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Actinorhodin Biosynthesis Terminates with an Unprecedented Biaryl Coupling Reaction.


ABSTRACT: A plethora of dimeric natural products exist with diverse chemical structures and biological activities. A major strategy for dimerization is aryl coupling catalyzed by cytochrome P450 or laccase. Actinorhodin (ACT) from Streptomyces coelicolor A3(2) has a dimeric pyranonaphthoquinone structure connected by a C-C bond. In this study, we identified an NmrA-family dimerizing enzyme, ActVA-ORF4, and a cofactor-independent oxidase, ActVA-ORF3, both involved in the last step of ACT biosynthesis. ActVA-ORF4 is a unique NAD(P)H-dependent enzyme that catalyzes the intermolecular C-C bond formation using 8-hydroxydihydrokalafungin (DHK-OH) as the sole substrate. On the other hand, ActVA-ORF3 was found to be a quinone-forming enzyme that produces the coupling substrate, DHK-OH and the final product, ACT. Consequently, the functional assignment of all essential enzymes in the biosynthesis of ACT, one of the best-known model natural products, has been completed.

SUBMITTER: Hashimoto M 

PROVIDER: S-EPMC10108166 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Actinorhodin Biosynthesis Terminates with an Unprecedented Biaryl Coupling Reaction.

Hashimoto Makoto M   Watari Susumu S   Taguchi Takaaki T   Ishikawa Kazuki K   Kumamoto Takuya T   Okamoto Susumu S   Ichinose Koji K  

Angewandte Chemie (International ed. in English) 20221227 5


A plethora of dimeric natural products exist with diverse chemical structures and biological activities. A major strategy for dimerization is aryl coupling catalyzed by cytochrome P450 or laccase. Actinorhodin (ACT) from Streptomyces coelicolor A3(2) has a dimeric pyranonaphthoquinone structure connected by a C-C bond. In this study, we identified an NmrA-family dimerizing enzyme, ActVA-ORF4, and a cofactor-independent oxidase, ActVA-ORF3, both involved in the last step of ACT biosynthesis. ActV  ...[more]

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