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Conformational free energy surfaces of non-ionized glycine in aqueous solution

机译:水溶液中非电离甘氨酸的构象自由能面

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Ab initio calculations on glycine and quantum mechanical/molecular mechanical molecular dynamics simulations (QM/MM-MD) on solvated non-ionized glycine were performed to explore the free energy landscapes of non-ionic glycine conformers in aqueous solution. Among nine different conformers of glycine, QM/MM-MD simulations found ttc and gtc conformers stable in addition to ttt, ccc, gtt, tct and gct which were well known as stable isomers in pure QM calculation. The stabilities of ttc and gtc come from a strong solvation at their carboxylic group side (-COOH) in solution. The preferred rotation along C-C (φ) as compared to C-0 (θ) in both pure QM calculations and QM/MM-MD indicates the importance of intramolecular effects in determining relative free energies. On the other hand, the existence of stable ttc and gtc conformers only in solution phase clearly shows the importance of intermolecular interaction by explicit solvents. The same intermolecular interactions have a mixed effect on the free energy barriers. They reduced the barriers of A (ccc) → B (gtc) and A (ccc) → C (gct) isomerizations as compared to the ab initio or PCM results. At the same time, they also increased the barriers of B (ttc, gtc) → D (ttt, gtt). In short, the conformational free energy surfaces of non-ionized glycine in solution are largely different from the corresponding potential energy surfaces of gas phase. The fact that the initial conformer for tautomerization ccc is stable makes the N → Z tautomerization facile. However, concurrently, diverse conformational isomerizations to ccc make the tautomerization dependent on the isomerizations.
机译:进行了从头算的甘氨酸计算和溶剂化的非离子化甘氨酸的量子力学/分子机械分子动力学模拟(QM / MM-MD),以探索水溶液中非离子型甘氨酸构象异构体的自由能态。在9种不同的甘氨酸构象异构体中,QM / MM-MD模拟发现ttc和gtc构象异构体除ttt,ccc,gtt,tct和gct以外,在纯QM计算中众所周知是稳定的异构体。 ttc和gtc的稳定性来自溶液中羧基侧(-COOH)的强溶剂化作用。在纯QM计算和QM / MM-MD中,与C-0(θ)相比,沿C-C(φ)的首选旋转都表明分子内效应在确定相对自由能中的重要性。另一方面,仅在溶液相中存在稳定的ttc和gtc构象异构体,清楚地表明了显式溶剂进行分子间相互作用的重要性。相同的分子间相互作用对自由能垒具有混合作用。与从头算或PCM结果相比,它们减少了A(ccc)→B(gtc)和A(ccc)→C(gct)异构化的障碍。同时,它们也增加了B(ttc,gtc)→D(ttt,gtt)的壁垒。简而言之,溶液中非电离甘氨酸的构象自由能表面与气相的相应势能表面有很大不同。互变异构化ccc的初始构象异构体稳定的事实使得N→Z互变异构化变得容易。然而,同时,对ccc的各种构象异构化使得互变异构依赖于异构化。

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