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Identification and characterization of anion binding sites in RNA.

机译:RNA中阴离子结合位点的鉴定和表征。

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Although RNA molecules are highly negatively charged, anions have been observed bound to RNA in crystal structures. It has been proposed that anion binding sites found within isolated RNAs represent regions of the molecule that could be involved in intermolecular interactions, indicating potential contact points for negatively charged amino acids from proteins or phosphate groups from an RNA. Several types of anion binding sites have been cataloged based on available structures. However, currently there is no method for unambiguously assigning anions to crystallographic electron density, and this has precluded more detailed analysis of RNA-anion interaction motifs and their significance. We therefore soaked selenate into two different types of RNA crystals and used the anomalous signal from these anions to identify binding sites in these RNA molecules unambiguously. Examination of these sites and comparison with other suspected anion binding sites reveals features of anion binding motifs, and shows that selenate may be a useful tool for studying RNA-anion interactions.
机译:尽管RNA分子带负电,但已观察到阴离子与晶体结构中的RNA结合。已经提出,在分离的RNA中发现的阴离子结合位点代表了可能参与分子间相互作用的分子区域,表明来自蛋白质的带负电荷的氨基酸或来自RNA的磷酸基的潜在接触点。已根据可用结构对几种类型的阴离子结合位点进行了分类。但是,目前尚没有明确地将阴离子分配给晶体电子密度的方法,这已经排除了对RNA-阴离子相互作用基序及其意义进行更详细分析的可能性。因此,我们将硒酸盐浸入两种不同类型的RNA晶体中,并使用来自这些阴离子的异常信号来明确识别这些RNA分子中的结合位点。检查这些位点并与其他可疑的阴离子结合位点进行比较,揭示了阴离子结合基序的特征,并表明硒酸盐可能是研究RNA与阴离子相互作用的有用工具。

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