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来自光叶纽苞花的抗疟吡唑生物碱的计算研究。

Computational study of antimalarial pyrazole alkaloids from Newbouldia laevis.

作者信息

Mammino Liliana, Bilonda Mireille K

机构信息

Department of Chemistry, University of Venda, P/bag X5050, Thohoyandou, 0950, South Africa,

出版信息

J Mol Model. 2014 Nov;20(11):2464. doi: 10.1007/s00894-014-2464-5. Epub 2014 Oct 29.

Abstract

Six pyrazole alkaloids of natural origin (isolated from Newbouldia laevis in DR Congo) that exhibit antimalarial activity-namely withasomnine, newbouldine, and their para-hydroxy and -methoxy derivatives-were investigated theoretically. The nitro derivatives of withasomnine and para-hydroxywithasomnine, which show enhanced antimalarial activity, were also studied in this manner. A thorough conformational study was performed in vacuo and in three solvents (chloroform, acetonitrile, and water) at different levels of theory (HF, DFT/B3LYP, and MP2) using different basis sets. Adducts with explicit water molecules were calculated at the HF level. Due to the rigidity of the pyrazole system and the benzene ring, the only factor that influences the energies of withasomnine and newbouldine is the relative orientation of the two ring systems; two orientations are equally preferred. The para-hydroxy and -methoxy derivatives show a preference for a planar orientation of the OH and OC bonds. The main stabilizing influence on the nitro derivative of para-hydroxywithasomnine is the intramolecular hydrogen bond between the two consecutive functional groups. The calculated adducts show the preferred arrangements of water molecules in the vicinity of the N atoms of the pyrazole system and, for the derivatives, also in the vicinity of the substituents on the benzene ring.

摘要

对六种天然来源的吡唑生物碱(从刚果民主共和国的光叶纽苞藤中分离得到)进行了理论研究,这些生物碱具有抗疟活性,即维沙索宁、纽苞藤碱及其对羟基和甲氧基衍生物。还以这种方式研究了维沙索宁和对羟基维沙索宁的硝基衍生物,它们表现出增强的抗疟活性。在真空以及三种溶剂(氯仿、乙腈和水)中,使用不同的基组,在不同的理论水平(HF、DFT/B3LYP和MP2)下进行了全面的构象研究。在HF水平下计算了与明确水分子形成的加合物。由于吡唑体系和苯环的刚性,影响维沙索宁和纽苞藤碱能量的唯一因素是两个环体系的相对取向;两种取向同样优先。对羟基和甲氧基衍生物表现出OH和OC键平面取向的偏好。对对羟基维沙索宁硝基衍生物的主要稳定影响是两个连续官能团之间的分子内氢键。计算得到的加合物显示了水分子在吡唑体系N原子附近的优选排列,对于衍生物,还显示了在苯环上取代基附近的优选排列。

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