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Crystal structure of an RNA purine-rich tetraplex containing adenine tetrads: Implications for specific binding in RNA tetraplexes

机译:富含腺嘌呤四联体的富含RNA嘌呤的四联体的晶体结构:对RNA四联体中特异性结合的影响

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摘要

Purine-rich regions in DNA and RNA may contain both guanines and adenines, which have various biological functions. Here we report the crystal structure of an RNA purine-rich fragment containing both guanine and adenine at 1.4 Angstrom resolution. Adenines form an adenine tetrad in the N6-H...N7 conformation. Substitution of an adenine tetrad in the guanine tetraplex does not change the global conformation but introduces irregularity in both the hydrogen bonding interaction pattern in the groove and the metal ion binding pattern in the central cavity of the tetraplex. The irregularity in groove binding may be critical for specific binding in tetraplexes. The formation of G-U octads provides a mechanism for interaction in the groove. Ba2+ ions prefer to bind guanine tetrads, and adenine tetrads can only be bound by Na+ ions, illustrating the binding selectivity of metal ions for the tetraplex. [References: 36]
机译:DNA和RNA中富含嘌呤的区域可能同时包含鸟嘌呤和腺嘌呤,它们具有多种生物学功能。在这里,我们报告了一个富含鸟嘌呤和腺嘌呤的富含嘌呤的RNA片段的晶体结构,分辨率为1.4埃。腺嘌呤以N6-H ... N7构象形成腺嘌呤四联体。在鸟嘌呤四联体中取代腺嘌呤四联体不会改变整体构象,但会在凹槽中的氢键相互作用模式和四联体中心腔中的金属离子结合模式中引入不规则性。凹槽结合的不规则性对于四链体中的特异性结合可能至关重要。 G-U八单元组的形成提供了一种在凹槽中相互作用的机制。 Ba2 +离子倾向于结合鸟嘌呤四联体,而腺嘌呤四联体只能被Na +离子结合,这说明了金属离子对四联体的结合选择性。 [参考:36]

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