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一种具有作为生物催化剂的优良特性的新型漆酶的异源表达、工程改造及特性研究

Heterologous Expression, Engineering and Characterization of a Novel Laccase of with Promising Properties as Biocatalyst.

作者信息

Aza Pablo, Molpeceres Gonzalo, Ruiz-Dueñas Francisco Javier, Camarero Susana

机构信息

Centro de Investigaciones Biológicas Margarita Salas, CSIC. Ramiro de Maeztu 9, 28040 Madrid, Spain.

出版信息

J Fungi (Basel). 2021 May 4;7(5):359. doi: 10.3390/jof7050359.

Abstract

Agaricomycetes fungi responsible for decay of wood and other lignocellulosic substrates constitute a valuable source of lignin-degrading enzymes. Among these enzymes, laccases (multi-copper oxidases) present remarkable biotechnological potential as environmentally friendly biocatalysts able to oxidize a wide range of aromatic compounds using oxygen as the only requirement. Laccases from saprotrophic Agaricales species have been much less studied than laccases from Polyporales, despite the fact that the former fungi are excellent sources of laccases. Here, the gene of a novel laccase of , that is secreted by the fungus during lignocellulose degradation, was synthesised de novo and expressed in using an improved signal peptide previously obtained and enzyme directed evolution. The characterization of the new laccase variants provided new insights on the contribution of different amino acid residues to modulate laccase production, catalytic activity or optimal pH. The selected double-mutated variant also showed interesting properties as a biocatalyst, such as the ability to oxidise a wide range of substrates, including high-redox potential mediators and recalcitrant organic dyes, improved activity at neutral pH and high tolerance to inhibitors. Finally, we demonstrate the existence of three -glycosylation sites in the laccase and their distinct effect on the secretion or catalytic activity of the enzyme.

摘要

导致木材和其他木质纤维素底物腐烂的伞菌纲真菌是木质素降解酶的重要来源。在这些酶中,漆酶(多铜氧化酶)作为环境友好型生物催化剂具有显著的生物技术潜力,它能够以氧气为唯一需求氧化多种芳香族化合物。尽管腐生伞菌目真菌是漆酶的优质来源,但与多孔菌目真菌的漆酶相比,对前者的研究要少得多。在此,我们从头合成了一种新型漆酶的基因,该基因由真菌在木质纤维素降解过程中分泌,并利用先前获得的改进信号肽和酶定向进化技术在[具体表达系统]中进行表达。新漆酶变体的表征为不同氨基酸残基对调节漆酶产量、催化活性或最适pH值的贡献提供了新的见解。所选择的双突变变体作为生物催化剂也表现出有趣的特性,例如能够氧化多种底物,包括高氧化还原电位介质和难降解有机染料,在中性pH下活性提高以及对抑制剂具有高耐受性。最后,我们证明了漆酶中存在三个N -糖基化位点及其对酶的分泌或催化活性的不同影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ff9/8147764/0ec9534fad15/jof-07-00359-g001.jpg

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