对耐多药鲍曼不动杆菌有效的 AdeIJK 泵特异性抑制剂

IF 4 2区 医学 Q2 CHEMISTRY, MEDICINAL ACS Infectious Diseases Pub Date : 2024-05-24 DOI:10.1021/acsinfecdis.4c00190
Rushikesh Tambat, Rama Kumar Kinthada, Aysegul Saral Sariyer, Inga V. Leus, Emrah Sariyer, Napoleon D’Cunha, Hinman Zhou, Makaila Leask, John K. Walker* and Helen I. Zgurskaya*, 
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摘要

耐多药鲍曼不动杆菌是一种严重威胁人类健康的病原体,在临床上迅速蔓延,并引起一系列复杂的人类感染。造成鲍曼不动杆菌耐药性的主要原因是耐药-结节-分裂(RND)超家族蛋白中的 AdeIJK 和 AdeABC 多药外流泵的过度产生。流出泵在抗生素耐药性中的主导作用以及鲍曼不动杆菌外膜对两亲化合物相对较高的通透性使这种病原体成为发现临床相关流出泵抑制剂的一个有希望的靶点。在这项研究中,我们发现了对鲍曼不动杆菌 AdeIJK 外排泵具有抑制活性的 4,6-二氨基喹啉类似物,并对这些化合物进行了重点合成,以提高其靶向特异性并降低细胞毒性。我们发现了几种候选化合物,它们不仅能增强抗生素红霉素、四环素和新生物素对实验室抗生素敏感菌株鲍曼不动杆菌 ATCC17978 的抗菌活性,还能增强对多种药物耐药的临床分离株 AB5075 和 AYE 的抗菌活性。最好的类似物在低微摩尔浓度下可增强抗生素的活性,其本身不具有抗菌活性,可抑制 AdeIJK 介导的其荧光底物乙啶离子的外流,并且在 A549 人类肺上皮细胞中具有较低的细胞毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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AdeIJK Pump-Specific Inhibitors Effective against Multidrug Resistant Acinetobacter baumannii

Multidrug-resistant Acinetobacter baumannii is a serious threat pathogen rapidly spreading in clinics and causing a range of complicated human infections. The major contributor to A. baumannii antibiotic resistance is the overproduction of AdeIJK and AdeABC multidrug efflux pumps of the resistance-nodulation-division (RND) superfamily of proteins. The dominant role of efflux in antibiotic resistance and the relatively high permeability of the A. baumannii outer membrane to amphiphilic compounds make this pathogen a promising target for the discovery of clinically relevant efflux pump inhibitors. In this study, we identified 4,6-diaminoquoniline analogs with inhibitory activities against A. baumannii AdeIJK efflux pump and followed up on these compounds with a focused synthetic program to improve the target specificity and to reduce cytotoxicity. We identified several candidates that potentiate antibacterial activities of antibiotics erythromycin, tetracycline, and novobiocin not only in the laboratory antibiotic susceptible strain A. baumannii ATCC17978 but also in multidrug-resistant clinical isolates AB5075 and AYE. The best analogs potentiated the activities of antibiotics in low micromolar concentrations, did not have antibacterial activities on their own, inhibited AdeIJK-mediated efflux of its fluorescent substrate ethidium ion, and had low cytotoxicity in A549 human lung epithelial cells.

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来源期刊
ACS Infectious Diseases
ACS Infectious Diseases CHEMISTRY, MEDICINALINFECTIOUS DISEASES&nb-INFECTIOUS DISEASES
CiteScore
9.70
自引率
3.80%
发文量
213
期刊介绍: ACS Infectious Diseases will be the first journal to highlight chemistry and its role in this multidisciplinary and collaborative research area. The journal will cover a diverse array of topics including, but not limited to: * Discovery and development of new antimicrobial agents — identified through target- or phenotypic-based approaches as well as compounds that induce synergy with antimicrobials. * Characterization and validation of drug target or pathways — use of single target and genome-wide knockdown and knockouts, biochemical studies, structural biology, new technologies to facilitate characterization and prioritization of potential drug targets. * Mechanism of drug resistance — fundamental research that advances our understanding of resistance; strategies to prevent resistance. * Mechanisms of action — use of genetic, metabolomic, and activity- and affinity-based protein profiling to elucidate the mechanism of action of clinical and experimental antimicrobial agents. * Host-pathogen interactions — tools for studying host-pathogen interactions, cellular biochemistry of hosts and pathogens, and molecular interactions of pathogens with host microbiota. * Small molecule vaccine adjuvants for infectious disease. * Viral and bacterial biochemistry and molecular biology.
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