Department of Chemistry, South Parks Road, University of Oxford, Oxford OX13QR, UK.
Trends Biotechnol. 2010 Feb;28(2):63-72. doi: 10.1016/j.tibtech.2009.11.001. Epub 2009 Dec 4.
Laccases are blue multicopper oxidases that catalyse the four-electron reduction of O(2) to water coupled with the oxidation of small organic substrates. Secreted basidiomycete white-rot fungal laccases orchestrate this with high thermodynamic efficiency, making these enzymes excellent candidates for exploitation as industrial oxidants. However, these fungi are less tractable genetically than the ascomycetes, which predominantly produce lower-potential laccases. We address the state-of-play regarding expression of high reduction potential laccases in heterologous hosts, and issues regarding enzyme glycosylation status. We describe the synergistic role of structural biology, particularly in unmasking structure-function relationships following genetic modification and their collective impact on laccase yields. Such recent research draws closer the prospect of industrial quantities of designer, fit-for-purpose laccases.
漆酶是一种蓝色多铜氧化酶,能够催化四电子还原 O(2)为水,并与小分子有机底物的氧化偶联。分泌型担子菌白腐真菌漆酶以高热力学效率协调这一过程,使这些酶成为工业氧化剂的理想候选物。然而,与主要产生低电位漆酶的子囊菌相比,这些真菌在遗传上更难处理。我们介绍了在异源宿主中表达高还原电位漆酶的最新进展,以及与酶糖基化状态相关的问题。我们描述了结构生物学的协同作用,特别是在遗传修饰后揭示结构-功能关系及其对漆酶产量的综合影响方面。这些最新研究使工业规模生产设计合理、用途广泛的漆酶的前景更加接近。