Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an 710127, P. R. China.
Dalton Trans. 2020 Oct 28;49(40):14099-14105. doi: 10.1039/d0dt02430a. Epub 2020 Sep 30.
The widespread prevalence of metallo-β-lactamase (MβL)-mediated pathogens has seriously caused a loss of efficacy of carbapenem antibacterials, the last resort for the treatment of severe infectious diseases. The development of effective MβL inhibitors is an ideal alternative to restore the efficacy of carbapenems. Here we report that Ru complexes can irreversibly inhibit clinically relevant B1 subclass MβLs (NDM-1, IMP-1 and VIM-2) and potentiate meropenem efficacy against MβL-expressing bacteria in vitro and in a mice infection model. The Cys208 residue at the Zn(ii)-binding site and Met67 residue at the β-hairpin loop of an enzyme active pocket are critical for Ru complexes to inhibit NDM-1, which was verified by enzyme kinetics, thermodynamics, NDM-1-C208A mutation and MALDI-TOF-MS analysis. This study will undoubtedly aid efforts to develop metal-based MβL inhibitors in combination with carbapenems to deal with the clinical crisis of carbapenem-resistant E. coli harboring MβLs.
金属β-内酰胺酶(MβL)介导的病原体广泛流行,严重导致碳青霉烯类抗菌药物疗效丧失,而碳青霉烯类抗菌药物是治疗严重感染性疾病的最后手段。开发有效的 MβL 抑制剂是恢复碳青霉烯类药物疗效的理想替代方法。在这里,我们报告 Ru 配合物可以不可逆地抑制临床上相关的 B1 亚类 MβL(NDM-1、IMP-1 和 VIM-2),并增强美罗培南对表达 MβL 的细菌的体外和小鼠感染模型中的疗效。酶活性口袋中 Zn(ii)结合位点的 Cys208 残基和β-发夹环上的 Met67 残基对 Ru 配合物抑制 NDM-1 至关重要,这通过酶动力学、热力学、NDM-1-C208A 突变和 MALDI-TOF-MS 分析得到了验证。这项研究无疑将有助于开发与碳青霉烯类药物联合使用的基于金属的 MβL 抑制剂,以应对携带 MβL 的耐碳青霉烯类大肠杆菌的临床危机。