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糖类与麦胚凝集素(凝集素)结合的发光研究。

Luminescence studies of saccharide binding to wheat germ agglutinin (lectin).

作者信息

Privat J P, Monsigny M

出版信息

Eur J Biochem. 1975 Dec 15;60(2):555-67. doi: 10.1111/j.1432-1033.1975.tb21034.x.

Abstract

The fluorescence and phosphorescence emission of wheat germ agglutinin are reported. Fluorescent tryptophan residues of wheat germ agglutinin are found highly exposed to solvent: fluorescence quenching induced by temperature fits with a single Arrhenius critical energy close to that of tryptophan in solution; the whole fluorescence emission is susceptible to iodide ion quenching and data reveal the homogeneity of fluorescence arising from only one type of tryptophan exposition. Energy transfers are analyzed at singlet and triplet state level. Tyrosine fluorescence at 25 degrees C is very weak. Results obtained from the relative excitation fluorescence quantum yield and from intrinsic fluorescence polarization show that a large amount of energy absorbed by tyrosine at 280 nm is transferred to tryptophan residues. However, tyrosine fluorescence is highly increased at 70 degrees C although disulfide bridges are not reduced. The phosphorescence spectrum at 77 K in 50% ethylene glycol is finely structured with several resolved vibrational bands at 405, 432 and 455 nm. Phosphorescence decay can be fitted with a single exponential. Lifetime is independent of excitation wave-length. Its value is very close to that of free tryptophan. Influence of tri-N-acetyl-chitotriose binding on luminescence properties are investigated. Results are analyzed in terms of steric tryptophan-ligand relationships. It is shown that all the fluorescent chromophores are concerned by the ligand binding but all fluorescence emission is still susceptible to iodide ion quenching. There is no change induced in energy transfer at the singlet state level and no modification in triplet state population.

摘要

报道了麦胚凝集素的荧光和磷光发射。发现麦胚凝集素的荧光色氨酸残基高度暴露于溶剂中:温度诱导的荧光猝灭符合单一的阿累尼乌斯临界能量,接近溶液中色氨酸的临界能量;整个荧光发射易受碘离子猝灭影响,数据显示仅一种色氨酸暴露产生的荧光具有同质性。在单重态和三重态水平上分析了能量转移。25℃时酪氨酸荧光非常弱。从相对激发荧光量子产率和固有荧光偏振获得的结果表明,280nm处酪氨酸吸收的大量能量转移到了色氨酸残基上。然而,尽管二硫键未被还原,但在70℃时酪氨酸荧光显著增强。在50%乙二醇中77K时的磷光光谱具有精细结构,在405、432和455nm处有几个分辨的振动带。磷光衰减可以用单指数拟合。寿命与激发波长无关。其值非常接近游离色氨酸的值。研究了三 - N - 乙酰 - 壳三糖结合对发光性质的影响。根据空间色氨酸 - 配体关系分析了结果。结果表明,所有荧光发色团都与配体结合有关,但所有荧光发射仍易受碘离子猝灭影响。单重态水平的能量转移没有变化,三重态粒子数也没有改变。

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