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The metal bonding domain of the antitumor drug Fe(II)-bleomycin: a DFT investigation

机译:抗肿瘤药Fe(II)-博来霉素的金属键合域:DFT研究

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摘要

The geometric and electronic structure of ferrous complexes of bleomycin (Fe(II)BLM) has been investigated by means of density functional theory (DFT) calculations. The active site of this antitumor drug is a highly distorted octahedral complex, with the coordination sphere completed by the five known endogenous ligands, including pyrimidine, imidazole, deprotonated amide, and secondary and primary amines. We have addressed the controversial issue of the nature of the sixth axial ligand, which we have identified as the oxygen of the carbamoyl group. Our conclusions are further validated by a comparison with structural data derived from NMR experiments. Moreover, because of the high sensitivity of structural data on the pH of the environment, we have investigated the effect of a different protonation state of the histidine amide on the geometric structure of the Fe(II)BLM complex. The extensive model of the active site of bleomycin considered in this work allows us to check the limitations of previous investigations based on simplified models.
机译:博莱霉素(Fe(II)BLM)铁配合物的几何和电子结构已通过密度泛函理论(DFT)计算的方法进行了研究。该抗肿瘤药的活性部位是高度扭曲的八面体复合物,配位球由五个已知的内源性配体(包括嘧啶,咪唑,去质子化的酰胺以及仲胺和伯胺)完成。我们已经解决了第六轴向配体性质的争议性问题,我们已将其鉴定为氨基甲酰基基团的氧。通过与来自NMR实验的结构数据进行比较,进一步验证了我们的结论。此外,由于结构数据对环境pH值的高度敏感性,我们研究了组氨酸酰胺的不同质子化状态对Fe(II)BLM配合物的几何结构的影响。在这项工作中考虑的博来霉素活性位点的广泛模型使我们能够基于简化模型检查先前研究的局限性。

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