Tumescenamide C, a cyclic lipodepsipeptide from Streptomyces sp. KUSC_F05, exerts antimicrobial activity against the scab-forming actinomycete Streptomyces scabiei.

J Antibiot (Tokyo)

Department of System Chemotherapy and Molecular Sciences, Division of Medicinal Frontier Sciences, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, 606-8501, Japan.

Published: June 2024

AI Article Synopsis

  • - The study found that tumescenamide C effectively inhibits the growth of the scab-forming pathogen S. scabiei NBRC13768, with an impressive IC value of 1.5 μg/mL.
  • - Researchers generated three resistant strains of S. scabiei, which showed changes in genes involved in transporting cellobiose and related substances, leading to decreased production of the harmful toxin thaxtomin A.
  • - The antimicrobial activity of tumescenamide C appears to be linked to its interaction with the cell wall component wall teichoic acid (WTA), as changes in WTA levels were observed in the resistant strains, suggesting that tumescenamide C targets the bacterial cell wall for its effects

Article Abstract

The antimicrobial activity of tumescenamide C against the scab-forming S. scabiei NBRC13768 was confirmed with a potent IC value (1.5 μg/mL). Three tumescenamide C-resistant S. scabiei strains were generated to compare their gene variants. All three resistant strains contained nonsynonymous variants in genes related to cellobiose/cellotriose transport system components; cebF1, cebF2, and cebG2, which are responsible for the production of the phytotoxin thaxtomin A. Decrease in thaxtomin A production and the virulence of the three resistant strains were revealed by the LC/MS analysis and necrosis assay, respectively. Although the nonsynonymous variants were insufficient for identifying the molecular target of tumescenamide C, the cell wall component wall teichoic acid (WTA) was observed to bind significantly to tumescenamide C. Moreover, changes in the WTA contents were detected in the tumescenamide C-resistant strains. These results imply that tumescenamide C targets the cell wall system to exert antimicrobial effects on S. scabiei.

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Source
http://dx.doi.org/10.1038/s41429-024-00716-4DOI Listing

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