Laccase-mediated synthesis of bioactive natural products and their analogues
Лакказо-опосредованный синтез биологически активных природных соединений и их аналогов
2022-01-01
SCID: 54.1/k7u7v5tu
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bioactive natural productslaccase-mediated synthesislignin depolymerizationmulticopper oxidasesoxidative coupling
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Abstract (AI)
Laccases are a class of multicopper oxidases that catalyse the one-electron oxidation of four equivalents of a reducing substrate, with the concomitant four-electron reduction of dioxygen to water. Typically, they catalyse many anabolic reactions, in which mostly phenolic metabolites were subjected to oxidative coupling. Alternatively, laccases catalyse the degradation or modification of biopolymers like lignin in catabolic processes. In recent years, laccases have proved valuable and green biocatalysts for synthesising compounds with therapeutic value, including antitumor, antibiotic, antimicrobial, and antioxidant agents. Further up to date applications include oxidative depolymerisation of lignin to gain new biomaterials and bioremediation processes of industrial waste. This review summarizes selected examples from the last decade's literature about the laccase-mediated synthesis of biologically active natural products and their analogues; these will include lignans and neolignans, dimeric stilbenoids, biflavonoids, biaryls and other compounds of potential interest for the pharmaceutical industry. In addition, a short section about applications of laccases in natural polymer modification has been included.
Key Findings
1
Laccase-driven oxidative lignin depolymerisation can generate new biomaterials, while laccase-based processes support industrial-waste bioremediation.
2
Laccases catalyse oxidative coupling of phenolic metabolites and can also degrade or modify lignin and other biopolymers.
3
Laccases have emerged as green biocatalysts for synthesising bioactive compounds with antitumor, antibiotic, antimicrobial, and antioxidant properties.
4
Recent applications include laccase-mediated synthesis of lignans, neolignans, dimeric stilbenoids, biflavonoids, biaryls, and related natural-product analogues.
5
The review highlights selected literature from the past decade and additionally examines laccase applications in natural-polymer modification.
Research Object
Laccase-mediated synthesis of bioactive natural products and their analogues
Research Subject
Laccase-catalyzed oxidative coupling, modification, and synthesis of bioactive natural products, their analogues, and natural polymers
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2022-01-01
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