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Synthesis, Structure-Activity Relationship Study, Bioactivity, and Nephrotoxicity Evaluation of the Proposed Structure of the Cyclic Lipodepsipeptide Brevicidine B.
Palpal-Latoc, Dennise; Horsfall, Aimee J; Cameron, Alan J; Campbell, Georgia; Ferguson, Scott A; Cook, Gregory M; Sander, Veronika; Davidson, Alan J; Harris, Paul W R; Brimble, Margaret A.
Afiliação
  • Palpal-Latoc D; School of Chemical Sciences, The University of Auckland, 23 Symonds Street, Auckland 1010, New Zealand.
  • Horsfall AJ; Maurice Wilkins Centre for Molecular Biodiscovery, The University of Auckland, 3 Symonds Street, Auckland 1010, New Zealand.
  • Cameron AJ; School of Biological Sciences, The University of Auckland, 3A Symonds Street, Auckland 1010, New Zealand.
  • Campbell G; School of Chemical Sciences, The University of Auckland, 23 Symonds Street, Auckland 1010, New Zealand.
  • Ferguson SA; Maurice Wilkins Centre for Molecular Biodiscovery, The University of Auckland, 3 Symonds Street, Auckland 1010, New Zealand.
  • Cook GM; School of Biological Sciences, The University of Auckland, 3A Symonds Street, Auckland 1010, New Zealand.
  • Sander V; School of Chemical Sciences, The University of Auckland, 23 Symonds Street, Auckland 1010, New Zealand.
  • Davidson AJ; Maurice Wilkins Centre for Molecular Biodiscovery, The University of Auckland, 3 Symonds Street, Auckland 1010, New Zealand.
  • Harris PWR; School of Biological Sciences, The University of Auckland, 3A Symonds Street, Auckland 1010, New Zealand.
  • Brimble MA; Department of Microbiology and Immunology, School of Medical Sciences, The University of Otago, 720 Cumberland Street, Dunedin 9054, New Zealand.
J Nat Prod ; 87(4): 764-773, 2024 Apr 26.
Article em En | MEDLINE | ID: mdl-38423998
ABSTRACT
The brevicidines represent a novel class of nonribosomal antimicrobial peptides that possess remarkable potency and selectivity toward highly problematic and resistant Gram-negative pathogenic bacteria. A recently discovered member of the brevicidine family, coined brevicidine B (2), comprises a single amino acid substitution (from d-Tyr2 to d-Phe2) in the amino acid sequence of the linear moiety of brevicidine (1) and was reported to exhibit broader antimicrobial activity against both Gram-negative (MIC = 2-4 µgmL-1) and Gram-positive (MIC = 2-8 µgmL-1) pathogens. Encouraged by this, we herein report the first total synthesis of the proposed structure of brevicidine B (2), building on our previously reported synthetic strategy to access brevicidine (1). In agreement with the original isolation paper, pleasingly, synthetic 2 demonstrated antimicrobial activity toward Escherichia coli, Pseudomonas aeruginosa, and Klebsiella pneumoniae (MIC = 4-8 µgmL-1). Interestingly, however, synthetic 2 was inactive toward all of the tested Gram-positive pathogens, including methicillin-resistant Staphylococcus aureus strains. Substitution of d-Phe2 with its enantiomer, and other hydrophobic residues, yields analogues that were either inactive or only exhibited activity toward Gram-negative strains. The striking difference in the biological activity of our synthetic 2 compared to the reported natural compound warrants the re-evaluation of the original natural product for purity or possible differences in relative configuration. Finally, the evaluation of synthetic 1 and 2 in a human kidney organoid model of nephrotoxicity revealed substantial toxicity of both compounds, although 1 was less toxic than 2 and polymyxin B. These results indicate that modification to position 2 may afford a strategy to mitigate the nephrotoxicity of brevicidine.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Testes de Sensibilidade Microbiana / Antibacterianos Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Testes de Sensibilidade Microbiana / Antibacterianos Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article