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On the role of Hoogsteen:Hoogsteen interactions in RNA: Ab initio investigations of structures and energies

机译:关于Hoogsteen的作用:RNA中的Hoogsteen相互作用:从头开始研究结构和能量

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摘要

We use a combination of database analysis and quantum chemical studies to investigate the role of cis and trans Hoogsteen:Hoogsteen (H:H) base pairs and associated higher-order structures in RNA. We add three new examples to the list of previously identified base-pair combinations belonging to these families and, in addition to contextual classification and characterization of their structural and energetic features, we compare their interbase interaction energies and propensities toward participation in triplets and quartets. We find that some base pairs, which are nonplanar in their isolated minimum energy geometries, attain planarity and stability upon triplet formation. A:A H:H trans is the most frequent H:H combination in RNA structures. This base pair occurs at many distinct positions in known rRNA structures, where it helps in the interaction of ribosomal domains in the 50S subunit. It is also present as a part of tertiary interaction in tRNA structures. Although quantum chemical studies suggest an intrinsically nonplanar geometry for this base pair in isolated form, it has the tendency to attain planar geometry in RNA crystal structures by forming higher-order tertiary interactions or in the presence of additional base–phosphate interactions. The tendency of this base pair to form such additional interactions may be helpful in bringing together different segments of RNA, thus making it suitable for the role of facilitator for RNA folding. This also explains the high occurrence frequency of this base pair among all H:H interactions.
机译:我们结合使用数据库分析和量子化学研究来研究顺式和反式Hoogsteen:Hoogsteen(H:H)碱基对以及相关的RNA高阶结构的作用。我们将三个新示例添加到属于这些家族的先前确定的碱基对组合的列表中,并且除了根据上下文对其结构和能量特征进行分类和表征之外,我们还比较了它们的碱基间相互作用能和参与三联体和四重奏的倾向。我们发现,某些碱基对在其孤立的最小能量几何结构中是非平面的,在形成三重态时可获得平面性和稳定性。答:H:H反式是RNA结构中最常见的H:H组合。该碱基对出现在已知rRNA结构的许多不同位置,在此有助于50S亚基中核糖体结构域的相互作用。它也作为tRNA结构中三级相互作用的一部分存在。尽管量子化学研究表明该碱基对以孤立形式存在本质上非平面的几何形状,但它倾向于通过形成更高阶的三级相互作用或存在额外的碱-磷酸盐相互作用而在RNA晶体结构中获得平面几何形状。该碱基对形成这种额外相互作用的趋势可能有助于将RNA的不同片段聚集在一起,从而使其适合于RNA折叠的促进剂的作用。这也解释了所有H:H相互作用中该碱基对的高发生频率。

著录项

  • 来源
    《RNA》 |2010年第5期|942-957|共16页
  • 作者单位

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

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

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

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

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hoogsteen; RNA base pairing; gas phase optimizations; quartets; tRNA;

    机译:Hoogsteen;RNA碱基配对;气相优化;四元组;tRNA;

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