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吡唑酮类化合物增强多黏菌素对表达 mcr-1 的大肠杆菌的疗效:体外和体内研究。

Enhancement by pyrazolones of colistin efficacy against mcr-1-expressing E. coli: an in silico and in vitro investigation.

机构信息

Center of Excellence in Biocatalyst and Sustainable Biotechnology, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

Department of Biology, Faculty of Science, Mahidol University, Bangkok, 10400, Thailand.

出版信息

J Comput Aided Mol Des. 2023 Oct;37(10):479-489. doi: 10.1007/s10822-023-00519-z. Epub 2023 Jul 24.

Abstract

Owing to the emergence of antibiotic resistance, the polymyxin colistin has been recently revived to treat acute, multidrug-resistant Gram-negative bacterial infections. Positively charged colistin binds to negatively charged lipids and damages the outer membrane of Gram-negative bacteria. However, the MCR-1 protein, encoded by the mobile colistin resistance (mcr) gene, is involved in bacterial colistin resistance by catalysing phosphoethanolamine (PEA) transfer onto lipid A, neutralising its negative charge, and thereby reducing its interaction with colistin. Our preliminary results showed that treatment with a reference pyrazolone compound significantly reduced colistin minimal inhibitory concentrations in Escherichia coli expressing mcr-1 mediated colistin resistance (Hanpaibool et al. in ACS Omega, 2023). A docking-MD combination was used in an ensemble-based docking approach to identify further pyrazolone compounds as candidate MCR-1 inhibitors. Docking simulations revealed that 13/28 of the pyrazolone compounds tested are predicted to have lower binding free energies than the reference compound. Four of these were chosen for in vitro testing, with the results demonstrating that all the compounds tested could lower colistin MICs in an E. coli strain carrying the mcr-1 gene. Docking of pyrazolones into the MCR-1 active site reveals residues that are implicated in ligand-protein interactions, particularly E246, T285, H395, H466, and H478, which are located in the MCR-1 active site and which participate in interactions with MCR-1 in ≥ 8/10 of the lowest energy complexes. This study establishes pyrazolone-induced colistin susceptibility in E. coli carrying the mcr-1 gene, providing a method for the development of novel treatments against colistin-resistant bacteria.

摘要

由于抗生素耐药性的出现,多黏菌素类药物粘菌素最近被重新用于治疗急性、多重耐药革兰氏阴性细菌感染。带正电荷的粘菌素与带负电荷的脂质结合,破坏革兰氏阴性细菌的外膜。然而,MCR-1 蛋白由移动性粘菌素耐药(mcr)基因编码,通过催化磷酸乙醇胺(PEA)转移到脂质 A 上,中和其负电荷,从而减少其与粘菌素的相互作用,从而参与细菌粘菌素耐药。我们的初步结果表明,用参考吡唑酮化合物治疗显著降低了表达 mcr-1 介导的粘菌素耐药性的大肠杆菌中的粘菌素最小抑菌浓度(Hanpaibool 等人,ACS Omega,2023)。对接-MD 组合用于基于组合的对接方法,以鉴定更多的吡唑酮化合物作为候选 MCR-1 抑制剂。对接模拟表明,测试的 28 个吡唑酮化合物中有 13 个/个的预测结合自由能低于参考化合物。选择其中的 4 个进行体外测试,结果表明所有测试的化合物都可以降低携带 mcr-1 基因的大肠杆菌菌株中的粘菌素 MIC。吡唑酮在 MCR-1 活性位点的对接揭示了与配体-蛋白质相互作用有关的残基,特别是 E246、T285、H395、H466 和 H478,它们位于 MCR-1 活性位点,并参与与 MCR-1 的相互作用在 8/10 个最低能量复合物中。这项研究确立了携带 mcr-1 基因的大肠杆菌中吡唑酮诱导的粘菌素敏感性,为开发针对粘菌素耐药菌的新治疗方法提供了一种方法。

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