UCL School of Pharmacy, London, UK.
Research Service, Louis Stokes Cleveland Department of Veterans Affairs Medical Center, Cleveland, OH, USA.
Angew Chem Int Ed Engl. 2024 Mar 18;63(12):e202317315. doi: 10.1002/anie.202317315. Epub 2024 Feb 12.
The amino acid substitutions in Klebsiella pneumoniae carbapenemase 2 (KPC-2) that have arisen in the clinic are observed to lead to the development of resistance to ceftazidime-avibactam, a preferred treatment for KPC bearing Gram-negative bacteria. Specific substitutions in the omega loop (R164-D179) result in changes in the structure and function of the enzyme, leading to alterations in substrate specificity, decreased stability, and more recently observed, increased resistance to ceftazidime/avibactam. Using accelerated rare-event sampling well-tempered metadynamics simulations, we explored in detail the structural role of R164 and D179 variants that are described to confer ceftazidime/avibactam resistance. The buried conformation of D179 substitutions produce a pronounced structural disorder in the omega loop - more than R164 mutants, where the crystallographic omega loop structure remains mostly intact. Our findings also reveal that the conformation of N170 plays an underappreciated role impacting drug binding and restricting deacylation. The results further support the hypothesis that KPC-2 D179 variants employ substrate-assisted catalysis for ceftazidime hydrolysis, involving the ring amine of the aminothiazole group to promote deacylation and catalytic turnover. Moreover, the shift in the WT conformation of N170 contributes to reduced deacylation and an altered spectrum of enzymatic activity.
在临床上观察到,肺炎克雷伯菌碳青霉烯酶 2(KPC-2)的氨基酸取代导致对头孢他啶-阿维巴坦的耐药性的产生,头孢他啶-阿维巴坦是治疗携带 KPC 的革兰氏阴性菌的首选药物。ω环(R164-D179)中的特定取代导致酶的结构和功能发生变化,导致底物特异性改变、稳定性降低,最近观察到对头孢他啶/阿维巴坦的耐药性增加。使用加速稀有事件采样的 well-tempered metadynamics 模拟,我们详细探讨了被描述为赋予头孢他啶/阿维巴坦耐药性的 R164 和 D179 变体的结构作用。D179 取代物的埋藏构象在 ω 环中产生明显的结构无序 - 比 R164 突变体更明显,其中晶体学 ω 环结构大多保持完整。我们的发现还表明,N170 的构象在影响药物结合和限制去酰化方面起着被低估的作用。结果进一步支持了 KPC-2 D179 变体利用底物辅助催化进行头孢他啶水解的假设,涉及氨基噻唑基团的环胺来促进去酰化和催化周转。此外,WT 构象的 N170 发生转变导致去酰化减少和酶活性谱发生改变。