4.7 Article

Characterization of the Biosynthesis Gene Cluster for the Pyrrole Polyether Antibiotic Calcimycin (A23187) in Streptomyces chartreusis NRRL 3882

Journal

ANTIMICROBIAL AGENTS AND CHEMOTHERAPY
Volume 55, Issue 3, Pages 974-982

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AAC.01130-10

Keywords

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Funding

  1. National Science Foundation of China
  2. Ministry of Science and Technology
  3. Ministry of Education of China
  4. Shanghai Municipal Council of Science and Technology
  5. Shanghai Leading Academic Discipline Project
  6. State Key Laboratory of Bio-organic and Natural Products Chemistry (CAS)
  7. National Program of Development of Transgenic New Species of China

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The pyrrole polyether antibiotic calcimycin (A23187) is a rare ionophore that is specific for divalent cations. It is widely used as a biochemical and pharmacological tool because of its multiple, unique biological effects. Here we report on the cloning, sequencing, and mutational analysis of the 64-kb biosynthetic gene cluster from Streptomyces chartreusis NRRL 3882. Gene replacements confirmed the identity of the gene cluster, and in silico analysis of the DNA sequence revealed 27 potential genes, including 3 genes for the biosynthesis of the alpha-ketopyrrole moiety, 5 genes that encode modular type I polyketide synthases for the biosynthesis of the spiroketal ring, 4 genes for the biosynthesis of 3-hydroxyanthranilic acid, an N-methyltransferase tailoring gene, a resistance gene, a type II thioesterase gene, 3 regulatory genes, 4 genes with other functions, and 5 genes of unknown function. We propose a pathway for the biosynthesis of calcimycin and assign the genes to the biosynthesis steps. Our findings set the stage for producing much desired calcimycin derivatives using genetic modification instead of chemical synthesis.

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