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A computational study of ligand binding affinities in iron(iii) porphine and protoporphyrin IX complexes.

机译:铁(iii)卟啉和原卟啉IX配合物中配体结合亲和力的计算研究。

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摘要

The search for novel anti-malarial drugs that can disrupt biomineralization of ferriprotoporphyrin IX to haemozoin requires an understanding of the fundamental chemistry of the porphyrin's iron(iii) centre at the water-lipid interface. Towards this end, the binding affinities for a diverse set of 31 small ligands with iron(iii) porphine have been calculated using density functional theory, in the gas phase and also with implicit solvent corrections for both water and n-octanol. In addition, the binding of hydroxide, chloride, acetate, methylamine and water to ferriprotoporphyrin IX has been studied, and very similar trends are observed for the smaller and larger models. Anionic ligands generally give stronger binding than neutral ones; the strongest binding is observed for RO(-) and OH(-) ligands, whilst acetate binds relatively weakly among the anions studied. Electron-rich nitrogen donors tend to bind more strongly than electron-deficient ones, and the weakest binding is found for neutral O and S donors such as oxazole and thiophene. In all cases, ligand binding is stronger in n-octanol than in water, and the differences in binding energies for the two solvents are greater for ionic ligands than for neutrals. Finally, dimerization of ferriprotoporphyrin IX by means of iron(iii)-carboxylate bond formation has been modelled. The results are discussed in terms of haemozoin crystal growth and its disruption by known anti-malarial drugs.
机译:寻找能够破坏铁原卟啉IX到血红蛋白的生物矿化作用的新型抗疟疾药物,需要了解在水-脂质界面上卟啉铁(iii)中心的基本化学性质。为此,已经使用密度泛函理论在气相中以及对于水和正辛醇的隐式溶剂校正中,计算了31种不同的31种小配体与铁(iii)卟啉的结合亲和力。另外,已经研究了氢氧化物,氯化物,乙酸盐,甲胺和水与铁原卟啉IX的结合,对于较小和较大的模型,观察到非常相似的趋势。阴离子配体通常比中性配体具有更强的结合力。 RO(-)和OH(-)配体的结合最强,而所研究的阴离子中乙酸根的结合相对较弱。富电子的氮供体往往比缺电子的氮供体更牢固地结合,而对于中性的O和S供体(如恶唑和噻吩)的结合最弱。在所有情况下,正辛醇中的配体结合均强于水,并且离子配体中两种溶剂的结合能差异大于中性。最后,已经模拟了通过铁(iii)-羧酸酯键形成对亚铁原卟啉IX的二聚作用。就血红素晶体的生长及其被已知抗疟疾药物破坏的结果进行了讨论。

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    Durrant, Marcus;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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