论文标题
具有Na $^+$,Ca $^{2+} $和mg $^{2+} $的磷酸基水的水接触离子对 - 由飞秒红外光谱和分子动力学模拟进行的结构歧视
Aqueous Contact Ion Pairs of Phosphate Groups with Na$^+$, Ca$^{2+}$ and Mg$^{2+}$ -- Structural Discrimination by Femtosecond Infrared Spectroscopy and Molecular Dynamics Simulations
论文作者
论文摘要
与Na $^+$,Ca $^{2+} $和Mg $^{2+} $ ions在水性环境中的磷酸组组的接触和溶剂共享离子对的程度及其与多含疫DNA和RNA结构的稳定性相关性。我们采用二甲基磷酸盐(DMP)的不对称磷酸盐拉伸振动(DMP),这是DNA和RNA的糖磷酸主链链链模型系统,我们提出了线性红外,飞秒型红外泵浦螺旋桨和吸收性的2D-IR光谱,以通过蓝移谱系的形态在存在的情况下进行了接触离子对的形式,该光谱报告。与线性红外光谱相比,非线性光谱揭示了敏感性增加的接触离子对,因为光谱在峰值频率,过渡偶极矩强度和激发态寿命上加强了差异。长时间尺度MD模拟证实了实验结果,该模拟通过磷酸盐和水簇上的密度功能模拟为基准测试。显微镜解释揭示了由磷酸组和离子Na $^+$,Ca $^{2+} $和mg $^{2+} $形成的离子对的细微结构差异。磷酸组和离子周围溶剂化壳的复杂特性对于解释实验观察至关重要。目前的工作解决了借助模型系统探究主题的挑战,并建立了接触离子对形成的新实验数据,从而强调了非线性2D-IR光谱的潜力,作为复杂生物系统中磷酸盐相互作用的分析探针。
The extent of contact and solvent shared ion pairs of phosphate groups with Na$^+$, Ca$^{2+}$ and Mg$^{2+}$ ions in aqueous environment and their relevance for the stability of polyanionic DNA and RNA structures is highly debated. Employing the asymmetric phosphate stretching vibration of dimethyl phosphate (DMP), a model system of the sugar-phosphate backbone of DNA and RNA, we present linear infrared, femtosecond infrared pump-probe and absorptive 2D-IR spectra that report on contact ion pair formation via the presence of blue shifted spectral signatures. Compared to the linear infrared spectra, the nonlinear spectra reveal contact ion pairs with increased sensitivity because the spectra accentuate differences in peak frequency, transition dipole moment strength, and excited state lifetime. The experimental results are corroborated by long time scale MD simulations, benchmarked by density functional simulations on phosphate-ion-water clusters. The microscopic interpretation reveals subtle structural differences of ion pairs formed by the phosphate group and the ions Na$^+$, Ca$^{2+}$ and Mg$^{2+}$. Intricate properties of the solvation shell around the phosphate group and the ion are essential to explain the experimental observations. The present work addresses a challenging to probe topic with the help of a model system and establishes new experimental data of contact ion pair formation, thereby underlining the potential of nonlinear 2D-IR spectroscopy as an analytical probe of phosphate-ion interactions in complex biological systems.