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Protein-inspired antibiotics active against vancomycin- and daptomycin-resistant bacteria.

Nat Commun. 2018; 
Blaskovich Mark A T,Hansford Karl A,Gong Yujing,Butler Mark S,Muldoon Craig,Huang Johnny X,Ramu Soumya,Silva Alberto B,Cheng Mu,Kavanagh Angela M,Ziora Zyta,Premraj Rajaratnam,Lindahl Fredrik,Bradford Tanya A,Lee June C,Karoli Tomislav,Pelingon Ruby,Edwards David J,Amado Maite,Elliott Alysha G,Phetsang Wanida,Daud Noor Huda,Deecke Johan E,Sidjabat Hanna E,Ramaologa Sefetogi,Zuegg Johannes,Betley Jason R,Beevers Andrew P G,Smith Richard A G,Roberts Jason A,Paterson David L,Cooper Matth
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摘要

The public health threat posed by a looming 'post-antibiotic' era necessitates new approaches to antibiotic discovery. Drug development has typically avoided exploitation of membrane-binding properties, in contrast to nature's control of biological pathways via modulation of membrane-associated proteins and membrane lipid composition. Here, we describe the rejuvenation of the glycopeptide antibiotic vancomycin via selective targeting of bacterial membranes. Peptide libraries based on positively charged electrostatic effector sequences are ligated to N-terminal lipophilic membrane-insertive elements and then conjugated to vancomycin. These modified lipoglycopeptides, the 'vancapticins', possess enhanced ... More

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