Institut des Biomolécules Max Mousseron, UMR5247 CNRS, Université de Montpellier, ENSCM, Faculté de Pharmacie, 34093 Montpellier, France.
Dipartimento di Biotecnologie Mediche, Università di Siena, I-53100 Siena, Italy.
Biomolecules. 2020 Jul 23;10(8):1094. doi: 10.3390/biom10081094.
To fight the increasingly worrying bacterial resistance to antibiotics, the discovery and development of new therapeutics is urgently needed. Here, we report on a new series of 1,2,4-triazole-3-thione compounds as inhibitors of metallo-β-lactamases (MBLs), which represent major resistance determinants to β-lactams, and especially carbapenems, in Gram-negative bacteria. These molecules are stable analogs of 4-amino-1,2,4-triazole-derived Schiff bases, where the hydrazone-like bond has been reduced (hydrazine series) or the 4-amino group has been acylated (hydrazide series); the synthesis and physicochemical properties thereof are described. The inhibitory potency was determined on the most clinically relevant acquired MBLs (IMP-, VIM-, and NDM-types subclass B1 MBLs). When compared with the previously reported hydrazone series, hydrazine but not hydrazide analogs showed similarly potent inhibitory activity on VIM-type enzymes, especially VIM-2 and VIM-4, with values in the micromolar to submicromolar range. One of these showed broad-spectrum inhibition as it also significantly inhibited VIM-1 and NDM-1. Restoration of β-lactam activity in microbiological assays was observed for one selected compound. Finally, the binding to the VIM-2 active site was evaluated by isothermal titration calorimetry and a modeling study explored the effect of the linker structure on the mode of binding with this MBL.
为了对抗日益令人担忧的细菌对抗生素的耐药性,迫切需要发现和开发新的治疗方法。在这里,我们报告了一系列新的 1,2,4-三唑-3-硫酮化合物,它们是金属β-内酰胺酶(MBLs)的抑制剂,MBLs 是革兰氏阴性菌中对β-内酰胺类药物(尤其是碳青霉烯类药物)耐药的主要决定因素。这些分子是 4-氨基-1,2,4-三唑衍生的席夫碱的稳定类似物,其中腙类似键已被还原(肼系列)或 4-氨基被酰化(酰肼系列);描述了它们的合成和物理化学性质。在最具临床相关性的获得性 MBL(IMP-、VIM-和 NDM 型亚类 B1 MBL)上测定了抑制效力。与先前报道的腙系列相比,肼而不是酰肼类似物对 VIM 型酶表现出类似的强抑制活性,尤其是 VIM-2 和 VIM-4, 值在微摩尔至亚微摩尔范围内。其中一种显示出广谱抑制作用,因为它还显著抑制了 VIM-1 和 NDM-1。在微生物测定中观察到一种选定化合物恢复了β-内酰胺的活性。最后,通过等温滴定量热法评估了与 VIM-2 活性位点的结合,建模研究探讨了连接体结构对与该 MBL 结合模式的影响。