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Specific metal-ion binding sites in a model of the P4-P6 triple-helical domain of a group I intron.

机译:I组内含子的P4-P6三螺旋结构域模型中的特定金属离子结合位点。

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摘要

Divalent metal ions play a crucial role in RNA structure and catalysis. Phosphorothioate substitution and manganese rescue experiments can reveal phosphate oxygens interacting specifically with magnesium ions essential for structure and/or activity. In this study, phosphorothioate interference experiments in combination with structural sensitive circular dichroism spectroscopy have been used to probe molecular interactions underlying an important RNA structural motif. We have studied a synthetic model of the P4-P6 triple-helical domain in the bacteriophage T4 nrdB group I intron, which has a core sequence analogous to the Tetrahymena ribozyme. Rp and Sp sulfur substitutions were introduced into two adjacent nucleotides positioned at the 3' end of helix P6 (U452) and in the joining region J6/7 (U453). The effects of sulfur substitution on triple helix formation in the presence of different ratios of magnesium and manganese were studied by the use of difference circular dichroism spectroscopy. The results show that the pro-Sp oxygen of U452 acts as a ligand for a structurally important magnesium ion, whereas no such effect is seen for the pro-Rp oxygen of U452. The importance of the pro-Rp and pro-Sp oxygens of U453 is less clear, because addition of manganese could not significantly restore the triple-helical interactions within the isolated substituted model systems. The interpretation is that U453 is so sensitive to structural disturbance that any change at this position hinders the proper formation of the triple helix.
机译:二价金属离子在RNA结构和催化中起关键作用。硫代磷酸酯取代和锰拯救实验可以揭示磷酸氧与结构和/或活性必不可少的镁离子发生特殊相互作用。在这项研究中,硫代磷酸酯干扰实验与结构灵敏的圆二色性光谱相结合已被用来探测潜在的重要RNA结构基序的分子相互作用。我们已经研究了噬菌体T4 nrdB I类内含子中P4-P6三螺旋结构域的合成模型,该模型具有类似于四膜虫核酶的核心序列。 Rp和Sp硫取代被引入到两个相邻的核苷酸中,该两个核苷酸位于螺旋P6(U452)的3'端和连接区域J6 / 7(U453)中。通过使用差圆二色光谱研究了硫在镁和锰的不同比例下对三重螺旋形成的取代作用。结果表明,U452的Pro-Sp氧可作为结构上重要的镁离子的配体,而U452的Pro-Rp氧则没有这种作用。 U453的Pro-Rp和Pro-Sp氧的重要性尚不清楚,因为添加锰不能显着恢复分离的取代模型系统中的三螺旋相互作用。解释是U453对结构扰动非常敏感,以至于该位置的任何变化都会阻碍三重螺旋的正确形成。

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