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Computational studies of Fe(III) binding to bryostatins, bryostatin analogs, siderophores and marine natural products: Arguments for ferric complexes in medicinal applications

机译:Fe(III)结合于抑菌素,抑菌素类似物,铁载体和海洋天然产物的计算研究:药用中铁配合物的论点

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In this computational study, geometric factors are calculated by applying semi-empirical methods (PM3) that support experimental evidence from this lab where bryostatins can bind trivalent iron with six Fe-O bonds forming an octahedral geometry. The geometric factors are calculated for all 20 structures (Fe3+ bound to bryostatin 1-20) as a neutral, monovalent, and divalent species. The average Fe-O bond distances and bond angles are compared to those of known marine and terrestrial siderophores. From these two data sets, we then examined other known marine natural products (MNPs) that can form a hexavalent complex with six Fe-O bonds and draw conclusions about their potential biological role as marine siderophores. This computational data indicates that Fe(III) strongly bonds to a host of MNPs, increasing their water solubility, contracting their structure, hence allowing transport through cell membranes more readily, and in some cases, stabilizing ester bonds that are susceptible to hydrolysis. It is argued that administering medicinally bryostatin, its analogs or other MNPs as a ferric complex, holds some fundamental chemical advantages compared to its administration as a neutral uncomplexed species.
机译:在此计算研究中,通过应用半经验方法(PM3)计算几何因子,这些方法支持该实验室的实验证据,其中抑菌素可以使三价铁与六个Fe-O键结合形成八面体几何形状。计算所有20种结构(Fe3 +结合于抑菌素1-20)的中性,一价和二价物种的几何因子。将Fe-O的平均键距和键角与已知的海洋和陆生铁载体进行比较。从这两个数据集中,我们然后检查了其他已知的海洋天然产物(MNP),它们可以与六个Fe-O键形成六价络合物,并就其作为海洋铁载体的潜在生物学作用得出结论。此计算数据表明,Fe(III)与许多MNP牢固结合,从而增加其水溶性,收缩其结构,从而使它们更容易通过细胞膜运输,并且在某些情况下,稳定了易于水解的酯键。有人认为,与作为中性未复杂物种的药物管理相比,以药物形式给药的药物抑菌素,其类似物或其他MNP作为三价铁化合物具有一些基本的化学优势。

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