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neither bound nor inhibited by β-lactams. Recently, two cephalosporins – <scene name='36/365380/Ceftobiprole/4'>ceftobiprole</scene> and | neither bound nor inhibited by β-lactams. Recently, two cephalosporins – <scene name='36/365380/Ceftobiprole/4'>ceftobiprole</scene> and | ||
ceftaroline – that have anti-MRSA activity have been developed. Ceftobiprole is able to | ceftaroline – that have anti-MRSA activity have been developed. Ceftobiprole is able to | ||
| - | inhibit PBP2a because additional chemical groups at the <scene name='36/365380/Ceftobiprole/ | + | inhibit PBP2a because additional chemical groups at the <scene name='36/365380/Ceftobiprole/12'>R2</scene> position of the cephalosporin backbone are able to interact with additional amino acid residues in PBP2a; specifically |
<scene name='36/365380/Ceftobiprole/11'>Tyr446 and Met641</scene>. As a result of its tighter binding to PBP2a, ceftobiprole is able to more | <scene name='36/365380/Ceftobiprole/11'>Tyr446 and Met641</scene>. As a result of its tighter binding to PBP2a, ceftobiprole is able to more | ||
efficiently react with the serine active site residue and therefore inhibit the activity of | efficiently react with the serine active site residue and therefore inhibit the activity of | ||
PBP2a. | PBP2a. | ||
Revision as of 16:00, 14 August 2013
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