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3-[2-(4-二苯胺基苯基)苯并恶唑-5-基]丙氨酸甲酯的溶剂化显色作用。一种新型荧光探针。

Solvatochromism of 3-[2-(4-diphenylaminophenyl)benzoxazol-5-yl]alanine methyl ester. A new fluorescence probe.

作者信息

Guzow Katarzyna, Milewska Magda, Wiczk Wiesław

机构信息

Faculty of Chemistry, University of Gdańsk, Sobieskiego 18, 80-952 Gdańsk, Poland.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2005 Apr;61(6):1133-40. doi: 10.1016/j.saa.2004.06.035.

Abstract

The photophysical properties of 3-[2-(4-diphenylaminophenyl)benzoxazol-5-yl]alanine methyl ester (1b) and its Boc derivative (1a) were studied in a series of solvents. Its UV-Vis absorption spectra are less sensitive to the solvent polarity than the corresponding fluorescence spectra which show pronounced solvatochromic effect leading to large Stokes shifts. Using an efficient solvatochromic method, based on the molecular-microscopic empirical solvent polarity parameter E(T)(N), a large change of the dipole moment on excitation has been found. From an analysis of the solvatochromic behaviour of the UV-Vis absorption and fluorescence spectra in terms of bulk solvent polarity functions, f(epsilon(r),n) and g(n), a large excited-state dipole moment (mu(e) = 11D), almost perpendicular to the smaller ground-state dipole moment, was observed. This demonstrates the formation of an intramolecular charge-transfer excited state. Large changes of the fluorescence quantum yields as well as the fluorescence lifetimes with an increase of a solvent polarity cause that the new non-proteinogenic amino acid, 3-[2-(4-diphenylaminophenyl)benzoxazol-5-yl]-alanine methyl ester, is a new useful fluorescence probe for biophysical studies of peptides and proteins.

摘要

研究了3-[2-(4-二苯胺基苯基)苯并恶唑-5-基]丙氨酸甲酯(1b)及其Boc衍生物(1a)在一系列溶剂中的光物理性质。其紫外可见吸收光谱对溶剂极性的敏感性低于相应的荧光光谱,后者表现出明显的溶剂化显色效应,导致较大的斯托克斯位移。使用基于分子微观经验溶剂极性参数E(T)(N)的有效溶剂化显色方法,发现激发时偶极矩有很大变化。通过根据本体溶剂极性函数f(ε(r),n)和g(n)对紫外可见吸收光谱和荧光光谱的溶剂化显色行为进行分析,观察到一个大的激发态偶极矩(μ(e)=11D),几乎垂直于较小的基态偶极矩。这证明形成了分子内电荷转移激发态。随着溶剂极性的增加,荧光量子产率以及荧光寿命发生很大变化,这使得新型非蛋白原性氨基酸3-[2-(4-二苯胺基苯基)苯并恶唑-5-基]丙氨酸甲酯成为用于肽和蛋白质生物物理研究的新型有用荧光探针。

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