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铜与 GHK 肽结合的理论研究。

Theoretical study of copper binding to GHK peptide.

机构信息

School of Chemistry, Cardiff University, Park Place, Cardiff CF10 3AT, UK.

School of Chemistry, Cardiff University, Park Place, Cardiff CF10 3AT, UK.

出版信息

Comput Biol Chem. 2020 Jun;86:107265. doi: 10.1016/j.compbiolchem.2020.107265. Epub 2020 Apr 22.

Abstract

We report ligand field molecular mechanics, density functional theory and semi-empirical studies on the binding of Cu(II) to GlyHisLys (GHK) peptide. Following exhaustive conformational searching using molecular mechanics, we show that relative energy and geometry of conformations are in good agreement between GFN2-xTB semi-empirical and B3LYP-D DFT levels. Conventional molecular dynamics simulation of Cu-GHK shows the stability of the copper-peptide binding over 100 ps trajectory. Four equatorial bonds in 3N1O coordination remain stable throughout simulation, while a fifth in apical position from C-terminal carboxylate is more fluxional. We also show that the automated conformer and rotamer search algorithm CREST is able to correctly predict the metal binding position from a starting point consisting of separated peptide, copper and water.

摘要

我们报告了配体场分子力学、密度泛函理论和半经验研究,研究了 Cu(II)与 GlyHisLys(GHK)肽的结合。通过使用分子力学进行详尽的构象搜索,我们表明 GFN2-xTB 半经验和 B3LYP-D DFT 水平之间的构象相对能量和几何形状具有良好的一致性。Cu-GHK 的常规分子动力学模拟表明,铜-肽结合在 100 ps 轨迹上是稳定的。在整个模拟过程中,3N1O 配位中的四个赤道键保持稳定,而来自 C 末端羧酸盐的第五个键则更加动态。我们还表明,自动构象和旋转体搜索算法 CREST 能够从由分离的肽、铜和水组成的起始点正确预测金属结合位置。

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