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A target-protection mechanism of antibiotic resistance at atomic resolution: insights into FusB-type fusidic acid resistance.

Sci Rep. 2016; 
Tomlinson JH,, Thompson GS,, Kalverda AP,, Zhuravleva A,, O'Neill AJ,.
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Proteins, Expression, Isolation and Analysis For PRE measurements, pET-28a: fusB14 was modified to encode FusB independently har- boring amino acid substitutions R19C and T26C in the N-terminal domain, and N150C in the C-terminal domain (Genscript) which were labelled using MTSL as described in supplementary materials and methods. Get A Quote

摘要

Antibiotic resistance in clinically important bacteria can be mediated by proteins that physically associate with the drug target and act to protect it from the inhibitory effects of an antibiotic. We present here the first detailed structural characterization of such a target protection mechanism mediated through a protein-protein interaction, revealing the architecture of the complex formed between the FusB fusidic acid resistance protein and the drug target (EF-G) it acts to protect. Binding of FusB to EF-G induces conformational and dynamic changes in the latter, shedding light on the molecular mechanism of fusidic acid resistance.

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