Ramek Michael, Marković Marijana, Mutapčić Ilina, Pejić Jelena, Kelterer Anne-Marie, Sabolović Jasmina
Institute of Physical and Theoretical Chemistry Graz University of Technology Stremayrgasse 9 A-8010 Graz Austria.
Institute for Medical Research and Occupational Health Ksaverska cesta 2 HR-10000 Zagreb Croatia Homepage: https://www.imi.hr/en/djelatnik/sabolovic-jasmina-2/.
ChemistryOpen. 2019 Jul 3;8(7):852-868. doi: 10.1002/open.201900159. eCollection 2019 Jul.
This study explores the structural properties and energy landscapes of the physiologically important bis(l-asparaginato)copper(II) [Cu(l-Asn)] and (l-histidinato)(l-asparaginato)copper(II) [Cu(l-His)(l-Asn)]. The conformational analyses in the gas phase and implicitly modeled water medium, and magnetic parameters of electron paramagnetic resonance spectra were attained using density functional theory calculations. The apical Cu coordination and hydrogen bonding were analyzed. Predicted lower-energy structures enabled the confirmation and, for apical bonding, also the refinement of structural proposals from literature. Available experimental results were indecisive regarding the amido-group binding in the Cu equatorial plane in solutions, but the examination of the relative stability of Cu(l-Asn) conformers in 30 binding modes confirms the glycine-like mode as the most stable one. Previously reported experimental results for Cu(l-His)(l-Asn) were interpreted for l-His to have a tridentate histamine-like mode. However, the aqueous conformers with l-His in the glycinato mode are also predicted to have low energies, which does not contradict the tridentate l-His binding. The predicted magnetic parameters of conformers with an apical oxygen atom (intramolecular or from a water molecule) can reproduce the experimental data. An extent of conformational flexibility and abundance of l-His-containing ternary copper(II) amino acid complexes under physiological conditions may be related.
本研究探索了具有重要生理意义的双(L-天冬酰胺)铜(II)[Cu(L-Asn)]和(L-组氨酸)(L-天冬酰胺)铜(II)[Cu(L-His)(L-Asn)]的结构性质和能量景观。利用密度泛函理论计算获得了气相和隐式模拟水介质中的构象分析以及电子顺磁共振光谱的磁参数。分析了顶端铜配位和氢键。预测的低能量结构有助于确认文献中的结构提议,对于顶端键合,还对其进行了优化。现有实验结果对于溶液中铜赤道平面内酰胺基团的结合并不明确,但对30种结合模式下Cu(L-Asn)构象异构体的相对稳定性进行研究后证实,甘氨酸样模式是最稳定的。先前报道的Cu(L-His)(L-Asn)的实验结果被解释为L-His具有三齿组胺样模式。然而,预测具有甘氨酸模式L-His的水相构象异构体也具有低能量,这与三齿L-His结合并不矛盾。预测的具有顶端氧原子(分子内或来自水分子)的构象异构体的磁参数可以重现实验数据。在生理条件下,构象灵活性的程度与含L-His的三元铜(II)氨基酸配合物的丰度可能有关。