Hiyama Miyabi, Shiga Motoyuki, Koga Nobuaki, Sugino Osamu, Akiyama Hidefumi, Noguchi Yoshifumi
Institute for Solid State Physics, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8581, Japan.
Phys Chem Chem Phys. 2017 Apr 12;19(15):10028-10035. doi: 10.1039/c7cp01067b.
In this study, the effect of hydration on the absorption spectra of oxyluciferin anion isomers in an aqueous solution is investigated for elucidating the influence of characteristic hydration structures. Using a canonical ensemble of hydration structures obtained from first-principles molecular dynamics simulations, the instantaneous absorption spectra of keto-, enol-, and enolate-type aqueous oxyluciferin anions at room temperature are computed from a collection of QM/MM calculations using an explicit solvent. It is demonstrated that the calculations reproduce experimental results concerning spectral shifts and broadening, for which traditional methods based on quantum chemistry and the Franck-Condon approximation fail because of the molecular vibrations of oxyluciferin anions and dynamical fluctuations of their hydration structures. Although the first absorption band associated with the lowest energy excitation corresponds to a π-π* transition for all oxyluciferin anion isomers, the changes in this band upon hydration are different among the isomers. In particular, the bands of enol- and enolate-type of oxyluciferin anions are significantly blue-shifted by hydration, whereas those of the keto-type oxylucifeion anion are shifted relatively less. Thus, the order of the first-peak positions in the aqueous solution changed relative to that in vacuo. We ascribe this to the nature of the oxyluciferin anion being more hydrophobic in the keto form as compared with the enol and enolate isomers.
在本研究中,研究了水合作用对水溶液中氧化荧光素阴离子异构体吸收光谱的影响,以阐明特征水合结构的影响。使用从第一性原理分子动力学模拟获得的水合结构正则系综,通过使用显式溶剂的QM/MM计算集合,计算了室温下酮型、烯醇型和烯醇盐型氧化荧光素阴离子水溶液的瞬时吸收光谱。结果表明,该计算重现了有关光谱位移和展宽的实验结果,而基于量子化学和弗兰克-康登近似的传统方法由于氧化荧光素阴离子的分子振动及其水合结构的动态波动而无法做到这一点。尽管与最低能量激发相关的第一吸收带对应于所有氧化荧光素阴离子异构体的π-π*跃迁,但水合作用下该吸收带的变化在异构体之间是不同的。特别是,烯醇型和烯醇盐型氧化荧光素阴离子的吸收带在水合作用下显著蓝移,而酮型氧化荧光素阴离子的吸收带相对移动较小。因此,水溶液中第一峰位置的顺序相对于真空中发生了变化。我们将此归因于与烯醇和烯醇盐异构体相比,酮型氧化荧光素阴离子的疏水性更强。