Dyer J M, Bringans S D, Bryson W G
Canesis Network Ltd., Cnr Gerald and Springs Rds, Lincoln, New Zealand.
Photochem Photobiol Sci. 2006 Jul;5(7):698-706. doi: 10.1039/b603030k. Epub 2006 Jun 7.
Understanding the photodegradation of complex protein systems represents a significant goal in protein science. The photo-oxidation and resultant photoyellowing of wool in sunlight is a severe impediment to its marketability. However, although some photomodifications have been found in irradiated model amino acid systems, direct identification of the chromophoric photoproducts responsible for photoyellowing in irradiated wool itself has proved elusive. We here describe the direct characterisation and location of yellow chromophores and related photomodifications within the proteins of photoyellowed wool fabric, utilising a quasi-proteomic approach. In total, eight distinct photoproducts were characterised. Of these, five were derived from tryptophan; namely hydroxytryptophan, N-formylkynurenine, kynurenine, residues consistent with the dehydration of kynurenine, and hydroxykynurenine, while three were derived from tyrosine; namely dihydroxyphenylalanine, dityrosine, and a cross-linked residue consistent with a hydroxylated dityrosine residue. Fourteen modified peptide sequences were identified and the positions of modification for thirteen of these were located within the primary structure of known wool proteins. The nature of the photoproducts characterised offer valuable insight into the reaction pathways followed in the UV-induced photoyellowing of wool proteins.
了解复杂蛋白质系统的光降解是蛋白质科学的一个重要目标。羊毛在阳光下的光氧化及由此产生的光黄变严重阻碍了其市场销售。然而,尽管在辐照的模型氨基酸系统中发现了一些光修饰,但直接鉴定导致辐照羊毛本身光黄变的发色光产物却一直难以实现。我们在此描述了利用一种准蛋白质组学方法对光黄变羊毛织物蛋白质中的黄色发色团及相关光修饰进行直接表征和定位。总共鉴定出了八种不同的光产物。其中,五种源自色氨酸,即羟基色氨酸、N-甲酰犬尿氨酸、犬尿氨酸、与犬尿氨酸脱水一致的残基以及羟基犬尿氨酸,而三种源自酪氨酸,即二羟基苯丙氨酸、二酪氨酸以及与羟基化二酪氨酸残基一致的交联残基。鉴定出了14个修饰肽序列,其中13个的修饰位置位于已知羊毛蛋白的一级结构内。所表征的光产物的性质为羊毛蛋白紫外线诱导光黄变所遵循的反应途径提供了有价值的见解。