Kuzuhara Akio
Central Research Laboratories, Mandom Corp., 5-12, Juniken-cho, Chuo-ku, Osaka 540-8530, Japan.
Biopolymers. 2005 Nov;79(4):173-84. doi: 10.1002/bip.20329.
For the purpose of investigating in detail the influence of chemical modification using 2-iminothiolane hydrochloride (2-IT) on keratin fibers, the structure of cross-sections at various depths of white human hair, treated with 2-IT and then oxidized, was directly analyzed without isolating the cuticle and cortex, using Raman spectroscopy. In particular, the beta-sheet and/or random coil content (beta/R) and the alpha-helix (alpha) content in human hair fibers were estimated by amide I band analysis. The S-S band intensity, amide III (unordered) band intensity, and beta/R content existing from the cuticle region to the center of cortex region of virgin white human hair remarkably increased by performing the chemical modification using 2-IT. On the other hand, not only the S-S band intensity, but also S-O band intensity existing throughout the cortex region of the bleached (damaged) white human hair increased by performing chemical modification using 2-IT. In particular, beta/R content existing throughout the cortex region of the bleached white human hair decreased, while the skeletal C-C stretch (alpha) band intensity at 935 cm(-1) and the alpha content remarkably increased. This indicates a secondary structural change from the random coil form to the alpha-helix form in the proteins existing throughout the cortex region. From these experiments, we concluded that the formation of new disulfide (-SS-) groups resulting from chemical modification using 2-IT induced the secondary structural changes of proteins existing throughout the cortex region.
为了详细研究使用盐酸2-亚氨基硫醇(2-IT)进行化学修饰对角蛋白纤维的影响,利用拉曼光谱法,在不分离角质层和皮质的情况下,直接分析了经2-IT处理然后氧化的白色人发不同深度处的横截面结构。特别地,通过酰胺I带分析估计了人发纤维中的β-折叠和/或无规卷曲含量(β/R)以及α-螺旋(α)含量。通过使用2-IT进行化学修饰,原生白色人发从角质层区域到皮质区域中心的S-S带强度、酰胺III(无序)带强度和β/R含量显著增加。另一方面,通过使用2-IT进行化学修饰,不仅漂白(受损)白色人发整个皮质区域的S-S带强度增加,而且S-O带强度也增加。特别地,漂白白色人发整个皮质区域的β/R含量降低,而935 cm(-1)处的骨架C-C伸缩(α)带强度和α含量显著增加。这表明在整个皮质区域存在的蛋白质中发生了从无规卷曲形式到α-螺旋形式的二级结构变化。从这些实验中,我们得出结论,使用2-IT进行化学修饰产生的新二硫键(-SS-)的形成诱导了整个皮质区域存在的蛋白质的二级结构变化。