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光泛黄漂白羊毛蛋白中光氧化产物的测定

Determination of photo-oxidation products within photoyellowed bleached wool proteins.

作者信息

Dyer Jolon M, Bringans Scott D, Bryson Warren G

机构信息

Canesis Network Limited, Private Bag 4749, Christchurch, New Zealand.

出版信息

Photochem Photobiol. 2006 Mar-Apr;82(2):551-7. doi: 10.1562/2005-08-29-RA-663.

Abstract

Photo-oxidative processes occurring in wool can lead to significant photoyellowing of the fiber. In particular, wool that has been chemically bleached photoyellows more rapidly and to a greater degree than untreated wool. Direct identification of the chromophores responsible for such yellow discoloration in irradiated wool has proven to be elusive for many years. This article describes the characterization and location of yellow photo-oxidation products within the proteins of photoyellowed bleached wool fabric, using advanced protein chemistry techniques. The discolored fabric was enzymatically digested and chromatographed by high-pressure liquid chromatography, with monitoring at 400 nm, to select out fractions containing yellow chromophoric species. Thorough tandem mass spectrometric analysis was then used to sequence peptides and, in turn, to characterize modifications to key amino acid residues that had resulted in yellow chromophore formation. In total, 11 separate yellow chromophoric species were identified, ten derived from tryptophan residues and one from tyrosine. The tryptophan-derived modifications characterized included hydroxytryptophan, N-formylkynurenine, hydroxyformylkynurenine, kynurenine, hydroxykynurenine, carbolines, tryptophandiones and nitrotryptophan. The tyrosine-derived modification of tyrosine to dopa was also identified. The range of photomodifications we observed provides insight into the photo-oxidation pathways occurring within irradiated fibrous proteins leading to the formation of yellow chromophores.

摘要

羊毛中发生的光氧化过程会导致纤维显著泛黄。特别是,经过化学漂白的羊毛比未处理的羊毛更迅速且更严重地发生光致泛黄。多年来,直接鉴定辐照羊毛中导致这种黄色变色的发色团一直难以实现。本文使用先进的蛋白质化学技术,描述了光致泛黄的漂白羊毛织物蛋白质中黄色光氧化产物的特征和位置。将变色的织物进行酶解,然后通过高压液相色谱进行色谱分析,并在400nm处进行监测,以选出含有黄色发色团物质的馏分。接着使用全面的串联质谱分析对肽段进行测序,进而表征导致黄色发色团形成的关键氨基酸残基的修饰。总共鉴定出11种不同的黄色发色团物质,其中10种源自色氨酸残基,1种源自酪氨酸。所表征的源自色氨酸的修饰包括羟基色氨酸、N-甲酰基犬尿氨酸、羟基甲酰基犬尿氨酸、犬尿氨酸、羟基犬尿氨酸、咔啉、色氨酸二酮和硝基色氨酸。还鉴定出了酪氨酸向多巴的酪氨酸衍生修饰。我们观察到的光修饰范围为深入了解辐照纤维状蛋白质中发生的导致黄色发色团形成的光氧化途径提供了线索。

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