose hydroxyl groups, which can be used either as a donor or an acceptor; they constitute 25% of all hydrogen bonds and involve 31% of all nucleotides. The phosphate oxygens OP1 or OP2 are used as hydrogen bond acceptors in 12% of all nucleotides, and the ribose ring oxygen O4' and phosphodiester oxygens O3' and O5' are used in 4%, 4%, and 1% of all nucleotides, respectively. Distributions of geometric parameters and some examples of such hydrogen bonds are presented in this report. A novel motif involving backbone hydrogen bonds, the ribose-phosphate zipper, is also identified.
机译:大分子RNA的高分辨率晶体结构的数量不断增加,为理解这些复杂分子的结构原理提供了很多信息。基于此信息,已经发表了对以核碱基为中心的RNA结构基序和骨架构象的一些深入分析,包括Leontis和Westhof对碱基对的系统分类。然而,直到最近,涉及RNA的糖-磷酸主链原子的氢键仍未得到系统的分析,尽管这种氢键在局部和第三级相互作用中似乎是共同的。在这里,我们回顾一些文献中讨论的骨架结构基序,并分析一组八个高分辨率多域RNA结构。分析的RNA高度结构化:在该组的5372个核苷酸中,有89%参与至少一个“远程” RNA-RNA氢键,即,相同残基或连续残基中原子之间的氢键被忽略。这些长距离氢键经常使用骨架原子作为氢键受体,即OP1,OP2,O2',O3',O4'或O5',或用作供体(2'OH)。考虑到除非不存在与其他残基的另外的相互作用,否则考虑到单链和双链区域都不会包含这样的氢键,因此发现了令人惊讶地大量的此类氢键。在这套结构中发现的8327个远程氢键中,有2811个(约三分之一)是需要RNA主链原子的氢键;它们涉及结构中所有核苷酸的39%。它们中的大多数(2111)是带有核糖羟基的氢键,既可以用作供体也可以用作受体。它们占所有氢键的25%,占所有核苷酸的31%。磷酸氧OP1或OP2被用作所有核苷酸的12%的氢键受体,核糖环氧O4'和磷酸二酯氧O3'和O5'被用于所有核苷酸的4%,4%和1%,分别。本报告介绍了几何参数的分布以及此类氢键的一些示例。还确定了涉及骨架氢键的新颖基序,即核糖-磷酸拉链。

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