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首页> 外文期刊>Molecules >Electronic Structure of the Azide Group in 3′-Azido-3′-deoxythymidine (AZT) Compared to Small Azide Compounds
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Electronic Structure of the Azide Group in 3′-Azido-3′-deoxythymidine (AZT) Compared to Small Azide Compounds

机译:与小叠氮化物化合物相比,3'-叠氮基-3'-脱氧胸苷(AZT)中叠氮基团的电子结构

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Theoretical calculations for some structural and electronic properties of the azide moiety in the nucleoside reverse transcriptase (RT) inhibitor 3′-Azido-3′-deoxythymidine (AZT) are reported. These properties, which include geometrical properties in three dimensional space, Hirshfeld charges, electrostatic potential (MEP), vibrational frequencies, and core and valence ionization spectra, are employed to study how the azide group is affected by the presence of a larger fragment. For this purpose, two small but important organic azides, hydrazoic acid and methyl azide, are also considered. The general features of trans Cs configuration for RNNN fragments [1] is distorted in the large AZT bio-molecule. Hirshfeld charge analysis shows charges are reallocated more evenly on azide when the donor group R is not a single atom. Infrared and photoelectron spectra reveal different aspects of the compounds. In conclusion, the electronic structural properties of the compounds depend on the specific property, the local structure and chemical environment of a species.
机译:报道了核苷逆转录酶(RT)抑制剂3'-叠氮基-3'-脱氧胸苷(AZT)中叠氮化物部分的一些结构和电子性质的理论计算。这些特性,包括三维空间中的几何特性,Hirshfeld电荷,静电势(MEP),振动频率以及核价和化合价电离谱,被用来研究叠氮化物基团如何受到较大片段的影响。为了这个目的,还考虑了两种小的但重要的有机叠氮化物,肼酸和甲基叠氮化物。 RNNN片段的反式Cs构型的一般特征[1]在大的AZT生物分子中扭曲了。 Hirshfeld电荷分析显示,当供体基团R不是单个原子时,电荷在叠氮化物上的分配更均匀。红外光谱和光电子光谱揭示了化合物的不同方面。总之,化合物的电子结构性质取决于物种的特定性质,局部结构和化学环境。

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