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修饰胸腺核苷糖部分中1',2'-与2',4'-构象限制的化学和结构影响。

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

作者信息

Plashkevych Oleksandr, Chatterjee Subhrangsu, Honcharenko Dmytro, Pathmasiri Wimal, Chattopadhyaya Jyoti

机构信息

Department of Bioorganic Chemistry, Box 581, Biomedical Center, Uppsala University, SE-75123 Uppsala, Sweden.

出版信息

J Org Chem. 2007 Jun 22;72(13):4716-26. doi: 10.1021/jo070356u. Epub 2007 May 25.

Abstract

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.

摘要

为了理解寡核苷酸/RNA(DNA)中糖部分的构象限制的化学性质如何决定双链体结构和反应性,我们通过核磁共振、从头算(HF/6-31G** 和 B3LYP/6-31++G**)以及分子动力学模拟(在明确的水性介质中进行2纳秒),确定了构象受限的1',2'-氮杂环丁烷和1',2'-氧杂环丁烷稠合胸苷以及它们的2',4'-稠合胸腺嘧啶(T)类似物(如锁核酸 - T、2'-氨基锁核酸 - T、乙烯基核酸 - T 和氮杂乙烯基核酸 - T)的分子结构和动力学。已经发现,根据修饰导致的是双环1',2'-稠合系统还是三环2',4'-稠合系统,它们分为两个不同的类别,其特征在于糖苷键和主链扭转的各自内部动力学以及1',2'-稠合系统的特征性东北型糖构象(P = 37°±27°,φm = 25°±18°),以及(ii)2',4'-稠合核苷的纯北型(P = 19°±8°,φm = 48°±4°)。尽管1',2'-或2',4'-连接修饰施加的北型构象限制总体相似,但每组可访问的构象超空间不同。通过理论和实验测量得到的1-胸腺嘧啶苷元的pKa以及环内糖 - 氮的pKa的比较表明,糖构象限制的性质引导了组成1-胸腺嘧啶部分的物理化学性质(pKa),这反过来又可以在调节碱基配对中氢键的强度方面发挥作用。

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