Zirbel Craig L, Sponer Judit E, Sponer Jiri, Stombaugh Jesse, Leontis Neocles B
Department of Mathematics and Statistics, Center for Biomolecular Sciences, Bowling Green State University, Bowling Green, OH 43403, USA.
Nucleic Acids Res. 2009 Aug;37(15):4898-918. doi: 10.1093/nar/gkp468. Epub 2009 Jun 14.
Structured RNA molecules form complex 3D architectures stabilized by multiple interactions involving the nucleotide base, sugar and phosphate moieties. A significant percentage of the bases in structured RNA molecules in the Protein Data Bank (PDB) hydrogen-bond with phosphates of other nucleotides. By extracting and superimposing base-phosphate (BPh) interactions from a reduced-redundancy subset of 3D structures from the PDB, we identified recurrent phosphate-binding sites on the RNA bases. Quantum chemical calculations were carried out on model systems representing each BPh interaction. The calculations show that the centers of each cluster obtained from the structure superpositions correspond to energy minima on the potential energy hypersurface. The calculations also show that the most stable phosphate-binding sites occur on the Watson-Crick edge of guanine and the Hoogsteen edge of cytosine. We modified the 'Find RNA 3D' (FR3D) software suite to automatically find and classify BPh interactions. Comparison of the 3D structures of the 16S and 23S rRNAs of Escherichia coli and Thermus thermophilus revealed that most BPh interactions are phylogenetically conserved and they occur primarily in hairpin, internal or junction loops or as part of tertiary interactions. Bases that form BPh interactions, which are conserved in the rRNA 3D structures are also conserved in homologous rRNA sequence alignments.
结构化RNA分子形成复杂的三维结构,这些结构通过涉及核苷酸碱基、糖和磷酸基团的多重相互作用得以稳定。蛋白质数据库(PDB)中结构化RNA分子的很大一部分碱基与其他核苷酸的磷酸基团形成氢键。通过从PDB的三维结构的低冗余子集中提取并叠加碱基-磷酸(BPh)相互作用,我们在RNA碱基上确定了反复出现的磷酸结合位点。对代表每种BPh相互作用的模型系统进行了量子化学计算。计算结果表明,从结构叠加中获得的每个簇的中心对应于势能超曲面上的能量最小值。计算还表明,最稳定的磷酸结合位点出现在鸟嘌呤的沃森-克里克边缘和胞嘧啶的 hoogsteen 边缘。我们修改了“Find RNA 3D”(FR3D)软件套件,以自动查找和分类BPh相互作用。对大肠杆菌和嗜热栖热菌的16S和23S rRNA的三维结构进行比较后发现,大多数BPh相互作用在系统发育上是保守的,它们主要发生在发夹环、内部环或连接环中,或者作为三级相互作用的一部分。在rRNA三维结构中形成BPh相互作用的碱基在同源rRNA序列比对中也保守。