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Senile hair graying: H2O2-mediated oxidative stress affects human hair color by blunting methionine sulfoxide repair

机译:衰老的头发变白:H2O2介导的氧化应激通过钝化蛋氨酸亚砜修复而影响人的头发颜色

摘要

Senile graying of human hair has been the subject of intense research since ancient times. Reactive oxygen species have been implicated in hair follicle melanocyte apoptosis and DNA damage. Here we show for the first time by FT-Raman spectroscopy in vivo that human gray/white scalp hair shafts accumulate hydrogen peroxide (H(2)O(2)) in millimolar concentrations. Moreover, we demonstrate almost absent catalase and methionine sulfoxide reductase A and B protein expression via immunofluorescence and Western blot in association with a functional loss of methionine sulfoxide (Met-S=O) repair in the entire gray hair follicle. Accordingly, Met-S=O formation of Met residues, including Met 374 in the active site of tyrosinase, the key enzyme in melanogenesis, limits enzyme functionality, as evidenced by FT-Raman spectroscopy, computer simulation, and enzyme kinetics, which leads to gradual loss of hair color. Notably, under in vitro conditions, Met oxidation can be prevented by L-methionine. In summary, our data feed the long-voiced, but insufficiently proven, concept of H(2)O(2)-induced oxidative damage in the entire human hair follicle, inclusive of the hair shaft, as a key element in senile hair graying, which does not exclusively affect follicle melanocytes. This new insight could open new strategies for intervention and reversal of the hair graying process.
机译:自古以来,人类头发的衰老一直是人们研究的重点。活性氧已与毛囊黑素细胞凋亡和DNA损伤有关。在这里,我们首次通过体内FT-拉曼光谱显示出人的灰色/白色头皮毛干积累的毫摩尔浓度的过氧化氢(H(2)O(2))。此外,我们证明了通过免疫荧光和蛋白质印迹几乎不存在过氧化氢酶和蛋氨酸亚砜还原酶A和B蛋白的表达,以及整个灰发毛囊中蛋氨酸亚砜(Met-S = O)修复的功能丧失。因此,Met-S = O形成的Met残基,包括酪氨酸酶活性位点(黑素生成的关键酶)中的Met 374,限制了酶的功能,这是通过FT拉曼光谱,计算机模拟和酶动力学证明的。头发的颜色逐渐消失。值得注意的是,在体外条件下,L-蛋氨酸可以防止Met氧化。总而言之,我们的数据为长期(但未得到充分证明)H(2)O(2)诱导的整个人类毛囊(包括毛干)中的氧化损伤的概念提供了信息,这是老年发白的关键因素,它并不只影响卵泡黑素细胞。这种新见解可以为干预和逆转头发白化过程打开新的策略。

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