首页> 外文期刊>Computational and Structural Biotechnology Journal >Replacing thymine with a strongly pairing fifth Base: A combined quantum mechanics and molecular dynamics study
【24h】

Replacing thymine with a strongly pairing fifth Base: A combined quantum mechanics and molecular dynamics study

机译:用强配对第五基础取代胸腺:一个组合的量子力学和分子动力学研究

获取原文
           

摘要

The non-natural ethynylmethylpyridone C-nucleoside (W), a thymidine (T) analogue that can be incorporated in oligonucleotides by automated synthesis, has recently been reported to form a high fidelity base pair with adenosine (A) and to be well accommodated in B-DNA duplexes. The enhanced binding affinity for A of W, as compared to T, makes it an ideal modification for biotechnological applications, such as efficient probe hybridization for the parallel detection of multiple DNA strands. In order to complement the experimental study and rationalize the impact of the non-natural W nucleoside on the structure, stability and dynamics of DNA structures, we performed quantum mechanics (QM) calculations along with molecular dynamics (MD) simulations. Consistently with the experimental study, our QM calculations show that the A:W base pair has an increased stability as compared to the natural A:T pair, due to an additional CH-π interaction. Furthermore, we show that mispairing between W and guanine (G) causes a distortion in the planarity of the base pair, thus explaining the destabilization of DNA duplexes featuring a G:W pair. MD simulations show that incorporation of single or multiple consecutive A:W pairs in DNA duplexes causes minor changes to the intra- and inter-base geometrical parameters, while a moderate widening/shrinking of the major/minor groove of the duplexes is observed. QM calculations applied to selected stacks from the MD simulations also show an increased stacking energy for W, over T, with the neighboring bases.
机译:最近据报道,可以通过自动合成掺入寡核苷酸中的胸苷(T)类似物,以自动合成掺入寡核苷酸中的胸苷(T)类似物,形成高保真碱基与腺苷(A)并充分容纳B-DNA双链体。与T相比,与T相比的增强的结合亲和力使其成为生物技术应用的理想改性,例如用于多个DNA链的平行检测的有效探针杂交。为了补充实验研究并可合理化非天然W核苷对DNA结构的结构,稳定性和动力学的影响,我们进行了量子力学(QM)计算以及分子动力学(MD)模拟。与实验研究一致,我们的QM计算表明,与自然A:T对相比,A:W碱基对具有增加的稳定性,由于另外的CH-π相互作用。此外,我们表明w和鸟嘌呤(g)之间的错位导致碱基对平坦性的变形,从而解释了具有g:w对的DNA双工的稳定化。 MD仿真表明,DNA双工中的单个或多个连续A:W对对具有底座和基间几何参数的微小变化,而观察到双工的主要/少量凹槽的中等扩展/收缩。应用于来自MD模拟的所选堆栈的QM计算还显示了与相邻基座的W的堆叠能量增加。

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