Identification of the gene cluster for the dithiolopyrrolone antibiotic holomycin in Streptomyces clavuligerus
- 16 November 2010
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 107 (46) , 19731-19735
- https://doi.org/10.1073/pnas.1014140107
Abstract
Streptomyces clavuligerus, an industrially important producer of clavulanate as well as cephem antibiotics, also produces the N-acylated dithiolopyrrolone antibiotic holomycin, a reported inhibitor of RNA synthesis. The genome sequence of S. clavuligerus ATCC 27064 was examined for a potential biosynthetic gene cluster, assuming that holomycin arises from some derivative of an L-Cys-L-Cys dipeptide that has undergone eight-electron oxidation, fused five-five ring formation, and decarboxylation. ORFs 3483-3492 comprise a candidate cluster, with a predicted acyltransferase, a stand-alone nonribosomal peptide synthetase (NRPS) module, and four flavin-dependent oxidoreductases. Deletions of ORF3488, the NRPS module, and ORF3489, a phosphopantothenoylcysteine decarboxylase homolog, abolished holomycin production both in wild type and in a holomycin-overproducing mutant. Heterologous expression and purification of ORF3488 allowed demonstration of L-Cys-AMP formation and subsequent covalent tethering of Cys to the phosphopantetheinyl arm of the thiolation domain of this NRPS protein. Purified ORF3483 shows acyltransferase activity, converting holothin to holomycin and longer acylated homologs as the last step in antibiotic assembly.Keywords
This publication has 26 references indexed in Scilit:
- Dithiolopyrrolone Antibiotic Formation Induced by Adding Valeric Acid to the Culture Broth of Saccharothrix algeriensisJournal of Natural Products, 2010
- Expression of pyrrothineN-acyltransferase activities inSaccharothrix algeriensisNRRL B-24137: new insights into dithiolopyrrolone antibiotic biosynthetic pathwayJournal of Applied Microbiology, 2009
- Precursor-directed biosynthesis of new dithiolopyrrolone analogs by Saccharothrix algeriensis NRRL B-24137Process Biochemistry, 2008
- Total biosynthesis: in vitro reconstitution of polyketide and nonribosomal peptide pathwaysNatural Product Reports, 2008
- The epipolythiodioxopiperazine (ETP) class of fungal toxins: distribution, mode of action, functions and biosynthesisMicrobiology, 2005
- Biosynthesis and Mode of Action of LantibioticsChemical Reviews, 2005
- Mutants of Streptomyces clavuligerus with Disruptions in Different Genes for Clavulanic Acid Biosynthesis Produce Large Amounts of Holomycin: Possible Cross-Regulation of Two Unrelated Secondary Metabolic PathwaysJournal of Bacteriology, 2002
- Biosynthesis of Complex Polyketides in a Metabolically Engineered Strain of E. coliScience, 2001
- Biologically Active Metabolites from Xenorhabdus Spp., Part 1. Dithiolopyrrolone Derivatives with Antibiotic ActivityJournal of Natural Products, 1991
- The Structures of Thiolutin and Aureothricin, Antibiotics Containing a Unique Pyrrolinonodithiole NucleusJournal of the American Chemical Society, 1955