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褐黑素生成后期的化学分析:二氢苯并噻嗪向苯并噻唑结构的转化。

Chemical analysis of late stages of pheomelanogenesis: conversion of dihydrobenzothiazine to a benzothiazole structure.

作者信息

Wakamatsu Kazumasa, Ohtara Kazumi, Ito Shosuke

机构信息

Department of Chemistry, Fujita Health University School of Health Sciences, Toyoake, Aichi, Japan.

出版信息

Pigment Cell Melanoma Res. 2009 Aug;22(4):474-86. doi: 10.1111/j.1755-148X.2009.00580.x. Epub 2009 Jun 11.

Abstract

Pheomelanogenesis is a complex pathway that starts with the oxidation of tyrosine (or DOPA, 3,4-dihydroxyphenylalanine) by tyrosinase in the presence of cysteine, which results in the production of 5-S-cysteinyldopa and its isomers. Beyond that step, relatively little has been clarified except for a possible intermediate produced, dihydro-1,4-benzothiazine-3-carboxylic acid (DHBTCA). We therefore carried out a detailed study on the course of pheomelanogenesis using DOPA and cysteine and the physiological enzyme tyrosinase. To elucidate the later stages of pheomelanogenesis, chemical degradative methods of reductive hydrolysis with hydroiodic acid and alkaline peroxide oxidation were applied. The results show that: (1) DHBTCA accumulates after the disappearance of the cysteinyldopa isomers, (2) DHBTCA is then oxidized by a redox exchange with dopaquinone to form ortho-quinonimine, which leads to the production of pheomelanin with a benzothiazine moiety, and (3) the benzothiazine moiety gradually degrades to form a benzothiazole moiety. This latter process is consistent with the much higher ratio of benzothiazole-derived units in human red hair than in mouse yellow hair. These findings may be relevant to the (photo)toxic effects of pheomelanin.

摘要

褐黑素生成是一条复杂的途径,它始于在半胱氨酸存在下酪氨酸酶将酪氨酸(或多巴,3,4 - 二羟基苯丙氨酸)氧化,这会产生5 - S - 半胱氨酰多巴及其异构体。在这一步之后,除了可能产生的中间体二氢 - 1,4 - 苯并噻嗪 - 3 - 羧酸(DHBTCA)外,相对来说了解得很少。因此,我们使用多巴、半胱氨酸和生理酶酪氨酸酶对褐黑素生成过程进行了详细研究。为了阐明褐黑素生成的后期阶段,应用了用氢碘酸进行还原水解和用过氧化碱进行氧化的化学降解方法。结果表明:(1)在半胱氨酰多巴异构体消失后,DHBTCA积累;(2)然后DHBTCA通过与多巴醌进行氧化还原交换而被氧化,形成邻醌亚胺,这导致产生带有苯并噻嗪部分的褐黑素;(3)苯并噻嗪部分逐渐降解形成苯并噻唑部分。后一过程与人类红发中苯并噻唑衍生单元的比例远高于小鼠黄毛中该比例的情况一致。这些发现可能与褐黑素的(光)毒性作用有关。

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