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Structure and Biosynthesis of Hectoramide B, a Linear Depsipeptide from Marine Cyanobacterium Moorena producens JHB Discovered via Coculture with Candida albicans.


ABSTRACT: The tropical marine cyanobacterium Moorena producens JHB is a prolific source of secondary metabolites with potential biomedical utility. Previous studies on this strain led to the discovery of several novel compounds such as hectochlorins and jamaicamides. However, bioinformatic analyses of its genome indicate the presence of numerous cryptic biosynthetic gene clusters that have yet to be characterized. To potentially stimulate the production of novel compounds from this strain, it was cocultured with Candida albicans. From this experiment, we observed the increased production of a new compound that we characterize here as hectoramide B. Bioinformatic analysis of the M. producens JHB genome enabled the identification of a putative biosynthetic gene cluster responsible for hectoramide B biosynthesis. This work demonstrates that coculture competition experiments can be a valuable method to facilitate the discovery of novel natural products from cyanobacteria.

SUBMITTER: Ngo TE 

PROVIDER: S-EPMC10949194 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Structure and Biosynthesis of Hectoramide B, a Linear Depsipeptide from Marine Cyanobacterium <i>Moorena producens</i> JHB Discovered via Coculture with <i>Candida albicans</i>.

Ngo Thuan-Ethan TE   Ecker Andrew A   Ryu Byeol B   Guild Aurora A   Remmel Ariana A   Boudreau Paul D PD   Alexander Kelsey L KL   Naman C Benjamin CB   Glukhov Evgenia E   Avalon Nicole E NE   Shende Vikram V VV   Thomas Lamar L   Dahesh Samira S   Nizet Victor V   Gerwick Lena L   Gerwick William H WH  

ACS chemical biology 20240208 3


The tropical marine cyanobacterium <i>Moorena producens</i> JHB is a prolific source of secondary metabolites with potential biomedical utility. Previous studies on this strain led to the discovery of several novel compounds such as hectochlorins and jamaicamides. However, bioinformatic analyses of its genome indicate the presence of numerous cryptic biosynthetic gene clusters that have yet to be characterized. To potentially stimulate the production of novel compounds from this strain, it was c  ...[more]

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