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首页> 外文期刊>European journal of organic chemistry >Complete characterization of the 3D properties of the CCR5 antagonist vicriviroc through DFT calculations, NMR spectroscopy, and X-ray analysis
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Complete characterization of the 3D properties of the CCR5 antagonist vicriviroc through DFT calculations, NMR spectroscopy, and X-ray analysis

机译:通过DFT计算,NMR光谱和X射线分析来完整表征CCR5拮抗剂vicriviroc的3D特性

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Vicriviroc is a piperazine-based CCR5 receptor antagonist, with better oral availability, potency, safety, and pharmacological properties than those of its precursor SCH-C, but whose development has been stopped. A full evaluation of the 3D properties of vicriviroc was carried out in order to achieve a complete knowledge of its conformational behavior and, consequently, to identify the parameters necessary to design new, possibly better, analogs. The theoretical study was performed at the B3LYP/6-31G(d) level of calculations. Particular attention was focused on the arrangement at the planar amido function and the conformational preferences of the piperazine and piperidine rings. Several conformational families, characterized by different through-space contacts and comparable energy values, were located and confirmed by high-field NMR spectroscopy. Two distinct series of signals, originating from the barrier to rotation of the amido function, were observed in the NMR spectrum. Moreover, a NOESY experiment provided evidence for all the close contacts present assuring the coexistence, in solution, of numerous conformations in equilibrium, characterized by different chair geometries of the heterocyclic rings. A complete modeling study of vicriviroc was carried out by using theoretical calculations, and the results were confirmed through a NOESY experiment. Several populated conformations were identified originating from the amido group arrangement as well as chair inversion at the piperazine and piperidine rings and rotations around the bond connecting them.
机译:Vicriviroc是一种基于哌嗪的CCR5受体拮抗剂,比其前体SCH-C具有更好的口服可用性,效力,安全性和药理特性,但已停止开发。为了全面了解vicriviroc的构象行为,并因此确定了设计新的,可能更好的类似物所需的参数,对vicriviroc的3D特性进行了全面评估。在B3LYP / 6-31G(d)计算级别上进行了理论研究。特别注意的是平面酰胺功能上的排列以及哌嗪和哌啶环的构象偏好。定位并通过高场NMR光谱确定了几个构象族,这些构象族具有不同的贯穿空间接触和可比较的能量值。在NMR光谱中观察到两个不同系列的信号,这些信号来自酰胺功能旋转的势垒。此外,NOESY实验为存在的所有紧密接触提供了证据,以确保溶液中多种构象共存于平衡状态,其特征是杂环的椅子几何形状不同。通过理论计算,对vicriviroc进行了完整的建模研究,结果通过NOESY实验得到了证实。鉴定出一些人口稠密的构象,这些构象源自酰胺基基团排列以及哌嗪和哌啶环的椅子倒置以及围绕连接它们的键的旋转。

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