Bhunia Snehasis, Singh Ajeet, Ojha Animesh K
Department of Physics, Motilal Nehru National Institute of Technology Allahabad, Allahabad, 211004, India.
Department of Chemistry, University of Allahabad, Allahabad, 211002, India.
J Mol Model. 2017 Mar;23(3):88. doi: 10.1007/s00894-017-3248-5. Epub 2017 Feb 22.
Complexes of the dipeptide phenylalanine-phenylalanine (Phe-Phe) with divalent metal cations (Cu, Zn, Ca and Ba) were studied at the B3LYP and MP2 levels of theory with the basis sets 6-311++G(d,p) and 6-31 + G(d) in the gas phase. The relative energies of these complexes indicated that cation-π bidentate/tridentate conformations are more favourable than other conformations with uncoordinated rings. These findings were confirmed by the calculated values of thermodynamic parameters such as the Gibbs free energy. Natural bond orbital (NBO) analysis was carried out to explore the metal-ligand coordination in Phe-Phe-Cu/Zn complexes. Possible orbital transitions, types of orbitals and their occupancies were determined for a range of Phe-Phe-Cu/Zn complexes. The charge transfer involved in various orbital transitions was explored by considering the second-order perturbation energy. NBO analysis revealed that the change transfer is stronger when the metal cation uses both the 4s + 4p subshells rather than just its 4p subshell. We also performed molecular dynamics (MD) simulations to check the stability and consistency of the most favourable binding motifs of Cu, Zn, Ca and Ba with Phe-Phe over time. The structures of the Phe-Phe-Cu/Zn/Ca/Ba complexes obtained using MD simulation were found to be in good agreement with those obtained in the DFT-based calculations. Graphical Abstract Conformational search on encapsulation of divalent metal cations (Ca, Zn, Ca, Ba) by the Phe-Phe dipeptide.
在气相中,使用6-311++G(d,p)和6-31 + G(d)基组,在B3LYP和MP2理论水平上研究了二肽苯丙氨酸-苯丙氨酸(Phe-Phe)与二价金属阳离子(铜、锌、钙和钡)的配合物。这些配合物的相对能量表明,阳离子-π双齿/三齿构象比其他具有未配位环的构象更有利。这些发现通过吉布斯自由能等热力学参数的计算值得到了证实。进行了自然键轨道(NBO)分析,以探索Phe-Phe-Cu/Zn配合物中的金属-配体配位。确定了一系列Phe-Phe-Cu/Zn配合物的可能轨道跃迁、轨道类型及其占据情况。通过考虑二阶微扰能量,探索了各种轨道跃迁中涉及的电荷转移。NBO分析表明,当金属阳离子同时使用4s + 4p子壳层而不是仅使用其4p子壳层时,电荷转移更强。我们还进行了分子动力学(MD)模拟,以检查铜、锌、钙和钡与Phe-Phe最有利结合基序随时间的稳定性和一致性。发现使用MD模拟获得的Phe-Phe-Cu/Zn/Ca/Ba配合物的结构与基于密度泛函理论(DFT)计算获得的结构非常吻合。图形摘要二肽Phe-Phe对二价金属阳离子(钙、锌、钙、钡)的包封的构象搜索。