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Structural insights of non-canonical U•U pair and Hoogsteen interaction probed with Se atom

机译:非规范U•U对的结构见解和Se原子探测的Hoogsteen相互作用

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摘要

Unlike DNA, in addition to the 2′-OH group, uracil nucleobase and its modifications play essential roles in structure and function diversities of non-coding RNAs. Non-canonical U•U base pair is ubiquitous in non-coding RNAs, which are highly diversified. However, it is not completely clear how uracil plays the diversifing roles. To investigate and compare the uracil in U-A and U•U base pairs, we have decided to probe them with a selenium atom by synthesizing the novel 4-Se-uridine (SeU) phosphoramidite and Se-nucleobase-modified RNAs (SeU-RNAs), where the exo-4-oxygen of uracil is replaced by selenium. Our crystal structure studies of U-A and U•U pairs reveal that the native and Se-derivatized structures are virtually identical, and both U-A and U•U pairs can accommodate large Se atoms. Our thermostability and crystal structure studies indicate that the weakened H-bonding in U-A pair may be compensated by the base stacking, and that the stacking of the trans-Hoogsteen U•U pairs may stabilize RNA duplex and its junction. Our result confirms that the hydrogen bond (O4H-C5) of the Hoogsteen pair is weak. Using the Se atom probe, our Se-functionalization studies reveal more insights into the U•U interaction and U-participation in structure and function diversification of nucleic acids.
机译:与DNA不同,除了2'-OH基团外,尿嘧啶核碱基及其修饰在非编码RNA的结构和功能多样性中起着至关重要的作用。非规范U•U碱基对在高度多样化的非编码RNA中很普遍。但是,目前尚不清楚尿嘧啶如何发挥多样化作用。为了研究和比较UA和U•U碱基对中的尿嘧啶,我们决定通过合成新型的4-Se-尿苷( Se U)亚磷酰胺和Se-核碱基来用硒原子探测它们。修饰的RNA( Se U-RNA),其中尿嘧啶的exo-4-氧被硒取代。我们对U-A和U•U对的晶体结构研究表明,天然和硒衍生的结构实际上是相同的,并且U-A和U•U对都可以容纳大的Se原子。我们的热稳定性和晶体结构研究表明,U-A对中弱化的H键可被碱基堆积所补偿,反Hoogsteen U•U对的堆积可稳定RNA双链体及其连接。我们的结果证实了Hoogsteen对的氢键(O4 H-C5)是弱的。使用Se原子探针,我们的Se官能化研究揭示了更多关于U•U相互作用和U-参与核酸结构和功能多样化的见解。

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