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Topology of electron density and electrostatic potential of HIV reverse transcriptase inhibitor zidovudine from high resolution X-ray diffraction and charge density analysis

机译:高分辨率X射线衍射和电荷密度分析的HIV逆转录酶抑制剂Zidovudine的电子密度和静电电位的拓扑

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Azidothymidine (AZT) is a first anti-HIV drug namely Zidovudine used for HIV treatment, which binds to the viral DNA primer and inhibits the HIV reverse transcription. The side effects of this powerful drug are severe and the detailed understanding of its electronic structure helps to design new drugs from the AZT molecule. Present study aims to determine the structure of AZT at electronic level from the experimental charge density analysis as well as the solid state DFT calculations. AZT was crystallized and low temperature high resolution X-ray diffraction intensity data has been measured up to sin (theta/lambda)(max) = 1.1 angstrom(-1) at 100.0 (2) K. The crystal structure of AZT was determined, which reveals the information that the AZT compound crystallizes with two molecules in the asymmetric unit which are conformationally different and linked through strong hydrogen bonding interactions (dimer). The Hirshfeld surface of both molecules shows the locations of weak and strong interactions. Further, a multipole model refinement was carried out using Hansen-Coppens multipole formalism. The experimental topological properties of electron density of AZT molecules were determined and compared with the results of theoretical DFT calculations based on solid state and gas phase studies. The charge density distribution of the two molecules in the asymmetric unit is unequal and shows some difference. The topological properties of O-H center dot center dot center dot O, O-H center dot center dot center dot N, C-H center dot center dot center dot N, H center dot center dot center dot H and azide center dot center dot center dot azide group interactions are also determined. The electrostatic potential (ESP) surface of both AZT molecules in the crystal exhibits high electronegative regions around the O, N atoms and also around the azide group, however, ESP regions of molecules (I) and (II) are not similar. (C) 2018 Elsevier B.V. All rights reserved.
机译:Azidothycidine(AZT)是用于艾滋病毒治疗的第一种抗HIV药物,其与病毒DNA引物结合并抑制HIV逆转录。这种强大的药物的副作用严重,对其电子结构的详细了解有助于设计来自AZT分子的新药。目前的研究旨在从实验电荷密度分析以及固态DFT计算中确定AZT的结构。 AZT是结晶的,并且在100.0(2)K时已经测量了低温高分辨率X射线衍射强度数据被测量到SIN(θ/λ)(max)= 1.1埃(-1)。确定AZT的晶体结构,这揭示了AZT化合物在不对称单元中用两种分子结晶的信息,这些分子通过强氢键相互作用(二聚体)构象不同和连接。两个分子的Hirshfeld表面显示弱和强相互作用的位置。此外,使用Hansen-Coppens多极形式主义进行多极模型细化。确定AZT分子的电子密度的实验性拓扑特性,并与基于固态和气相研究的理论DFT计算结果进行比较。两种分子在不对称单元中的电荷密度分布不​​等,并且存在一些差异。 OH中心DOT中心点中心DOT O,OH中心点中心点中心点N,CH中心点中心点中心点N,H中心点中心点中心点H和叠氮化物中心DOT中心点中心点叠层静脉叠层中心点也确定。晶体中两种AZT分子的静电电位(ESP)表面在O,N原子和邻周围的邻近叠氮基组上表现出高电负剂区域,然而,尤其是分子(I)和(II)的区域不相似。 (c)2018年elestvier b.v.保留所有权利。

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