Laccase versus Laccase-Like Multi-Copper Oxidase: A Comparative Study of Similar Enzymes with Diverse Substrate Spectra

Лакказа и лакказоподобная мультикупровая оксидаза: сравнительное исследование сходных ферментов с различными спектрами субстратов
Julian Ihssen, Linda Thöny‐Meyer, Michael Richter, Renate Reiss, Eric Eichhorn, Boris Schilling
2013-06-03

biocatalysisenzyme classificationlaccase-like multi-copper oxidasesmulti-copper oxidasessubstrate specificity
Laccases (EC 1.10.3.2) are multi-copper oxidases that catalyse the one-electron oxidation of a broad range of compounds including substituted phenols, arylamines and aromatic thiols to the corresponding radicals. Owing to their broad substrate range, copper-containing laccases are versatile biocatalysts, capable of oxidizing numerous natural and non-natural industry-relevant compounds, with water as the sole by-product. In the present study, 10 of the 11 multi-copper oxidases, hitherto considered to be laccases, from fungi, plant and bacterial origin were compared. A substrate screen of 91 natural and non-natural compounds was recorded and revealed a fairly broad but distinctive substrate spectrum amongst the enzymes. Even though the enzymes share conserved active site residues we found that the substrate ranges of the individual enzymes varied considerably. The EC classification is based on the type of chemical reaction performed and the actual name of the enzyme often refers to the physiological substrate. However, for the enzymes studied in this work such classification is not feasible, even more so as their prime substrates or natural functions are mainly unknown. The classification of multi-copper oxidases assigned as laccases remains a challenge. For the sake of simplicity we propose to introduce the term "laccase-like multi-copper oxidase" (LMCO) in addition to the term laccase that we use exclusively for the enzyme originally identified from the sap of the lacquer tree Rhus vernicifera.
1
A comparative screen of 10 multi-copper oxidases from fungi, plants, and bacteria tested their activity against 91 natural and non-natural compounds.
2
Because the physiological substrates and natural functions of most studied enzymes are unknown, conventional EC-based classification as laccases is not feasible.
3
The authors propose the term “laccase-like multi-copper oxidase” (LMCO) for these enzymes, reserving “laccase” for the enzyme originally identified from Rhus vernicifera sap.
4
The enzymes exhibited broad yet distinctive substrate spectra, with substantial variation despite sharing conserved active-site residues.

Multi-copper oxidases from fungal, plant, and bacterial origins, including laccase and laccase-like multi-copper oxidase enzymes

The comparative substrate spectra and classification of these multi-copper oxidases based on their substrate-specific oxidation activities

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2013-06-03
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Julian Ihssen
Linda Thöny‐Meyer
Michael Richter
Renate Reiss
Eric Eichhorn
Boris Schilling
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