首页> 外文期刊>The Journal of Organic Chemistry >Chemical and structural implications of 1 ',2 '- versus 2 ',4 '-conformational constraints in the sugar moiety of modified thymine nucleosides
【24h】

Chemical and structural implications of 1 ',2 '- versus 2 ',4 '-conformational constraints in the sugar moiety of modified thymine nucleosides

机译:修饰的胸腺嘧啶核苷糖部分中1',2'-与2',4'-构象限制的化学和结构意义

获取原文
获取原文并翻译 | 示例
       

摘要

In order to understand how the chemical nature of the conformational constraint of the sugar moiety in ON/RNA(DNA) dictates the duplex structure and reactivity, we have determined molecular structures and dynamics of the conformationally constrained 1',2'-azetidine- and 1',2'-oxetane-fused thymidines, as well as their 2',4'-fused thymine (T) counterparts such as LNA-T, 2'-amino LNA-T, ENA-T, and aza-ENA-T by NMR, ab initio (HF/6-31G** and B3LYP/6-31++G**), and molecular dynamics simulations (2 ns in the explicit aqueous medium). It has been found that, depending upon whether the modification leads to a bicyclic 1',2'-fused or a tricyclic 2',4'-fused system, they fall into two distinct categories characterized by their respective internal dynamics of the glycosidic and the backbone torsions as well as by characteristic North-East type sugar conformation (P = 37 degrees +/- 27 degrees, phi(m) = 25 degrees +/- 18 degrees) of the 1',2'-fused systems, and (ii) pure North type (P = 19 degrees +/- 8 degrees, phi(m) = 48 degrees +/- 4 degrees) for the 2',4'-fused nucleosides. Each group has different conformational hyperspace accessible, despite the overall similarity of the North-type conformational constraints imposed by the 1',2'- or 2',4'-linked modification. The comparison of pK(a)s of the 1-thyminyl aglycon as well as that of endocyclic sugar-nitrogen obtained by theoretical and experimental measurements showed that the nature of the sugar conformational constraints steer the physicochemical property (pK(a)) of the constituent 1-thyminyl moiety, which in turn can play a part in tuning the strength of hydrogen bonding in the basepairing.
机译:为了了解ON / RNA(DNA)中糖部分的构象约束的化学性质如何决定双链体结构和反应性,我们确定了构象约束的1',2'-氮杂环丁烷-和1',2'-氧杂环丁烷融合的胸苷以及它们的2',4'-融合胸腺嘧啶(T)对应物,例如LNA-T,2'-氨基LNA-T,ENA-T和aza-ENA-通过NMR进行的T,从头算(HF / 6-31G **和B3LYP / 6-31 ++ G **)和分子动力学模拟(在明确的水性介质中为2 ns)。已经发现,取决于修饰是导致双环1',2'-稠合的系统还是三环2',4'-稠合的系统,它们分为两个不同的类别,其特征在于糖苷和糖苷的各自内部动力学。 1',2'融合系统的主干扭转以及特征性的东北型糖构象(P = 37度+/- 27度,phi(m)= 25度+/- 18度),以及(ii)2',4'融合核苷的纯North型(P = 19度+/- 8度,phi(m)= 48度+/- 4度)。尽管由1',2'-或2',4'连锁修饰施加的North型构象约束条件总体相似,但每个组都有不同的构象超空间可访问性。通过理论和实验测量获得的1-胸苷基糖苷配基的pK(a)s和环内糖氮的pK(a)的比较表明,糖构象约束的性质指导着其的理化性质(pK(a))。组成的1-胸苷基部分,继而可以在调节碱基对中氢键的强度方面发挥作用。

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