论文标题
水甲醇溶液中NADH中的两光激发荧光动力学:构象状态的作用
Two-Photon Excited Fluorescence Dynamics in NADH in water-methanol solutions: the Role of Conformational States
论文作者
论文摘要
飞秒激光脉冲在水 - 甲醇溶液中的720 nm激发下,在720 nm的两光子激发下,NADH在NADH中的极化荧光的动力学已在实验和理论上是甲醇浓度的函数。通过全局拟合程序从实验中确定了许多荧光参数,然后与其他作者报告的结果进行了比较。对实验错误进行了全面分析。通过从各种溶液中NADH和NMNH的结构进行的计算来支持获得的实验结果的解释。基于烟酰胺环内部分子电场对非辐射衰减率的影响,已经提出了NADH和NMNH中测量衰减时间异质性的解释。我们建议在顺式和反式构型中不同的电荷分布会导致不同的内部静电场分布,从而导致衰减时间异质性。由于溶液极性的降低,观察到了甲醇浓度的衰减时间tau_1和τ_2的轻微但明显的上升,并视为非辐射弛豫减慢的较小效果。根据Stokes-Einstein-Debye方程,对旋转扩散时间Tau_R的分析是甲醇浓度的函数,从而确定溶液中折叠和展开的NADH构象的相对浓度。从实验中确定的荧光各向异性参数和参数欧米茄的分析允许确定两光子激发张量的成分,并建议存在两个具有相当强度的激发通道。
The dynamics of polarized fluorescence in NADH at 460 nm under two-photon excitation at 720 nm by femtosecond laser pulses in water-methanol solutions has been studied experimentally and theoretically as a function of methanol concentration. A number of fluorescence parameters have been determined from experiment by means of the global fit procedure and then compared with the results reported by other authors. A comprehensive analysis of experimental errors was made. The interpretation of the experimental results obtained was supported by ab initio calculations of the structure of NADH and NMNH in various solutions. An explanation of the heterogeneity in the measured decay times in NADH and NMNH has been suggested based on the influence of the internal molecular electric field in the nicotinamide ring on non-radiative decay rates. We suggest that different charge distributions in the cis and trans configurations result in different internal electrostatic field distributions that lead to the decay time heterogeneity. A slight but noticeable rise of the decay times tau_1 and τ_2 with methanol concentration was observed and treated as a minor effect of a non-radiative relaxation slowing due to the decrease of solution polarity. The analysis of the rotational diffusion time tau_r as a function of methanol concentration on the basis of the Stokes-Einstein-Debye equation allowed for determination of relative concentrations of the folded and unfolded NADH conformations in solutions. The analysis of the fluorescence anisotropy parameters and parameter Omega determined from experiment allowed for determination of the two-photon excitation tensor components and suggested the existence of two excitation channels with comparable intensities.