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Teixobactin analogues reveal enduracididine to be non-essential for highly potent antibacterial activity and lipid II binding.
Parmar, Anish; Iyer, Abhishek; Prior, Stephen H; Lloyd, Daniel G; Leng Goh, Eunice Tze; Vincent, Charlotte S; Palmai-Pallag, Timea; Bachrati, Csanad Z; Breukink, Eefjan; Madder, Annemieke; Lakshminarayanan, Rajamani; Taylor, Edward J; Singh, Ishwar.
Afiliação
  • Parmar A; School of Pharmacy , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK . Email: isingh@lincoln.ac.uk.
  • Iyer A; School of Pharmacy , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK . Email: isingh@lincoln.ac.uk.
  • Prior SH; Organic and Biomimetic Chemistry Research Group , Department of Organic and Macromolecular Chemistry , Ghent University , Krijgslaan 281 (S4) , B-9000 Ghent , Belgium.
  • Lloyd DG; School of Chemistry , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
  • Leng Goh ET; School of Life Sciences , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
  • Vincent CS; Singapore Eye Research Institute , The Academia, Discovery Tower Level 6, 20 College Road , Singapore 169857.
  • Palmai-Pallag T; School of Life Sciences , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
  • Bachrati CZ; School of Life Sciences , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
  • Breukink E; School of Life Sciences , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
  • Madder A; Department of Membrane Biochemistry and Biophysics , Institute of Biomembranes , Utrecht University , Padualaan 8 , 3584 CH Utrecht , The Netherlands.
  • Lakshminarayanan R; Organic and Biomimetic Chemistry Research Group , Department of Organic and Macromolecular Chemistry , Ghent University , Krijgslaan 281 (S4) , B-9000 Ghent , Belgium.
  • Taylor EJ; Singapore Eye Research Institute , The Academia, Discovery Tower Level 6, 20 College Road , Singapore 169857.
  • Singh I; School of Life Sciences , University of Lincoln , JBL Building, Beevor St. , Lincoln LN67DL , UK.
Chem Sci ; 8(12): 8183-8192, 2017 Dec 01.
Article em En | MEDLINE | ID: mdl-29568465
ABSTRACT
Teixobactin is a highly promising antibacterial depsipeptide consisting of four d-amino acids and a rare l-allo-enduracididine amino acid. l-allo-Enduracididine is reported to be important for the highly potent antibacterial activity of teixobactin. However, it is also a key limiting factor in the development of potent teixobactin analogues due to several synthetic challenges such as it is not commercially available, requires a multistep synthesis, long and repetitive couplings (16-30 hours). Due to all these challenges, the total synthesis of teixobactin is laborious and low yielding (3.3%). In this work, we have identified a unique design and developed a rapid synthesis (10 min µwave assisted coupling per amino acid, 30 min cyclisation) of several highly potent analogues of teixobactin with yields of 10-24% by replacing the l-allo-enduracididine with commercially available non-polar residues such as leucine and isoleucine. Most importantly, the Leu10-teixobactin and Ile10-teixobactin analogues have shown highly potent antibacterial activity against a broader panel of MRSA and Enterococcus faecalis (VRE). Furthermore, these synthetic analogues displayed identical antibacterial activity to natural teixobactin (MIC 0.25 µg mL-1) against MRSA ATCC 33591 despite their simpler design and ease of synthesis. We have confirmed lipid II binding and measured the binding affinities of individual amino acid residues of Ala10-teixobactin towards geranyl pyrophosphate by NMR to understand the nature and strength of binding interactions. Contrary to current understanding, we have shown that a cationic amino acid at position 10 is not essential for target (lipid II) binding and potent antibacterial activity of teixobactin. We thus provide strong evidence contrary to the many assumptions made about the mechanism of action of this exciting new antibiotic. Introduction of a non-cationic residue at position 10 allows for tremendous diversification in the design and synthesis of highly potent teixobactin analogues and lays the foundations for the development of teixobactin analogues as new drug-like molecules to target MRSA and Mycobacterium tuberculosis.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: Chem Sci Ano de publicação: 2017 Tipo de documento: Article País de publicação: ENGLAND / ESCOCIA / GB / GREAT BRITAIN / INGLATERRA / REINO UNIDO / SCOTLAND / UK / UNITED KINGDOM

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: Chem Sci Ano de publicação: 2017 Tipo de documento: Article País de publicação: ENGLAND / ESCOCIA / GB / GREAT BRITAIN / INGLATERRA / REINO UNIDO / SCOTLAND / UK / UNITED KINGDOM