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The role of conserved surface hydrophobic residues in the carbapenemase activity of the class D β-lactamases.

Acta Crystallogr D Struct Biol. 2017; 
Toth M, Smith CA, Antunes NT, Stewart NK, Maltz L, Vakulenko SB.
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摘要

Carbapenem-hydrolyzing class D β-lactamases (CHDLs) produce resistance to the last-resort carbapenem antibiotics and render these drugs ineffective for the treatment of life-threatening infections. Here, it is shown that among the clinically important CHDLs, OXA-143 produces the highest levels of resistance to carbapenems and has the highest catalytic efficiency against these substrates. Structural data demonstrate that acylated carbapenems entirely fill the active site of CHDLs, leaving no space for water molecules, including the deacylating water. Since the entrance to the active site is obstructed by the acylated antibiotic, the deacylating water molecule must take a different route for entry. It is shown t... More

关键词

antibiotic resistance; carbapenemase; crystal structure; enzyme kinetics; mechanism of resistance