Suppr超能文献

尺寸扩展的DNA核碱基如何增强双链稳定性?xDNA碱基氢键和堆积能力的计算分析。

How do size-expanded DNA nucleobases enhance duplex stability? Computational analysis of the hydrogen-bonding and stacking ability of xDNA bases.

作者信息

McConnell Tom L, Wetmore Stacey D

机构信息

Department of Chemistry, Mount Allison University, 63C York Street, Sackville, New Brunswick, E4L 1G8, Canada.

出版信息

J Phys Chem B. 2007 Mar 22;111(11):2999-3009. doi: 10.1021/jp0670079. Epub 2007 Feb 28.

Abstract

Computational chemistry (B3LYP, MP2) is used to study the properties of size-expanded DNA nucleobases generated by inserting a benzene spacer into the natural nucleobases. Although the addition of the spacer does not significantly affect the hydrogen-bonding properties of natural nucleobases, the orientation of the base about the glycosidic bond necessary for Watson-Crick binding is destabilized, which could have implications for the selectivity of expanded bases, as well as the stability of expanded duplexes. Consideration of the (stacked) binding energies in the preferred relative orientation of natural and expanded nucleobases aligned according to their centers of mass reveals that the stacking within natural dimers can be increased by up to 50% upon expansion of one nucleobase and up to 90% upon expansion of two nucleobases. The implications of these findings to the stability of expanded duplexes were revealed by considering simplified models of natural and mixed duplexes composed of four nucleobases. Although intra- and interstrand interactions within double helices are typically less than those predicted when nucleobases are stacked according to their centers of mass, some nucleobases utilize their full stacking potential within double helices, where both intra- and interstrand interactions can be significant. Most importantly, increasing the size of nucleobases within the duplex significantly increases both intra- and interstrand stacking interactions. Specifically, some interactions are double the magnitude of the corresponding intrastrand interactions in natural helices, and even greater increases in interstrand interactions are sometimes found. Thus, our work suggests that mixed duplexes composed of natural bases hydrogen bound to expanded bases may exploit the increase in the inherent stacking ability of the expanded bases in more than one way and thereby afford duplexes with greater stability than natural DNA.

摘要

计算化学(B3LYP、MP2)用于研究通过在天然核碱基中插入苯间隔基而生成的尺寸扩展的DNA核碱基的性质。虽然间隔基的添加不会显著影响天然核碱基的氢键性质,但对于沃森-克里克碱基对结合所必需的碱基围绕糖苷键的取向却变得不稳定,这可能对扩展碱基的选择性以及扩展双链体的稳定性产生影响。根据天然和扩展核碱基的质心对齐后的优选相对取向来考虑(堆积)结合能,结果表明,当一个核碱基扩展时,天然二聚体内的堆积作用最多可增加50%,当两个核碱基扩展时,堆积作用最多可增加90%。通过考虑由四个核碱基组成的天然和混合双链体的简化模型,揭示了这些发现对扩展双链体稳定性的影响。虽然双螺旋内的链内和链间相互作用通常小于根据核碱基质心进行堆积时预测的相互作用,但一些核碱基在双螺旋内充分发挥了它们的堆积潜力,在双螺旋中,链内和链间相互作用都可能很显著。最重要的是,增加双链体内核碱基的大小会显著增加链内和链间的堆积相互作用。具体而言,一些相互作用的强度是天然螺旋中相应链内相互作用的两倍,有时还会发现链间相互作用有更大的增加。因此,我们的工作表明,由与扩展碱基形成氢键的天然碱基组成的混合双链体可能以多种方式利用扩展碱基固有堆积能力的增加,从而提供比天然DNA更稳定的双链体。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验