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Fluoresence quenching of riboflavin in aqueous solution by methionin and cystein

机译:蛋氨酸和半胱氨酸对水溶液中核黄素的荧光猝灭

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摘要

The fluorescence quantum distributions, fluorescence quantum yields, and fluorescence lifetimes of riboflavin in methanol, DMSO, water, and aqueous solutions of the sulphur atom containing amino acids methionin and cystein have been determined. In methanol, DMSO, and water (pH = 4-8) only dynamic fluorescence reduction due to intersystem crossing and internal conversion is observed. In aqueous methionin solutions of pH = 5.25-9 a pH independent static and dynamic fluorescence quenching occurs probably due to riboflavin anion-methionin cation pair formation. In aqueous cystein solutions (pH range from 4.15 to 9) the fluorescence quenching increases with rising pH due to cystein thiolate formation. The cystein thiol form present at low pH does not react with neutral riboflavin. Cystein thiolate present at high pH seems to react with neutral riboflavin causing riboflavin deprotonation (anion formation) by cystein thiolate reduction to the cystein thiol form.
机译:已经确定了核黄素在甲醇,DMSO,水以及含硫基蛋氨酸和半胱氨酸氨基酸硫原子的水溶液中的荧光量子分布,荧光量子产率和荧光寿命。在甲醇,DMSO和水(pH = 4-8)中,仅观察到由于系统间交叉和内部转化而引起的动态荧光减少。在pH = 5.25-9的蛋氨酸水溶液中,pH无关的静态和动态荧光猝灭可能是由于核黄素阴离子-蛋氨酸阳离子对的形成所致。在半胱氨酸水溶液(pH范围为4.15至9)中,由于半胱氨酸硫醇盐的形成,荧光猝灭随着pH的升高而增加。在低pH下存在的半胱氨酸硫醇形式不会与中性核黄素反应。高pH下存在的半胱氨酸硫醇盐似乎与中性核黄素发生反应,通过半胱氨酸硫醇盐还原成半胱氨酸硫醇形式,导致核黄素去质子化(阴离子形成)。

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