类胡萝卜素
化学
抗菌剂
多重耐药
肽
磷脂
抗菌肽
微生物学
抗生素
生物化学
膜
生物
有机化学
作者
Evgeniy S. Salnikov,Morgane Adélaïde,Francisco Ramos‐Martín,Ahmad Saad,Jennifer Schauer,Martina Cremanns,Mariam Rima,Christopher Aisenbrey,Saoussen Oueslati,Thierry Naas,Niels Pfennigwerth,Soeren G. Gatermann,Catherine Sarazin,Burkhard Bechinger,Nicola D’Amelio
摘要
. Its wide-ranging activity, unaffected by resistance mechanisms or Gram phenotype, prompted us to investigate its molecular mode of action. NMR spectroscopy, paramagnetic probes, and molecular dynamics (MD) simulations were employed to define its structure, penetration depth, and orientation in various membrane models, including micelles, bicelles, oriented bilayers, and vesicles. We found that CatBF's potent activity relies on its strong charge, allowing membrane neutralization at low peptide/lipid ratios and selective recruitment of charged phospholipids. At higher concentrations, a change in peptide orientation reveals membrane invagination and the formation of transient pores possibly leading to bacterial death. Our findings highlight the potential of CatBF as a model for developing resistance-independent agents to combat multidrug-resistant (MDR) bacterial infections.
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