Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas 77030, United States.
Center for Drug Discovery, Baylor College of Medicine, Houston, Texas 77030, United States.
ACS Infect Dis. 2021 Dec 10;7(12):3345-3354. doi: 10.1021/acsinfecdis.1c00501. Epub 2021 Nov 24.
Despite the advances in β-lactamase inhibitor development, limited options exist for the class D carbapenemase known as OXA-48. OXA-48 is one of the most prevalent carbapenemases in carbapenem-resistant infections and is not susceptible to most available β-lactamase inhibitors. Here, we screened various low-molecular-weight compounds (fragments) against OXA-48 to identify functional scaffolds for inhibitor development. Several biphenyl-, naphthalene-, fluorene-, anthraquinone-, and azobenzene-based compounds were found to inhibit OXA-48 with low micromolar potency despite their small size. Co-crystal structures of OXA-48 with several of these compounds revealed key interactions with the carboxylate-binding pocket, Arg214, and various hydrophobic residues of β-lactamase that can be exploited in future inhibitor development. A number of the low-micromolar-potency inhibitors, across different scaffolds, synergize with ampicillin to kill expressing OXA-48, albeit at high concentrations of the respective inhibitors. Additionally, several compounds demonstrated micromolar potency toward the OXA-24 and OXA-58 class D carbapenemases that are prevalent in . This work provides foundational information on a variety of chemical scaffolds that can guide the design of effective OXA-48 inhibitors that maintain efficacy as well as potency toward other major class D carbapenemases.
尽管β-内酰胺酶抑制剂的发展取得了进展,但对于被称为 OXA-48 的类 D 碳青霉烯酶,可用的选择仍然有限。OXA-48 是碳青霉烯耐药感染中最普遍的碳青霉烯酶之一,并且对大多数可用的β-内酰胺酶抑制剂不敏感。在这里,我们针对 OXA-48 筛选了各种低分子量化合物(片段),以确定抑制剂开发的功能支架。尽管它们的体积很小,但几种联苯、萘、芴、蒽醌和偶氮苯为基础的化合物被发现具有抑制 OXA-48 的低微摩尔效力。与这些化合物中的几种的 OXA-48 的共晶结构揭示了与羧酸盐结合口袋、Arg214 和β-内酰胺酶的各种疏水性残基的关键相互作用,这些可以在未来的抑制剂开发中得到利用。尽管在各自抑制剂的高浓度下,许多低微摩尔效力的抑制剂与氨苄西林协同作用以杀死表达 OXA-48 的,但在不同支架的低微摩尔效力抑制剂中,有几种对在中流行的 OXA-24 和 OXA-58 类 D 碳青霉烯酶具有微摩尔效力。这项工作为各种化学支架提供了基础信息,可指导设计有效抑制 OXA-48 的抑制剂,这些抑制剂既保持对其他主要的 D 类碳青霉烯酶的功效,又保持效力。