Zaidi Kamal Uddin, Ali Ayesha S, Ali Sharique A, Naaz Ishrat
Molecular Biotechnology Laboratory, Centre for Scientific Research & Development, People's University, Bhanpur, Bhopal 462010, India ; Department of Biotechnology, Saifia College of Science, Bhopal 462001, India.
Department of Biotechnology, Saifia College of Science, Bhopal 462001, India.
Biochem Res Int. 2014;2014:854687. doi: 10.1155/2014/854687. Epub 2014 May 6.
Tyrosinase is a natural enzyme and is often purified to only a low degree and it is involved in a variety of functions which mainly catalyse the o-hydroxylation of monophenols into their corresponding o-diphenols and the oxidation of o-diphenols to o-quinones using molecular oxygen, which then polymerizes to form brown or black pigments. The synthesis of o-diphenols is a potentially valuable catalytic ability and thus tyrosinase has attracted a lot of attention with respect to industrial applications. In environmental technology it is used for the detoxification of phenol-containing wastewaters and contaminated soils, as biosensors for phenol monitoring, and for the production of L-DOPA in pharmaceutical industries, and is also used in cosmetic and food industries as important catalytic enzyme. Melanin pigment synthesized by tyrosinase has found applications for protection against radiation cation exchangers, drug carriers, antioxidants, antiviral agents, or immunogen. The recombinant V. spinosum tryosinase protein can be used to produce tailor-made melanin and other polyphenolic materials using various phenols and catechols as starting materials. This review compiles the recent data on biochemical and molecular properties of microbial tyrosinases, underlining their importance in the industrial use of these enzymes. After that, their most promising applications in pharmaceutical, food processing, and environmental fields are presented.
酪氨酸酶是一种天然酶,通常只能被纯化到较低程度,它参与多种功能,主要催化单酚的邻位羟基化反应生成相应的邻二酚,并利用分子氧将邻二酚氧化为邻醌,邻醌随后聚合形成棕色或黑色色素。邻二酚的合成是一种具有潜在价值的催化能力,因此酪氨酸酶在工业应用方面受到了广泛关注。在环境技术中,它用于含酚废水和受污染土壤的解毒,作为酚监测的生物传感器,以及在制药工业中用于生产左旋多巴,并且在化妆品和食品工业中也作为重要的催化酶使用。由酪氨酸酶合成的黑色素已被应用于辐射防护、阳离子交换剂、药物载体、抗氧化剂、抗病毒剂或免疫原等领域。重组的棘孢曲霉酪氨酸酶蛋白可用于以各种酚类和儿茶酚为起始原料生产定制的黑色素和其他多酚类物质。本综述汇编了关于微生物酪氨酸酶生化和分子特性的最新数据,强调了它们在这些酶的工业应用中的重要性。之后,介绍了它们在制药、食品加工和环境领域最有前景的应用。