4.6 Article

Investigations on recyclisation and hydrolysis in avibactam mediated serine beta-lactamase inhibition

期刊

ORGANIC & BIOMOLECULAR CHEMISTRY
卷 14, 期 17, 页码 4116-4128

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c6ob00353b

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资金

  1. Creative Materials Discovery Program through the National Research Foundation of Korea (NRF) - Ministry of Science, ICT and Future Planning [2015M3D1A1069705]
  2. Creative Materials Discovery Program through the National Research Foundation of Korea (NRF) - Medical Research Council
  3. Creative Materials Discovery Program through the National Research Foundation of Korea (NRF) - AstraZeneca
  4. MRC [MC_PC_14103, MC_PC_12020, MC_PC_13073] Funding Source: UKRI
  5. Cancer Research UK [16466] Funding Source: researchfish
  6. Medical Research Council [MC_PC_13073, MC_PC_14103, MC_PC_12020] Funding Source: researchfish

向作者/读者索取更多资源

beta-Lactams inhibit penicillin-binding proteins (PBPs) and serine beta-lactamases by acylation of a nucleophilic active site serine. Avibactam is approved for clinical use in combination with ceftazidime, and is a breakthrough non beta-lactam beta-lactamase inhibitor also reacting via serine acylation. Molecular dynamics (MD) and quantum chemical calculations on avibactam-mediated inhibition of a clinically relevant cephalosporinase reveal that recyclisation of the avibactam derived carbamoyl complex is favoured over hydrolysis. In contrast, we show that analogous recyclisation in beta-lactam mediated inhibition is disfavoured. Avibactam recyclisation is promoted by a proton shuttle, a 'structural' water protonating the nucleophilic serine, and stabilization of the negative charge developed on aminocarbonyl oxygen. The results imply the potential of calculations for distinguishing between bifurcating pathways during inhibition and in generating hypotheses for predicting resistance. The inability of beta-lactams to undergo recyclisation may be an Achilles heel, but one that can be addressed by suitably functionalized reversibly binding inhibitors.

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