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Biosynthesis of fluopsin C, a copper-containing antibiotic from Pseudomonas aeruginosa.


ABSTRACT: Metal-binding natural products contribute to metal acquisition and bacterial virulence, but their roles in metal stress response are underexplored. We show that a five-enzyme pathway in Pseudomonas aeruginosa synthesizes a small-molecule copper complex, fluopsin C, in response to elevated copper concentrations. Fluopsin C is a broad-spectrum antibiotic that contains a copper ion chelated by two minimal thiohydroxamates. Biosynthesis of the thiohydroxamate begins with cysteine and requires two lyases, two iron-dependent enzymes, and a methyltransferase. The iron-dependent enzymes remove the carboxyl group and the α carbon from cysteine through decarboxylation, N-hydroxylation, and methylene excision. Conservation of the pathway in P. aeruginosa and other bacteria suggests a common role for fluopsin C in the copper stress response, which involves fusing copper into an antibiotic against other microbes.

SUBMITTER: Patteson JB 

PROVIDER: S-EPMC8939262 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Biosynthesis of fluopsin C, a copper-containing antibiotic from <i>Pseudomonas aeruginosa</i>.

Patteson Jon B JB   Putz Andrew T AT   Tao Lizhi L   Simke William C WC   Bryant L Henry LH   Britt R David RD   Li Bo B  

Science (New York, N.Y.) 20211118 6570


Metal-binding natural products contribute to metal acquisition and bacterial virulence, but their roles in metal stress response are underexplored. We show that a five-enzyme pathway in <i>Pseudomonas aeruginosa</i> synthesizes a small-molecule copper complex, fluopsin C, in response to elevated copper concentrations. Fluopsin C is a broad-spectrum antibiotic that contains a copper ion chelated by two minimal thiohydroxamates. Biosynthesis of the thiohydroxamate begins with cysteine and requires  ...[more]

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