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Structural Variations and Solvent Structure of r(UGGGGU) Quadruplexes Stabilized by Sr2+ Ions

机译:Sr2 +离子稳定的r(UGGGGU)四链体的结构变异和溶剂结构

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摘要

Guanine-rich sequences can, under appropriate conditions, adopt a distinctive, four-stranded, helical fold known as a G-quadruplex. Interest in quadruplex folds has grown in recent years as evidence of their biological relevance has accumulated from both sequence analysis and function-specific assays. The folds are unusually stable and their formation appears to require close management to maintain cell health; regulatory failure correlates with genomic instability and a number of cancer phenotypes. Biologically relevant quadruplex folds are anticipated to form transiently in mRNA and in single-stranded, unwound DNA. To elucidate factors, including bound solvent, that contribute to the stability of RNA quadruplexes, we examine, by X-ray crystallography and small-angle X-ray scattering, the structure of a previously reported tetramolecular quadruplex, UGGGGU stabilized by Se2+ ions. Crystal forms of the octameric assembly formed by this sequence exhibit unusually strong diffraction and anomalous signal enabling the construction of reliable models to a resolution of 0.88 angstrom. The solvent structure confirms hydration patterns reported for other nucleic acid helical conformations and provides support for the greater stability of RNA quadruplexes relative to DNA. Novel features detected in the octameric RNA assembly include a new crystal form, evidence of multiple conformations and structural variations in the 3' U tetrad, including one that leads to the formation of a hydrated internal cavity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在适当条件下,富含鸟嘌呤的序列可以采用独特的四链螺旋折叠,称为G-四链体。近年来,人们对四倍体折叠的兴趣不断增长,因为从序列分析和功能特异性测定中获得了它们生物学相关性的证据。褶皱异常稳定,它们的形成似乎需要严密管理以维持细胞健康。调节失败与基因组不稳定和许多癌症表型有关。生物学相关的四链折叠有望在mRNA和单链未缠绕DNA中瞬时形成。为了阐明有助于RNA四链体稳定性的因素(包括结合溶剂),我们通过X射线晶体学和小角度X射线散射检查了先前报道的四分子四链体UGGGGU的结构,该结构通过Se2 +离子稳定。由该序列形成的八聚体组装体的晶体形式表现出异常强的衍射和异常信号,从而能够构建分辨率为0.88埃的可靠模型。溶剂结构证实了报道的其他核酸螺旋构象的水合模式,并为RNA四链体相对于DNA的更大稳定性提供了支持。在八聚体RNA装配中检测到的新特征包括新的晶体形式,3'U四联体中多种构象和结构变异的证据,包括导致水合内部空腔形成的一种。 (C)2015 Elsevier Ltd.保留所有权利。

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