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真菌漆酶:木质纤维素转化的多功能工具。

Fungal laccases: versatile tools for lignocellulose transformation.

机构信息

Department of Organic Chemistry and Biochemistry, University of Naples Federico II, Napoli, Italy.

出版信息

C R Biol. 2011 Nov;334(11):789-94. doi: 10.1016/j.crvi.2011.06.007. Epub 2011 Aug 25.

Abstract

Conversion of lignocellulosic materials to useful, high value products normally requires a pre-treatment step to transform or deconstruct the recalcitrant and heterogeneous lignin fraction. The development of "green tools" for the transformation of lignocellulosic feedstocks is in high demand for a sustainable exploitation of such resources. This multi-faceted challenge is being addressed by an ever-increasing suite of ligninolytic enzymes isolated from various sources. Among these, fungal laccases are known to play an important role in lignin degradation/modification processes. The white-rot fungus Pleurotus ostreatus expresses multiple laccase genes encoding isoenzymes with different properties. The availability of established recombinant expression systems for P. ostreatus laccase isoenzymes has allowed to further enrich the panel of P. ostreatus laccases by the construction of mutated, "better performing" enzymes through molecular evolution techniques. New oxidative catalysts with improved activity and stability either at high temperature and at acidic and alkaline pH have been isolated and characterized.

摘要

将木质纤维素材料转化为有用的高价值产品通常需要进行预处理步骤,以转化或解构顽固且不均匀的木质素部分。为了可持续地利用这些资源,人们迫切需要开发“绿色工具”来转化木质纤维素原料。这一多方面的挑战正通过从各种来源分离的越来越多的木质素氧化酶来解决。在这些酶中,真菌漆酶已知在木质素降解/修饰过程中发挥重要作用。白腐菌糙皮侧耳表达多种漆酶基因,编码具有不同特性的同工酶。已经建立了用于糙皮侧耳漆酶同工酶的重组表达系统,这使得通过分子进化技术构建突变的、“性能更好”的酶,进一步丰富了糙皮侧耳漆酶的种类。已经分离和表征了具有改进的活性和稳定性的新型氧化催化剂,这些催化剂在高温和酸性及碱性 pH 值下具有更好的性能。

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