Molecular Reaction Dynamics Laboratory, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Phys Chem Chem Phys. 2020 Nov 21;22(43):25042-25053. doi: 10.1039/d0cp04247a. Epub 2020 Oct 28.
The "specific" interaction between metal cations (Na, Ca, Mg, and Zn) and the charged COO group, and the "non-specific" interaction between these cations and the peptide backbone of a zwitterionic trialanine (Ala3) in aqueous solutions were examined in detail, using linear infrared (IR) absorptions of the COO symmetric stretching and the amide-II (mainly the C-N stretching) modes as IR probes. Different IR spectral changes in peak positions and intensities of the two IR probes clearly demonstrate their sensitivities to nearby cation distributions in distance and population. Quantum chemistry calculations and molecular dynamics simulations were used to describe the cation-peptide interaction picture. These combined results suggest that Na and Ca tend to bind to the COO group in the bidentate form, while Mg and Zn tend to bind to the COO group in the pseudo-bridging form. The results also show that while all three divalent cations indirectly interact with the peptide backbone with large population, Ca and Mg can be sometimes distributed very close to the backbone. Such a non-specific cation interaction can be moderately sensed by the C-N stretching of the amide-II mode when cations approach the polar amide C[double bond, length as m-dash]O group, and is also influenced by the NH charge group located at the N-terminus. The results suggest that the experimentally observed complication of the Hofmeister cation series shall be understood as a combined specific and non-specific cation-peptide interactions.
详细研究了金属阳离子(Na、Ca、Mg 和 Zn)与带电荷的 COO 基团之间的“特异性”相互作用,以及这些阳离子与两性离子丙氨酸(Ala3)肽骨架之间的“非特异性”相互作用,使用 COO 对称伸缩和酰胺-II(主要是 C-N 伸缩)模式的线性红外(IR)吸收作为 IR 探针。两个 IR 探针的峰位置和强度的不同 IR 光谱变化清楚地表明了它们对附近阳离子分布在距离和数量上的敏感性。量子化学计算和分子动力学模拟用于描述阳离子-肽相互作用图。这些综合结果表明,Na 和 Ca 倾向于以双齿形式结合到 COO 基团,而 Mg 和 Zn 倾向于以拟桥接形式结合到 COO 基团。结果还表明,虽然所有三种二价阳离子都与肽骨架间接以大的数量相互作用,但 Ca 和 Mg 有时可以分布在靠近骨架的位置。这种非特异性阳离子相互作用可以通过酰胺-II 模式的 C-N 伸缩适度感知,当阳离子接近极性酰胺 C[双键,长度如破折号]O 基团时,并且还受到位于 N 末端的 NH 电荷基团的影响。结果表明,实验观察到的 Hofmeister 阳离子系列的复杂性应理解为特异性和非特异性阳离子-肽相互作用的组合。