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Bioactivity and Mode of Action of Bacterial Tetramic Acids.

Martin KlapperAndré PascholdShuaibing ZhangChristiane WeigelHans-Martin DahseSebastian GötzeSimona PaceStefanie KönigZhigang RaoLisa ReimerOliver WerzPierre Stallforth
Published in: ACS chemical biology (2019)
Microbially produced 3-acyltetramic acids display a diverse range of biological activities. The pyreudiones are new members of this class that were isolated from bacteria of the genus Pseudomonas. Here, we performed a structure-activity relationship study and determined their mode of action. An efficient biomimetic synthesis was developed to synthesize pyreudione A. Pyreudiones and synthetic analogs thereof were tested for their amoebicidal, antibacterial, antiproliferative, and cytotoxic activities. The length of the alkyl side chain and the nature of the amino acid residues within the tetramic acid moiety strongly affected activity, in particular against mycobacteria. The mode of action was shown to correlate with the ability of pyreudiones to act as protonophores. Removal of the acidic proton by methylation of pyreudione A resulted in a loss of bioactivity.
Keyphrases
  • structure activity relationship
  • amino acid
  • ionic liquid
  • dna methylation
  • gene expression
  • escherichia coli
  • anti inflammatory