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揭示药物5-氟尿嘧啶与沃森-克里克/ hoogsteen碱基对之间的分子间相互作用:一项计算分析。

Unveiling the Intermolecular Interactions between Drug 5-Fluorouracil and Watson-Crick/Hoogsteen Base Pairs: A Computational Analysis.

作者信息

Venkataramanan Natarajan Sathiyamoorthy, Suvitha Ambigapathy, Sahara Ryoji

机构信息

Department of Chemistry, School of Engineering, Dayananda Sagar University, Harohalli, Bangalore, Karnataka 562112, India.

Department of Chemistry, Surana College, Bangalore 560 004, India.

出版信息

ACS Omega. 2024 May 31;9(23):24831-24844. doi: 10.1021/acsomega.4c01545. eCollection 2024 Jun 11.

Abstract

The adsorption of 5-fluorouracil (5FU) on Watson-Crick (WC) base pairs and Hoogsteen (HT) base pairs has been studied using the dispersion-corrected density functional theory (DFT). The adsorption, binding energy, and thermochemistry for the drug 5FU on the WC and HT base pairs were determined. The most stable geometries were near planar geometry, and 5FU has a higher preference for WC than HT base pairs. The adsorption energies of 5FU on nucleobase pairs are consistently higher than pristine nucleobase pairs, indicating that nucleobase pair cleavage is less likely during the adsorption of the 5FU drug. The enthalpy change for the formation of 5FU-DNA base pairs is higher than that for the formation of 5FU-nucleobases and is enthalpy-driven. The of AT base pairs is higher, suggesting that their chemical reactivity toward further reaction would be less than that of GC base pairs. The electron density difference (EDD) analysis shows a significant decrease in electron density in aromatic regions on the purine bases (adenine/guanine) compared to the pyrimidine bases. The MESP diagram of the stable 5FU-nucleobase pair complexes shows a directional interaction, with the positive regions in a molecule interacting with the negative region of other molecules. The atoms in molecule analysis show that the ρ(r) values of C=O···H-N are higher than those of N···H/N-H···O. The N···H intermolecular bonds between the base pair/drug and nucleobases are weak, closed shell interactions and are electrostatic in nature. The noncovalent interaction analysis shows that several new spikes are engendered along with an increase in their strength, which indicates that the H-bonding interactions are stronger and play a dominant role in stabilizing the complexes. Energy decomposition analysis shows that the drug-nucleobase pair complex has a marginal increase in the electrostatic contributions compared to nucleobase pair complexes.

摘要

采用色散校正密度泛函理论(DFT)研究了5-氟尿嘧啶(5FU)在沃森-克里克(WC)碱基对和 hoogsteen(HT)碱基对上的吸附情况。测定了药物5FU在WC和HT碱基对上的吸附、结合能和热化学性质。最稳定的几何构型接近平面几何构型,5FU对WC碱基对比对HT碱基对具有更高的偏好性。5FU在核碱基对上的吸附能始终高于原始核碱基对,这表明在5FU药物吸附过程中核碱基对断裂的可能性较小。5FU-DNA碱基对形成的焓变高于5FU-核碱基形成的焓变,且是焓驱动的。AT碱基对的[此处原文缺失相关内容]较高,这表明它们对进一步反应的化学反应性低于GC碱基对。电子密度差(EDD)分析表明,与嘧啶碱基相比,嘌呤碱基(腺嘌呤/鸟嘌呤)芳香区域的电子密度显著降低。稳定的5FU-核碱基对复合物的分子静电势(MESP)图显示出一种定向相互作用,分子中的正区域与其他分子的负区域相互作用。分子中的原子分析表明,C=O···H-N的ρ(r)值高于N···H/N-H···O的ρ(r)值。碱基对/药物与核碱基之间的N···H分子间键是弱的闭壳相互作用,本质上是静电相互作用。非共价相互作用分析表明,随着强度的增加产生了几个新的尖峰,这表明氢键相互作用更强,在稳定复合物中起主导作用。能量分解分析表明,与核碱基对复合物相比,药物-核碱基对复合物的静电贡献略有增加。

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