de Villiers Katherine A, Marques Helder M, Egan Timothy J
Department of Chemistry, University of Cape Town, Private Bag, Rondebosch 7701, South Africa.
J Inorg Biochem. 2008 Aug;102(8):1660-7. doi: 10.1016/j.jinorgbio.2008.04.001. Epub 2008 Apr 20.
The crystal structure of the complex formed between the antimalarial drug halofantrine and ferriprotoporphyrin IX (Fe(III)PPIX) has been determined by single crystal X-ray diffraction. The structure shows that halofantrine coordinates to the Fe(III) center through its alcohol functionality in addition to pi-stacking of the phenanthrene ring over the porphyrin. The length of the Fe(III)-O bond is consistent with an alkoxide and not an alcohol coordinating group. The iron porphyrin is five coordinate and monomeric. Changes in the electronic spectrum of Fe(III)PPIX upon addition of halofantrine base in acetonitrile solution are almost identical to those observed upon addition of quinidine free base in the same solvent. This suggests homologous binding. Molecular mechanics modeling of Fe(III)PPIX complexes of quinidine, quinine, 9-epiquinine and 9-epiquinidine based on this homology suggests that the antimalarially active quinidine and quinine can readily adopt conformations that permit formation of an intramolecular salt bridge between the protonated quinuclidine tertiary amino group and unprotonated heme propionate group, while the inactive epimers 9-epiquinidine and 9-epiquinine have to adopt high energy conformations in order to accommodate such salt bridge formation. We propose that salt bridge formation may interrupt formation of the hemozoin precursor dimer formed during the heme detoxification pathway and so account for the strong activity of the two active isomers.
通过单晶X射线衍射确定了抗疟药物卤泛群与高铁原卟啉IX(Fe(III)PPIX)形成的复合物的晶体结构。该结构表明,卤泛群除了通过其菲环在卟啉上的π堆积外,还通过其醇官能团与Fe(III)中心配位。Fe(III)-O键的长度与醇盐而非醇配位基团一致。铁卟啉是五配位且为单体。在乙腈溶液中加入卤泛群碱后Fe(III)PPIX电子光谱的变化与在相同溶剂中加入奎尼丁游离碱后观察到的变化几乎相同。这表明存在同源结合。基于这种同源性对奎尼丁、奎宁、9-表奎宁和9-表奎尼丁的Fe(III)PPIX复合物进行分子力学建模表明,具有抗疟活性的奎尼丁和奎宁能够容易地采取允许在质子化的奎宁环叔氨基和未质子化的血红素丙酸基团之间形成分子内盐桥的构象,而无活性的差向异构体9-表奎尼丁和9-表奎宁必须采取高能构象以适应这种盐桥的形成。我们提出盐桥的形成可能会中断血红素解毒途径中形成的疟原虫色素前体二聚体的形成,从而解释了这两种活性异构体的强活性。