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Aluminum interaction with 2,3-diphosphoglyceric acid. A computational studyle

机译:铝与2,3-二磷酸甘油酸的相互作用。计算学习

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摘要

The interaction of aluminum with 2,3-diphosphoglyceric acid (2,3-DPG) is thought to be one of the strongest interactions of aluminium with a biophosphate molecule. In this article, the affinity energies for a family of Al-(2,3-DPG) complexes are calculated at the DFT level of theory. The study includes a total of 26 structures that vary from 1 : 1 complexes, to 1 : 2 stoichiometry and ternary complexes with citrate, considering different coordination modes and protonation states. Our results demonstrate that in the case of 1 : 1 complexes, the 2,3-DPG ligand could compete with citrate for complexation with aluminum at physiological pH. However, for the rest of the complexes there is a clear preference for Al(Citr)(2) > Al(2,3-DPG)(Citr) ternary complex > Al(2,3-DPG)(2) complexes. For each of these groups the charge of the ligand determines the affinity but to a lower extent than the nature of the Citr/2,3-DPG ligands. In summary, our results point to a high variety of possible complexation modes of 2,3-DPG to aluminum, showing a higher preference towards the formation of ternary complexes.
机译:铝与2,3-二磷酸甘油酸(2,3-DPG)的相互作用被认为是铝与生物磷酸分子的最强相互作用之一。在本文中,Al-(2,3-DPG)配合物家族的亲和能是在DFT理论水平上计算的。该研究包括总共26种结构,这些结构从1:1的配合物变化到1:2的柠檬酸化学计量和三元配合物,并考虑了不同的配位方式和质子化状态。我们的结果表明,在1:1络合物的情况下,2,3-DPG配体可以与柠檬酸盐竞争在生理pH下与铝络合。但是,对于其余的配合物,显然倾向于Al(Citr)(2)> Al(2,3-DPG)(Citr)三元配合物> Al(2,3-DPG)(2)配合物。对于这些基团中的每一个,配体的电荷决定了亲和力,但程度低于Citr / 2,3-DPG配体的性质。总而言之,我们的结果指出了2,3-DPG与铝的多种可能的络合模式,显示出对三元络合物形成的更高偏好。

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