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色氨酸荧光寿命的起源 第 1 部分。溶液中游离色氨酸的荧光寿命起源。

Origin of tryptophan fluorescence lifetimes part 1. Fluorescence lifetimes origin of tryptophan free in solution.

机构信息

Laboratoire de Biophysique Moléculaire, Université de Lille 1. Sciences et Technologies, Bâtiment C6, 59655, Villeneuve d'Ascq Cédex, France,

出版信息

J Fluoresc. 2014 Jan;24(1):93-104. doi: 10.1007/s10895-013-1277-8. Epub 2013 Aug 4.

Abstract

Fluorescence intensity decays of L-tryptophan free in polar, hydrophobic and mixture of polar-hydrophobic solvents were recorded along the emission spectrum (310-410 nm). Analysis of the data show that emission of tryptophan occurs with two lifetimes in 100% polar and hydrophobic environments. The values of the two lifetimes are not the same in both environments while their populations (pre-exponentials values) are identical. Fluorescence lifetimes and pre-exponentials values do not change with the excitation wavelength and thus are independent of excitation energy. Our results indicate that tryptophan emission occurs from two specific sub-structures existing in the excited state. These sub-structures differ from those present in the ground states and characterize an internal property and/or organization of the tryptophan structure in the excited state. By sub-substructure, we mean here tryptophan backbone and its electronic cloud. In ethanol, three fluorescence lifetimes were measured; two lifetimes are very close to those observed in water (0.4-0.5 ns and 2-4 ns). Presence of a third lifetime for tryptophan in ethanol results from the interaction of both hydrophobic and hydrophilic dipoles or chemical functions of ethanol with the fluorophore.

摘要

游离色氨酸在极性、疏水和亲水混合溶剂中的荧光强度衰减沿发射光谱(310-410nm)记录。数据分析表明,在 100%极性和疏水环境中,色氨酸的发射带有两个寿命。这两个寿命在两种环境中的值并不相同,而它们的种群(指数前值)是相同的。荧光寿命和指数前值不随激发波长而变化,因此与激发能量无关。我们的结果表明,色氨酸的发射是由存在于激发态的两个特定的亚结构引起的。这些亚结构与存在于基态的亚结构不同,它们表征了色氨酸结构在激发态下的内部性质和/或组织。通过亚结构,我们在这里是指色氨酸的骨架及其电子云。在乙醇中,测量了三个荧光寿命;两个寿命非常接近在水中观察到的寿命(0.4-0.5ns 和 2-4ns)。色氨酸在乙醇中存在第三个寿命是由于疏水和亲水偶极子的相互作用或乙醇的化学功能与荧光团的相互作用所致。

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