Laccase engineering: From rational design to directed evolution

漆酶 生化工程 合理设计 生物修复 热稳定性 定向进化 蛋白质工程 化学 生物技术 纳米技术 材料科学 生物 有机化学 污染 生物化学 生态学 工程类 基因 突变体
作者
Diana M. Maté,Miguel Alcalde
出处
期刊:Biotechnology Advances [Elsevier BV]
卷期号:33 (1): 25-40 被引量:257
标识
DOI:10.1016/j.biotechadv.2014.12.007
摘要

Laccases are multicopper oxidoreductases considered by many in the biotechonology field as the ultimate "green catalysts". This is mainly due to their broad substrate specificity and relative autonomy (they use molecular oxygen from air as an electron acceptor and they only produce water as by-product), making them suitable for a wide array of applications: biofuel production, bioremediation, organic synthesis, pulp biobleaching, textiles, the beverage and food industries, biosensor and biofuel cell development. Since the beginning of the 21st century, specific features of bacterial and fungal laccases have been exhaustively adapted in order to reach the industrial demands for high catalytic activity and stability in conjunction with reduced production cost. Among the goals established for laccase engineering, heterologous functional expression, improved activity and thermostability, tolerance to non-natural media (organic solvents, ionic liquids, physiological fluids) and resistance to different types of inhibitors are all challenges that have been met, while obtaining a more comprehensive understanding of laccase structure-function relationships. In this review we examine the most significant advances in this exciting research area in which rational, semi-rational and directed evolution approaches have been employed to ultimately convert laccases into high value-added biocatalysts.
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