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吡嗪酰胺抗结核药物分子的分子间相互作用、电荷密度分布及静电性质:一项实验与理论电荷密度研究

Intermolecular interactions, charge-density distribution and the electrostatic properties of pyrazinamide anti-TB drug molecule: an experimental and theoretical charge-density study.

作者信息

Rajalakshmi Gnanasekaran, Hathwar Venkatesha R, Kumaradhas Poomani

机构信息

Laboratory of Biocrystallography and Computational Molecular Biology, Department of Physics, Periyar University, Salem 636 011, India.

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2014 Jun;70(Pt 3):568-79. doi: 10.1107/S205252061303388X. Epub 2014 May 24.

Abstract

An experimental charge-density analysis of pyrazinamide (a first line antitubercular drug) was performed using high-resolution X-ray diffraction data [(sin θ/λ)max = 1.1 Å(-1)] measured at 100 (2) K. The structure was solved by direct methods using SHELXS97 and refined by SHELXL97. The total electron density of the pyrazinamide molecule was modeled using the Hansen-Coppens multipole formalism implemented in the XD software. The topological properties of electron density determined from the experiment were compared with the theoretical results obtained from CRYSTAL09 at the B3LYP/6-31G** level of theory. The crystal structure was stabilized by N-H...N and N-H...O hydrogen bonds, in which the N3-H3B...N1 and N3-H3A...O1 interactions form two types of dimers in the crystal. Hirshfeld surface analysis was carried out to analyze the intermolecular interactions. The fingerprint plot reveals that the N...H and O...H hydrogen-bonding interactions contribute 26.1 and 18.4%, respectively, of the total Hirshfeld surface. The lattice energy of the molecule was calculated using density functional theory (B3LYP) methods with the 6-31G** basis set. The molecular electrostatic potential of the pyrazinamide molecule exhibits extended electronegative regions around O1, N1 and N2. The existence of a negative electrostatic potential (ESP) region just above the upper and lower surfaces of the pyrazine ring confirm the π-electron cloud.

摘要

使用在100(2)K下测量的高分辨率X射线衍射数据[(sin θ/λ)max = 1.1 Å⁻¹]对吡嗪酰胺(一种一线抗结核药物)进行了实验电荷密度分析。结构通过使用SHELXS97的直接法求解,并使用SHELXL97进行精修。吡嗪酰胺分子的总电子密度使用XD软件中实现的Hansen-Coppens多极形式进行建模。将实验测定的电子密度拓扑性质与在B3LYP/6-31G理论水平下从CRYSTAL09获得的理论结果进行比较。晶体结构通过N-H...N和N-H...O氢键得以稳定,其中N3-H3B...N1和N3-H3A...O1相互作用在晶体中形成两种类型的二聚体。进行了Hirshfeld表面分析以分析分子间相互作用。指纹图谱显示,N...H和O...H氢键相互作用分别占总Hirshfeld表面的26.1%和18.4%。使用密度泛函理论(B3LYP)方法和6-31G基组计算了分子的晶格能。吡嗪酰胺分子的分子静电势在O1、N1和N2周围呈现出扩展的电负性区域。吡嗪环上下表面正上方存在负静电势(ESP)区域证实了π电子云的存在。

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