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Ribosome clearance by FusB-type proteins mediates resistance to the antibiotic fusidic acid

  作者 Cox, G; Thompson, GS; Jenkins, HT; Peske, F; Savelsbergh, A; Rodnina, MV; Wintermeyer, W; Homans, SW; Edwards, TA; O'Neill, AJ  
  选自 期刊  Proceedings of the National Academy of Sciences of the United States of America;  卷期  2012年109-6;  页码  2102-2107  
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[摘要]Resistance to the antibiotic fusidic acid (FA) in the human pathogen Staphylococcus aureus usually results from expression of FusB-type proteins (FusB or FusC). These proteins bind to elongation factor G (EF-G), the target of FA, and rescue translation from FA-mediated inhibition by an unknown mechanism. Here we show that the FusB family are two-domain metalloproteins, the C-terminal domain of which contains a four-cysteine zinc finger with a unique structural fold. This domain mediates a high-affinity interaction with the C-terminal domains of EF-G. By binding to EF-G on the ribosome, FusB-type proteins promote the dissociation of stalled ribosome.EF-G.GDP complexes that form in the presence of FA, thereby allowing the ribosomes to resume translation. Ribosome clearance by these proteins represents a highly unusual antibiotic resistance mechanism, which appears to be fine-tuned by the relative abundance of FusB-type protein, ribosomes, and EF-G.

 
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