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酪氨酸酶对甜菜色素的单酚酶活性表征:酪胺 - 甜菜色素/多巴胺 - 甜菜色素对

Characterization of the monophenolase activity of tyrosinase on betaxanthins: the tyramine-betaxanthin/dopamine-betaxanthin pair.

作者信息

Gandía-Herrero Fernando, Escribano Josefa, García-Carmona Francisco

机构信息

Departamento de Bioquímica y Biología Molecular A, Unidad Docente de Biología, Facultad de Veterinaria, Universidad de Murcia, 30100, Espinardo, Spain.

出版信息

Planta. 2005 Oct;222(2):307-18. doi: 10.1007/s00425-005-1526-4. Epub 2005 Jun 21.

Abstract

Tyrosinase or polyphenol oxidase (EC 1.14.18.1) is the key enzyme responsible for melanin biosynthesis and for the enzymatic browning of fruits and vegetables. Although the function of tyrosinase in the secondary metabolism of plants remains unclear, it has been proposed that the enzyme plays a role in the betalain biosynthetic pathway. Betalains are an important class of water-soluble pigments, characteristic of plants belonging to the order Caryophyllales. In the present work, the betaxanthins tyramine-betaxanthin (miraxanthin III) and dopamine-betaxanthin (miraxanthin V) are reported as new natural substrates for tyrosinase. The result of the diphenolase activity of the enzyme on dopamine-betaxanthin was a series of products identified by HPLC and ESI-MS as quinone-derivatives. Data indicate that dopamine-betaxanthin-quinone is obtained and evolves to more stable species by intramolecular cyclization. The kinetic parameters evaluated for the diphenolase activity were V(m) = 74.4 microM min(-1), K(m) = 94.7 microM. Monophenolase activity on tyramine-betaxanthin yielded the same compounds in the absence of a reducing agent, but when ascorbic acid was present enzymatic conversion to dopamine-betaxanthin could be found. For the first time, kinetic characterization of the monophenolase activity of tyrosinase on betaxanthins is provided (V(m) = 10.4 microM min(-1) and K(m) = 126.9 microM) and a lag period is described and analyzed according to the mechanism of action of the enzyme. The high affinity shown by tyrosinase for these substrates may be indicative of a previously unconsidered physiological role in betalain metabolism. A possible mechanism for the formation of 2-descarboxy-betacyanins from tyramine-betaxanthin by tyrosinase is also discussed.

摘要

酪氨酸酶或多酚氧化酶(EC 1.14.18.1)是负责黑色素生物合成以及水果和蔬菜酶促褐变的关键酶。尽管酪氨酸酶在植物次生代谢中的功能尚不清楚,但有人提出该酶在甜菜色素生物合成途径中起作用。甜菜色素是一类重要的水溶性色素,是石竹目植物的特征。在本研究中,报道了β-胡萝卜素酪胺-β-胡萝卜素(米拉克黄质III)和多巴胺-β-胡萝卜素(米拉克黄质V)是酪氨酸酶的新天然底物。该酶对多巴胺-β-胡萝卜素的双酚酶活性结果是一系列通过HPLC和ESI-MS鉴定为醌衍生物的产物。数据表明,多巴胺-β-胡萝卜素-醌已获得,并通过分子内环化演变成更稳定的物种。对双酚酶活性评估的动力学参数为V(m)=74.4μM min(-1),K(m)=94.7μM。在没有还原剂的情况下,对酪胺-β-胡萝卜素的单酚酶活性产生相同的化合物,但当存在抗坏血酸时,可以发现酶促转化为多巴胺-β-胡萝卜素。首次提供了酪氨酸酶对β-胡萝卜素单酚酶活性的动力学表征(V(m)=10.4μM min(-1),K(m)=126.9μM),并根据酶的作用机制描述和分析了延迟期。酪氨酸酶对这些底物表现出的高亲和力可能表明在甜菜色素代谢中存在以前未考虑的生理作用。还讨论了酪氨酸酶由酪胺-β-胡萝卜素形成2-脱羧-甜菜青素的可能机制。

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