Biosynthesis of Amphi-enterobactin Siderophores by Vibrio harveyi BAA-1116: Identification of a Bifunctional Nonribosomal Peptide Synthetase Condensation Domain

Journal of the American Chemical Society
2014.0

Abstract

The genome of Vibrio harveyi BAA-1116 contains a nonribosomal peptide synthetase (NRPS) gene cluster (aebA-F) resembling that for enterobactin, yet enterobactin is not produced. A gene predicted to encode a long-chain fatty acid CoA ligase (FACL), similar to enzymes involved in the biosynthesis of acyl peptides, resides 15 kb away from the putative enterobactin-like biosynthetic gene cluster (aebG). The proximity of this FACL gene to the enterobactin-like synthetase suggested that V. harveyi may produce amphiphilic enterobactin-like siderophores. Extraction of the bacterial cell pellet of V. harveyi led to the isolation and structure determination of a suite of eight amphi-enterobactin siderophores composed of the cyclic lactone of tris-2,3-dihydroxybenzoyl-L-serine and acyl-L-serine. The FACL knockout mutant, DeltaaebG V. harveyi, and the NRPS knockout mutant, DeltaaebF V. harveyi, do not produce amphi-enterobactins. The amphi-enterobactin biosynthetic machinery was heterologously expressed in Escherichia coli and reconstituted in vitro, demonstrating the condensation domain of AebF has unique activity, catalyzing two distinct condensation reactions.

Knowledge Graph

Similar Paper

Biosynthesis of Amphi-enterobactin Siderophores by <i>Vibrio harveyi</i> BAA-1116: Identification of a Bifunctional Nonribosomal Peptide Synthetase Condensation Domain
Journal of the American Chemical Society 2014.0
Ambiguity of NRPS Structure Predictions: Four Bidentate Chelating Groups in the Siderophore Pacifibactin
Journal of Natural Products 2019.0
Biosynthesis of the Peptide Antibiotic Feglymycin by a Linear Nonribosomal Peptide Synthetase Mechanism
ChemBioChem 2015.0
Structure and Biosynthesis of Fimsbactins A–F, Siderophores from <i>Acinetobacter baumannii</i> and <i>Acinetobacter baylyi</i>
ChemBioChem 2013.0
Structural Characterization of the Heterobactin Siderophores from <i>Rhodococcus erythropolis</i> PR4 and Elucidation of Their Biosynthetic Machinery
Journal of Natural Products 2013.0
Biosynthesis of the Putative Siderophore Erythrochelin Requires Unprecedented Crosstalk between Separate Nonribosomal Peptide Gene Clusters
Chemistry &amp; Biology 2010.0
Plasticity of the Malleobactin Pathway and Its Impact on Siderophore Action in Human Pathogenic Bacteria
Chemistry – A European Journal 2015.0
Enzymatic Tailoring of Ornithine in the Biosynthesis of the <i>Rhizobium</i> Cyclic Trihydroxamate Siderophore Vicibactin
Journal of the American Chemical Society 2009.0
Enterobactin: the characteristic catecholate siderophore of Enterobacteriaceae is produced by<i>Streptomyces</i>species
FEMS Microbiology Letters 2001.0
Structure and Biosynthetic Assembly of Piscibactin, a Siderophore from <i>Photobacterium damselae</i> subsp. <i>piscicida</i>, Predicted from Genome Analysis
European Journal of Organic Chemistry 2012.0