...
首页> 外文期刊>Nucleic acids research >Strand directionality affects cation binding and movement within tetramolecular G-quadruplexes
【24h】

Strand directionality affects cation binding and movement within tetramolecular G-quadruplexes

机译:链的方向性影响四分子G-四链体中的阳离子结合和运动

获取原文
           

摘要

Nuclear magnetic resonance study of G-quadruplex structures formed by d(TG3T) and its modified analogs containing a 5′-5′ or 3′-3′ inversion of polarity sites, namely d(3′TG5′-5′G2T3′), d(3′T5′-5′G3T3′) and d(5′TG3′-3′G2T5') demonstrates formation of G-quadruplex structures with tetrameric topology and distinct cation-binding preferences. All oligonucleotides are able to form quadruplex structures with two binding sites, although the modified oligonucleotides also form, in variable amounts, quadruplex structures with only one bound cation. The inter-quartet cavities at the inversion of polarity sites bind ammonium ions less tightly than a naturally occurring 5′-3′ backbone. Exchange of 15 ions between G-quadruplex and bulk solution is faster at the 3′-end in comparison to the 5′-end. In addition to strand directionality, cation movement is influenced by formation of an all-syn G-quartet. Formation of such quartet has been observed also for the parent d(TG3T) that besides the canonical quadruplex with only all-anti G-quartets, forms a tetramolecular parallel quadruplex containing one all-syn G-quartet, never observed before in unmodified quadruplex structures.
机译:d(TG 3 T)及其修饰的类似物所形成的G-四链体结构的核磁共振研究,该类似物包含极性位点的5'-5'或3'-3'反转,即d(3 'TG5'-5'G 2 T3'),d(3'T5'-5'G 3 T3')和d(5'TG3'-3' G 2 T5')证明了具有四聚体拓扑结构和独特的阳离子结合偏好的G-四链体结构的形成。所有的寡核苷酸都能够形成具有两个结合位点的四链体结构,尽管修饰的寡核苷酸也以可变的量形成仅具有一个结合阳离子的四链体结构。极性位点反转处的四方间腔与铵离子的结合不如天然5'-3'主链牢固。与5'端相比,G-四链体与本体溶液之间的 15 离子交换在3'端更快。除了链的方向性外,阳离子运动还受全合成G四联体形成的影响。对于母体d(TG 3 T),也观察到了这种四重体的形成,其除了仅具有全反G-四重体的规范四重体之外,还形成了包含一个全同G-G-的四分子平行四重体。四重奏,从未在未修改的四重结构中观察到。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号