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Shared PKS Module in Biosynthesis of Synergistic Laxaphycins.


ABSTRACT: Cyanobacteria produce a wide range of lipopeptides that exhibit potent membrane-disrupting activities. Laxaphycins consist of two families of structurally distinct macrocyclic lipopeptides that act in a synergistic manner to produce antifungal and antiproliferative activities. Laxaphycins are produced by range of cyanobacteria but their biosynthetic origins remain unclear. Here, we identified the biosynthetic pathways responsible for the biosynthesis of the laxaphycins produced by Scytonema hofmannii PCC 7110. We show that these laxaphycins, called scytocyclamides, are produced by this cyanobacterium and are encoded in a single biosynthetic gene cluster with shared polyketide synthase enzymes initiating two distinct non-ribosomal peptide synthetase pathways. The unusual mechanism of shared enzymes synthesizing two distinct types of products may aid future research in identifying and expressing natural product biosynthetic pathways and in expanding the known biosynthetic logic of this important family of natural products.

SUBMITTER: Heinila LMP 

PROVIDER: S-EPMC7524897 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Shared PKS Module in Biosynthesis of Synergistic Laxaphycins.

Heinilä Lassi Matti Petteri LMP   Fewer David P DP   Jokela Jouni Kalevi JK   Wahlsten Matti M   Jortikka Anna A   Sivonen Kaarina K  

Frontiers in microbiology 20200916


Cyanobacteria produce a wide range of lipopeptides that exhibit potent membrane-disrupting activities. Laxaphycins consist of two families of structurally distinct macrocyclic lipopeptides that act in a synergistic manner to produce antifungal and antiproliferative activities. Laxaphycins are produced by range of cyanobacteria but their biosynthetic origins remain unclear. Here, we identified the biosynthetic pathways responsible for the biosynthesis of the laxaphycins produced by <i>Scytonema h  ...[more]

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