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细菌酪氨酸酶在有机合成中的应用。

Application of bacterial tyrosinases in organic synthesis.

机构信息

Applied Microbial and Health Biotechnology Institute, Cape Peninsula University of Technology, PO Box 1906, 7535, Bellville, South Africa.

出版信息

World J Microbiol Biotechnol. 2021 Nov 24;38(1):2. doi: 10.1007/s11274-021-03186-0.

Abstract

Bacterial tyrosinases, as in the case of other bacterial oxidative enzymes, have been found to possess biochemical characteristics that typically make them more suited to applications requiring special operational conditions such as alkaline pH, high or low temperature, the presence of organic solvents, and the presence of inhibitors. Even though a great deal is known about fungal tyrosinases, bacterial tyrosinases still vastly remain underexplored for their potential application in organic synthesis. A literature survey in particular highlights the gaps in our knowledge pertaining to their biochemical properties. Bacterial tyrosinases have not only shown promise in the synthesis of medically important compounds such as L-3,4-dihydroxyphenylalanine (L-DOPA) and melanin but have also seen application in cross-linking reactions of proteins and the polymerization of environmental pollutants. Their ability to catalyse o-hydroxylation reactions have shown some degree of promise in the biocatalytic conversion of resveratrol to piceatannol, tyrosol to hydroxytyrosol, and many more. In this review, we will explore the world of bacterial tyrosinases, their current applications, and future perspectives for the application of these enzymes in organic synthesis.

摘要

细菌酪氨酸酶,与其他细菌氧化酶一样,被发现具有生化特性,这些特性通常使它们更适合需要特殊操作条件的应用,如碱性 pH 值、高温或低温、有机溶剂的存在和抑制剂的存在。尽管人们对真菌酪氨酸酶了解很多,但细菌酪氨酸酶在有机合成中的潜在应用仍未得到充分探索。文献调查特别突出了我们在其生化特性方面知识的差距。细菌酪氨酸酶不仅在合成具有医学重要性的化合物(如 L-3,4-二羟基苯丙氨酸(L-DOPA)和黑色素)方面显示出了前景,而且还在蛋白质的交联反应和环境污染物的聚合中得到了应用。它们催化邻位羟化反应的能力在生物催化转化白藜芦醇为白皮杉醇、酪醇为羟基酪醇等方面显示出了一定的前景。在这篇综述中,我们将探讨细菌酪氨酸酶的世界、它们的当前应用以及这些酶在有机合成中的应用的未来前景。

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