Boens N, Janssens L D, De Schryver F C
Department of Chemistry, Katholieke Universiteit Leuven, Heverlee, Belgium.
Biophys Chem. 1989 Mar;33(1):77-90. doi: 10.1016/0301-4622(89)80010-9.
A general global analysis of single-photon timing data is presented in which each fluorescence decay curve can be described by a different decay law. The model parameters can be held in common within one curve and/or between related curves. Any or all parameters can be kept fixed, or they may be variable to seek optimum values. This general analysis allows the determination of activation energies, frequency factors and quenching rate constants in one step. The construction of the global mapping table which relates parameters in one experiment to those in another is explained in detail. The use and performance of this general simultaneous analysis are examined using tryptophan fluorescence decays at pH 6.0 obtained at various emission wavelengths as a function of temperature and added solute quencher. The results show that tryptophan at pH 6.0 decays as a biexponential with decay times which are independent of the analysis wavelength. The decay component with the short lifetime has a deactivation rate constant of 1.4 x 10(9) s-1 independent of temperature. The decay component with the long lifetime has an activation energy of 28 kJ/mol and a frequency factor of 3 x 10(13) s-1; its temperature-independent decay rate constant equals 1 x 10(8) s-1. Recursion formulas for a computer program to estimate activation energies, frequency factors, and decay rate constants are provided.
本文给出了单光子计时数据的一般全局分析,其中每条荧光衰减曲线都可以用不同的衰减定律来描述。模型参数可以在一条曲线内和/或相关曲线之间共用。任何或所有参数都可以保持固定,也可以使其可变以寻求最佳值。这种一般分析允许一步确定活化能、频率因子和猝灭速率常数。详细解释了将一个实验中的参数与另一个实验中的参数相关联的全局映射表的构建。使用在不同发射波长下获得的pH 6.0时色氨酸荧光衰减作为温度和添加的溶质猝灭剂的函数,研究了这种一般同时分析的用途和性能。结果表明,pH 6.0时的色氨酸以双指数形式衰减,衰减时间与分析波长无关。短寿命的衰减成分具有1.4×10⁹ s⁻¹的失活速率常数,与温度无关。长寿命的衰减成分具有28 kJ/mol的活化能和3×10¹³ s⁻¹的频率因子;其与温度无关的衰减速率常数等于1×10⁸ s⁻¹。提供了用于估计活化能、频率因子和衰减速率常数的计算机程序的递归公式。