King Abdullah University of Science and Technology (KAUST), Physical Sciences and Engineering Division, Kaust Catalysis Center, Thuwal, 23955-6900, Saudi Arabia.
Moscow Institute of Physics and Technology, Institutskiy Pereulok 9, Dolgoprudny, Moscow Region, 141700, Russia.
Chembiochem. 2019 Sep 2;20(17):2262-2270. doi: 10.1002/cbic.201900245. Epub 2019 Jul 19.
The impact of 7-deaza-8-azaguanine (DAG) and 7-deaza-8-azaisoguanine (DAiG) modifications on the geometry and stability of the G:C Watson-Crick (cWW) base pair and the G:iC and iG:C reverse Watson-Crick (tWW) base pairs has been characterized theoretically. In addition, the effect on the same base pairs of seven C7-substituted DAG and DAiG derivatives, some of which have been previously experimentally characterized, has been investigated. Calculations indicate that all of these modifications have a negligible impact on the geometry of the above base pairs, and that modification of the heterocycle skeleton has a small impact on the base-pair interaction energies. Instead, base-pair interaction energies are dependent on the nature of the C7 substituent. For the 7-substituted DAG-C cWW systems, a linear correlation between the base-pair interaction energy and the Hammett constant of the 7-substituent is found, with higher interaction energies corresponding to more electron-withdrawing substituents. Therefore, the explored modifications are expected to be accommodated in both parallel and antiparallel nucleic acid duplexes without perturbing their geometry, while the strength of a base pair (and duplex) featuring a DAG modification can, in principle, be tuned by incorporating different substituents at the C7 position.
理论上研究了 7-脱氮-8-氮杂鸟嘌呤(DAG)和 7-脱氮-8-氮杂次黄嘌呤(DAiG)修饰对 G:C Watson-Crick(cWW)碱基对以及 G:iC 和 iG:C 反向 Watson-Crick(tWW)碱基对的几何形状和稳定性的影响。此外,还研究了七个 C7 取代的 DAG 和 DAiG 衍生物对相同碱基对的影响,其中一些先前已经过实验表征。计算表明,所有这些修饰对上述碱基对的几何形状几乎没有影响,并且杂环骨架的修饰对碱基对相互作用能的影响很小。相反,碱基对相互作用能取决于 C7 取代基的性质。对于 7 取代的 DAG-C cWW 体系,发现碱基对相互作用能与 7 取代基的哈米特常数之间存在线性关系,较高的相互作用能对应于具有更强吸电子取代基的取代基。因此,预计所探索的修饰可以在平行和反平行核酸双链体中得到容纳,而不会干扰其几何形状,同时,通过在 C7 位置引入不同的取代基,原则上可以调节具有 DAG 修饰的碱基对(和双链体)的强度。