4.7 Article

Specific Inhibition of VanZ-Mediated Resistance to Lipoglycopeptide Antibiotics

期刊

出版社

MDPI
DOI: 10.3390/ijms23010097

关键词

antibiotic resistance; benzimidazole; docking; Enterococcus faecium; ligands; lipoglycopeptide antibiotic; MD simulation; Staphylococcus aureus; teicoplanin VanZ

资金

  1. Ministry of Health of the Czech Republic [NU20-03-00309]
  2. project BIOCEV-Biotechnology and Biomedicine Centre of the Academy of Sciences [CZ.1.05/1.1.00/02.0109]
  3. European Regional Development Fund
  4. Institute of Biotechnology [RVO: 86652036]
  5. Czech Science Foundation [19-08176S, 20-09811Y]
  6. Czech Academy of Sciences [LQ200202002]
  7. Charles University [CZ.1.05/1.1.00/02.0109]

向作者/读者索取更多资源

Teicoplanin, a low cytotoxicity antibiotic, is often used in medical practice to treat severe infections caused by gram-positive bacteria. However, the presence of a protein called VanZ can compromise the effectiveness of Teicoplanin. This study predicted the structure of VanZ and identified a new ligand, G3K, which specifically inhibits VanZ-mediated resistance to Teicoplanin.
Teicoplanin is a natural lipoglycopeptide antibiotic with a similar activity spectrum as vancomycin; however, it has with the added benefit to the patient of low cytotoxicity. Both teicoplanin and vancomycin antibiotics are actively used in medical practice in the prophylaxis and treatment of severe life-threatening infections caused by gram-positive bacteria, including methicillin-resistant Staphylococcus aureus, Enterococcus faecium and Clostridium difficile. The expression of vancomycin Z (vanZ), encoded either in the vancomycin A (vanA) glycopeptide antibiotic resistance gene cluster or in the genomes of E. faecium, as well as Streptococcus pneumoniae and C. difficile, was shown to specifically compromise the antibiotic efficiency through the inhibition of teicoplanin binding to the bacterial surface. However, the exact mechanisms of this action and protein structure remain unknown. In this study, the three-dimensional structure of VanZ from E. faecium EnGen0191 was predicted by using the I-TASSER web server. Based on the VanZ structure, a benzimidazole based ligand was predicted to bind to the VanZ by molecular docking. Importantly, this new ligand, named G3K, was further confirmed to specifically inhibit VanZ-mediated resistance to teicoplanin in vivo.

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