Wahl P, Auchet J C, Visser A J, Veeger C
Eur J Biochem. 1975 Jan 2;50(2):413-8. doi: 10.1111/j.1432-1033.1975.tb09817.x.
The time dependence of the fluorescence of tryptophanyl and flavin residues in lipoamide dehydrogenase has been investigated with single-photon decay spectroscopy. When the two FAD molecules in the enzyme were directly excited the decay could only be analyzed in a sum of two exponentials with equal amplitudes. This phenomenon was observed at 4 degrees C (tau-1 = 0.8 ns, tau-2 = 4.7 ns) and at 20 degrees C (tau-1 = 0.8 ns, tau-2 = 3.4 ns) irrespective of the emission and excitation wavelengths. This result reveals a difference in the nature of the two FAD centers. By excitation at 290 nm the fluorescence decay curves of tryptophan and FAD were obtained. The decays are analyzed in terms of energy transfer from tryptophanyl to flavin residues. The results, which are in good agreement with those obtained previously with static fluorescence methods, show that one of the two tryptophanyl residues within the subunit transfers its excitation energy to the flavin located at a distance of 1.5 nm.
利用单光子衰减光谱研究了脂酰胺脱氢酶中色氨酸残基和黄素残基荧光的时间依赖性。当直接激发该酶中的两个FAD分子时,只能将衰减分析为两个幅度相等的指数之和。在4℃(τ-1 = 0.8纳秒,τ-2 = 4.7纳秒)和20℃(τ-1 = 0.8纳秒,τ-2 = 3.4纳秒)观察到了这种现象,与发射和激发波长无关。该结果揭示了两个FAD中心性质的差异。通过在290nm处激发,获得了色氨酸和FAD的荧光衰减曲线。根据从色氨酸残基到黄素残基的能量转移对衰减进行了分析。结果与先前用静态荧光方法获得的结果高度一致,表明亚基内的两个色氨酸残基之一将其激发能转移到距离为1.5nm处的黄素上。