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虚拟筛选鉴定出对临床相关丝氨酸和金属碳青霉烯酶具有活性的广谱β-内酰胺酶抑制剂。

Virtual screening identifies broad-spectrum β-lactamase inhibitors with activity on clinically relevant serine- and metallo-carbapenemases.

机构信息

Department of Life Sciences, University of Modena and Reggio Emilia, Via Campi 103, 41125, Modena, Italy.

Department of Drug Science and Technology, University of Turin, Via Pietro Giuria 9, 10125, Turin, Italy.

出版信息

Sci Rep. 2020 Jul 29;10(1):12763. doi: 10.1038/s41598-020-69431-y.

Abstract

Bacteria are known to evade β-lactam antibiotic action by producing β-lactamases (BLs), including carbapenemases, which are able to hydrolyze nearly all available β-lactams. The production of BLs represents one of the best known and most targeted mechanisms of resistance in bacteria. We have performed the parallel screening of commercially available compounds against a panel of clinically relevant BLs: class A CTX-M-15 and KPC-2, subclass B1 NDM-1 and VIM-2 MBLs, and the class C P. aeruginosa AmpC. The results show that all BLs prefer scaffolds having electron pair donors: KPC-2 is preferentially inhibited by sulfonamide and tetrazole-based derivatives, NDM-1 by compounds bearing a thiol, a thiosemicarbazide or thiosemicarbazone moiety, while VIM-2 by triazole-containing molecules. Few broad-spectrum BLs inhibitors were identified; among these, compound 40 potentiates imipenem activity against an NDM-1-producing E. coli clinical strain. The binary complexes of the two most promising compounds binding NDM-1 and VIM-2 were obtained at high resolution, providing strong insights to improve molecular docking simulations, especially regarding the interaction of MBLs with inhibitors.

摘要

细菌通过产生β-内酰胺酶(BLs)来逃避β-内酰胺类抗生素的作用,包括碳青霉烯酶,它们能够水解几乎所有可用的β-内酰胺类药物。BLs 的产生是细菌中最知名和最受关注的耐药机制之一。我们对商业上可获得的化合物进行了平行筛选,以对抗一组临床相关的 BLs:A 类 CTX-M-15 和 KPC-2、B1 亚类 NDM-1 和 VIM-2 MBLs,以及 C 类铜绿假单胞菌 AmpC。结果表明,所有 BLs 都优先选择具有电子对供体的支架:KPC-2 优先被磺胺和四唑衍生物抑制,NDM-1 被含有巯基、硫代半缩醛或硫代缩醛部分的化合物抑制,而 VIM-2 则被含三唑的分子抑制。鉴定出了少数广谱 BLs 抑制剂;其中,化合物 40 增强了亚胺培南对产 NDM-1 的大肠杆菌临床株的活性。获得了与 NDM-1 和 VIM-2 结合的两种最有前途的化合物的二元复合物的高分辨率结构,为改进分子对接模拟提供了强有力的见解,特别是关于 MBLs 与抑制剂的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b66/7391774/c746f13eb01f/41598_2020_69431_Str1_HTML.jpg

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