4.7 Article

Development of teixobactin analogues containing hydrophobic, non-proteogenic amino acids that are highly potent against multidrug-resistant bacteria and biofilms

Journal

EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
Volume 261, Issue -, Pages -

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.ejmech.2023.115853

Keywords

Teixobactin; Antimicrobial resistance; MRSA; VRE; Biofilms; Antibiofilm

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Teixobactin analogues with simplified structures, consisting of commercially available hydrophobic amino acid residues and various combinations of arginines, showed potent antibacterial activity against a broad range of Gram-positive bacteria, including MRSA and VRE strains. These analogues also demonstrated strong antibiofilm activity against Staphylococcus species associated with chronic infections, providing insights for the synthesis of highly potent Teixobactin analogues to combat resistant bacterial infections and biofilms.
Teixobactin is a cyclic undecadepsipeptide that has shown excellent potency against multidrug-resistant pathogens, such as methicillin-resistant Staphylococcus aureus (MRSA) and vancomycin-resistant Enterococci (VRE). In this article, we present the design, synthesis, and antibacterial evaluations of 16 different teixobactin analogues. These simplified analogues contain commercially available hydrophobic, non-proteogenic amino acid residues instead of synthetically challenging expensive L-allo-enduracididine amino acid residue at position 10 together with different combinations of arginines at positions 3, 4 and 9. The new teixobactin analogues showed potent antibacterial activity against a broad panel of Gram-positive bacteria, including MRSA and VRE strains. Our work also presents the first demonstration of the potent antibiofilm activity of teixobactin analogoues against Staphylococcus species associated with serious chronic infections. Our results suggest that the use of hydrophobic, non-proteogenic amino acids at position 10 in combination with arginine at positions 3, 4 and 9 holds the key to synthesising a new generation of highly potent teixobactin analogues to tackle resistant bacterial infections and biofilms.

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