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Iron Complexation to Oxygen Rich Marine Natural Products: A Computational Study

机译:铁络合富氧海洋天然产物的计算研究

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摘要

The natural products kahalalide F, halichondrin B, and discodermolide are relatively large structures that were originally harvested from marine organisms. They are oxygen rich structures that, to varying degrees, should have the ability to bind iron (II or III) by Fe-O and/or Fe-N bonds. In this semi empirical study, the binding of these natural products to iron (II) is studied and the aqueous stability factor (ASF) is used to determine which bonding configuration is most stable. The energy, the complex charge (+1), the average Fe-O (or Fe-N) bond distances and the dipole moments are used to calculate the ASF. The ASF provides insight to which complex will be the most stable and water soluble, important for a medicinal application. The ability of a molecule with a more than six oxygen and/or nitrogen atoms to bind iron (hexavalent, octahedral) by shifting which six atoms (O/N) are bound to the iron qualifies it as a polarity adaptive molecule.
机译:天然产物kahalalide F,halichondrin B和discodermolide是相对较大的结构,最初是从海洋生物中收获的。它们是富氧结构,在不同程度上应具有通过Fe-O和/或Fe-N键结合铁(II或III)的能力。在此半实证研究中,研究了这些天然产物与铁(II)的结合,并使用水稳定性因子(ASF)来确定哪种结合构型最稳定。能量,复电荷(+1),平均Fe-O(或Fe-N)键距和偶极矩用于计算ASF。 ASF提供了对于哪种复合物最稳定和水溶性最重要的见解,这对于医学应用很重要。具有六个以上氧和/或氮原子的分子通过转移六个原子(O / N)结合至铁的能力来结合铁(六价,八面体)的能力使其具有极性适应性。

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