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Engineering the Quadruplex Fold:Nucleoside Conformation Determines Both Folding Topology and Molecularity in Guanine Quadruplexes

机译:工程化四链体折叠:核苷的结构决定了鸟嘌呤四链体的折叠拓扑和分子

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摘要

Nucleic acid quadruplexes,based on the guanine quartet,can arise from one or several strands,depending on the sequence.Those consisting of a single strand are usually folded in one of two principal topologies:antiparallel,in which all or half of the guanine stretches are antiparallel to each other,or parallel,in which all guanine stretches are parallel to each other.In the latter,all guanine nucleosides possess the anti conformation about the glycosidic bond,while in the former,half possess the anti conformation,and half possess the syn conformation.While antiparallel is the more common fold,examples of biologically important,parallel quadruplexes are becoming increasingly common.Thus,it is of interest to understand the forces that determine the quadruplex fold.Here,we examine the influence of individual nucleoside conformation on the overall folding topology by selective substitution of rG for dG.We can reverse the antiparallel fold of the thrombin binding aptamer (TBA)by this approach.Additionally,this substitution converts a unimolecular quadruplex into a bimolecular one.Similar reverse substitutions in the all-RNA analogue of TBA result in a parallel to antiparallel change in topology and alter the strand configuration from bimolecular to unimolecular.On the basis of the specific substitutions made,we conclude that the strong preference of guanine ribonucleosides for the anti conformation is the driving force for the change in topology.These results demonstrate how conformational properties of guanine nucleosides govern not only the quadruplex folding topology but also impact quadruplex molecularity and provide a means to control these properties.
机译:基于鸟嘌呤四联体的核酸四链体可以由一条或几条链产生,具体取决于序列。那些由单链组成的链通常折叠成两种主要拓扑结构之一:反平行,其中全部或一半的鸟嘌呤延伸鸟嘌呤核苷彼此反平行或平行,其中所有鸟嘌呤链段彼此平行。在后者中,所有鸟嘌呤核苷均具有关于糖苷键的反构象,而在前者中,一半具有反构象,而一半具有反构象。虽然反平行是更常见的折叠,但生物学上重要的例子越来越多,平行四联体的例子也越来越普遍。因此,了解决定四联体折叠的作用力很有意义。在这里,我们研究了各个核苷构象的影响。通过将rG选择性替换为dG可以在整体折叠拓扑结构上实现。我们可以通过这种方法逆转凝血酶结合适体(TBA)的反平行折叠h。另外,这种取代将单分子四链体转化为双分子。TBA的全RNA类似物中的类似反向取代导致拓扑结构平行或反平行变化,并将链构型从双分子改变为单分子。通过进行特定的取代,我们得出结论,鸟嘌呤核糖核苷对反构象的强烈偏好是拓扑变化的驱动力。这些结果证明了鸟嘌呤核苷的构象特性不仅如何控制四链折叠拓扑,而且如何影响四链分子并提供一种控制这些属性的方法。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2006年第17期|p.5966-5973|共8页
  • 作者单位

    Contribution from the Department of Pharmaceutical Chemistry,School of Pharmacy and Graduate Group in Chemistry and Chemical Biology,University of California,San Francisco,California 94143-0446;

    Contribution from the Department of Pharmaceutical Chemistry,School of Pharmacy and Graduate Group in Chemistry and Chemical Biology,University of California,San Francisco,California 94143-0446;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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