Kishida Ryo, Ushijima Yohei, Saputro Adhitya G, Kasai Hideaki
Department of Applied Physics, Osaka University, Suita, Osaka, Japan.
Pigment Cell Melanoma Res. 2014 Sep;27(5):734-43. doi: 10.1111/pcmr.12256. Epub 2014 Jun 6.
Dopachrome conversion, in which dopachrome is converted into 5,6-dihydroxyindole (DHI) or 5,6-dihydroxyindole-2-carboxylic acid (DHICA) upstream of eumelanogenesis, is a key step in determining the DHI/DHICA monomer ratio in eumelanin, which affects the antioxidant activity. Although the ratio of DHI/DHICA formed and the conversion rate can be regulated depending on pH, the mechanism is still unclear. To clarify the mechanism, we carried out first-principles calculations. The results showed the kinetic preference of proton rearrangement to form quinone methide intermediate via β-deprotonation. We also identified possible pathways to DHI/DHICA from the quinone methide. The DHI formation can be achieved by spontaneous decarboxylation after proton rearrangement from carboxyl group to 6-oxygen. α-Deprotonation, which leads to DHICA formation, can also proceed with a significantly reduced activation barrier compared with that of the initial dopachrome. Considering the rate of the proton rearrangements in a given pH, we conclude that the conversion is suppressed at acidic pH.
在真黑素生成上游,多巴色素转化为5,6 - 二羟基吲哚(DHI)或5,6 - 二羟基吲哚 - 2 - 羧酸(DHICA)的过程是决定真黑素中DHI/DHICA单体比例的关键步骤,而该比例会影响抗氧化活性。尽管形成的DHI/DHICA比例和转化率可根据pH值进行调节,但其机制仍不清楚。为了阐明该机制,我们进行了第一性原理计算。结果表明质子重排通过β - 去质子化形成醌甲基化物中间体的动力学偏好。我们还确定了从醌甲基化物生成DHI/DHICA的可能途径。从羧基到6 - 氧的质子重排后,通过自发脱羧可实现DHI的形成。与初始多巴色素相比,导致DHICA形成的α - 去质子化也能以显著降低的活化能垒进行。考虑到给定pH下质子重排的速率,我们得出结论,在酸性pH下转化受到抑制。