Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology
Summary Laccases are multicopper containing enzymes capable of performing one electron oxidation of a broad range of substrates. Using molecular oxygen as the final electron acceptor, they release only water as a by‐product, and as such, laccases are eco‐friendly, versatile biocatalysts that have ge...
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Series: | Microbial Biotechnology |
Online Access: | https://doi.org/10.1111/1751-7915.12422 |
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doaj-ed72a723651d4bf3b9ed2ae410449abd2020-11-25T03:50:03ZengWileyMicrobial Biotechnology1751-79152017-11-011061457146710.1111/1751-7915.12422Laccase: a multi‐purpose biocatalyst at the forefront of biotechnologyDiana M. Mate0Miguel Alcalde1Department of Biocatalysis Institute of Catalysis CSIC Cantoblanco 28049 Madrid SpainDepartment of Biocatalysis Institute of Catalysis CSIC Cantoblanco 28049 Madrid SpainSummary Laccases are multicopper containing enzymes capable of performing one electron oxidation of a broad range of substrates. Using molecular oxygen as the final electron acceptor, they release only water as a by‐product, and as such, laccases are eco‐friendly, versatile biocatalysts that have generated an enormous biotechnological interest. Indeed, this group of enzymes has been used in different industrial fields for very diverse purposes, from food additive and beverage processing to biomedical diagnosis, and as cross‐linking agents for furniture construction or in the production of biofuels. Laccases have also been studied intensely in nanobiotechnology for the development of implantable biosensors and biofuel cells. Moreover, their capacity to transform complex xenobiotics makes them useful biocatalysts in enzymatic bioremediation. This review summarizes the most significant recent advances in the use of laccases and their future perspectives in biotechnology.https://doi.org/10.1111/1751-7915.12422 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Diana M. Mate Miguel Alcalde |
spellingShingle |
Diana M. Mate Miguel Alcalde Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology Microbial Biotechnology |
author_facet |
Diana M. Mate Miguel Alcalde |
author_sort |
Diana M. Mate |
title |
Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
title_short |
Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
title_full |
Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
title_fullStr |
Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
title_full_unstemmed |
Laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
title_sort |
laccase: a multi‐purpose biocatalyst at the forefront of biotechnology |
publisher |
Wiley |
series |
Microbial Biotechnology |
issn |
1751-7915 |
publishDate |
2017-11-01 |
description |
Summary Laccases are multicopper containing enzymes capable of performing one electron oxidation of a broad range of substrates. Using molecular oxygen as the final electron acceptor, they release only water as a by‐product, and as such, laccases are eco‐friendly, versatile biocatalysts that have generated an enormous biotechnological interest. Indeed, this group of enzymes has been used in different industrial fields for very diverse purposes, from food additive and beverage processing to biomedical diagnosis, and as cross‐linking agents for furniture construction or in the production of biofuels. Laccases have also been studied intensely in nanobiotechnology for the development of implantable biosensors and biofuel cells. Moreover, their capacity to transform complex xenobiotics makes them useful biocatalysts in enzymatic bioremediation. This review summarizes the most significant recent advances in the use of laccases and their future perspectives in biotechnology. |
url |
https://doi.org/10.1111/1751-7915.12422 |
work_keys_str_mv |
AT dianammate laccaseamultipurposebiocatalystattheforefrontofbiotechnology AT miguelalcalde laccaseamultipurposebiocatalystattheforefrontofbiotechnology |
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