Engineering and Applications of fungal laccases for organic synthesis

Конструирование и применение грибных лакказ в органическом синтезе
Antonio Ballesteros, Susana Camarero, Miguel Alcalde, Francisco J. Plou, Adinarayana Kunamneni, Carlos García-Burgos
2008-11-20

directed evolutionfungal laccaseslaccase-mediator systemsorganic synthesisrational design
Laccases are multi-copper containing oxidases (EC 1.10.3.2), widely distributed in fungi, higher plants and bacteria. Laccase catalyses the oxidation of phenols, polyphenols and anilines by one-electron abstraction, with the concomitant reduction of oxygen to water in a four-electron transfer process. In the presence of small redox mediators, laccase offers a broader repertory of oxidations including non-phenolic substrates. Hence, fungal laccases are considered as ideal green catalysts of great biotechnological impact due to their few requirements (they only require air, and they produce water as the only by-product) and their broad substrate specificity, including direct bioelectrocatalysis.Thus, laccases and/or laccase-mediator systems find potential applications in bioremediation, paper pulp bleaching, finishing of textiles, bio-fuel cells and more. Significantly, laccases can be used in organic synthesis, as they can perform exquisite transformations ranging from the oxidation of functional groups to the heteromolecular coupling for production of new antibiotics derivatives, or the catalysis of key steps in the synthesis of complex natural products. In this review, the application of fungal laccases and their engineering by rational design and directed evolution for organic synthesis purposes are discussed.
1
Engineered fungal laccases, developed through rational design and directed evolution, enable selective organic transformations, heteromolecular couplings, antibiotic derivative synthesis, and steps in complex natural-product synthesis.
2
Fungal laccases oxidize phenols, polyphenols, and anilines while reducing oxygen to water through a four-electron transfer process.
3
Laccase and laccase-mediator systems support applications in bioremediation, pulp bleaching, textile finishing, and biofuel cells.
4
Laccases are green biocatalysts requiring only air and producing water as the sole by-product, with broad substrate specificity and potential for direct bioelectrocatalysis.
5
Redox mediators expand laccase reactivity to include non-phenolic substrates, substantially broadening its synthetic applicability.

Fungal laccases and laccase–mediator systems used in organic synthesis

Their engineering and catalytic applications in organic synthesis, including oxidation, heteromolecular coupling, and synthesis of complex molecules

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2008-11-20
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Antonio Ballesteros
Susana Camarero
Miguel Alcalde
Francisco J. Plou
Adinarayana Kunamneni
Carlos García-Burgos
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