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Structural Variation and Uniformity among Tetraloop-Receptor Interactions and Other Loop-Helix Interactions in RNA Crystal Structures

机译:结构变化和均匀性四环 - 受体相互作用和其他环 - 螺旋相互作用在RNa晶体结构中

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摘要

Tetraloop-receptor interactions are prevalent structural units in RNAs, and include the GAAA/11-nt and GNRA-minor groove interactions. In this study, we have compiled a set of 78 nonredundant loop-helix interactions from X-ray crystal structures, and examined them for the extent of their sequence and structural variation. Of the 78 interactions in the set, only four were classical GAAA/11-nt motifs, while over half (48) were GNRA-minor groove interactions. The GNRA-minor groove interactions were not a homogeneous set, but were divided into five subclasses. The most predominant subclass is characterized by two triple base pair interactions in the minor groove, flanked by two ribose zipper contacts. This geometry may be considered the “standard” GNRA-minor groove interaction, while the other four subclasses are alternative ways to form interfaces between a minor groove and tetraloop. The remaining 26 structures in the set of 78 have loops interacting with mostly idiosyncratic receptors. Among the entire set, a number of sequence-structure correlations can be identified, which may be used as initial hypotheses in predicting three-dimensional structures from primary sequences. Conversely, other sequence patterns are not predictive; for example, GAAA loop sequences and GG/CC receptors bind to each other with three distinct geometries. Finally, we observe an example of structural evolution in group II introns, in which loop-receptor motifs are substituted for each other while maintaining the larger three-dimensional geometry. Overall, the study gives a more complete view of RNA loop-helix interactions that exist in nature.
机译:四环-受体相互作用是RNA中的普遍结构单元,包括GAAA / 11-nt和GNRA-小沟相互作用。在这项研究中,我们从X射线晶体结构中收集了78个非冗余的环-螺旋相互作用,并检查了它们的序列和结构变异程度。在该组的78种相互作用中,只有4种是经典的GAAA / 11-nt图案,而一半以上(48)是GNRA小沟相互作用。 GNRA-小沟相互作用不是齐次的,而是分为五个子类。最主要的子类的特征是小沟中的两个三重碱基对相互作用,两侧是两个核糖拉链接触。这种几何形状可以被视为“标准” GNRA-小沟槽相互作用,而其他四个子类是在小沟槽和四环之间形成界面的替代方法。 78个集合中的其余26个结构具有与大多数特异质受体相互作用的环。在整个集合中,可以识别许多序列结构相关性,这些序列相关性可以用作从主要序列预测三维结构时的初始假设。相反,其他序列模式不能预测。例如,GAAA环序列和GG / CC受体以三种不同的几何形状相互结合。最后,我们观察到II组内含子的结构进化实例,其中环受体基序彼此替代,同时保持较大的三维几何形状。总体而言,该研究给出了自然界中存在的RNA环-螺旋相互作用的更完整视图。

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