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高通量发现用于特洛伊木马抗生素的合成铁载体。

High-Throughput Discovery of Synthetic Siderophores for Trojan Horse Antibiotics.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario L8S 4L8, Canada.

Michael G. DeGroote Institute for Infectious Disease Research, McMaster University, Hamilton, Ontario L8S 4L8, Canada.

出版信息

ACS Infect Dis. 2024 Nov 8;10(11):3821-3841. doi: 10.1021/acsinfecdis.4c00359. Epub 2024 Oct 22.

Abstract

To cause infection, bacterial pathogens must overcome host immune factors and barriers to nutrient acquisition. Reproducing these aspects of host physiology in vitro has shown great promise for antibacterial drug discovery. When used as a bacterial growth medium, human serum replicates several aspects of the host environment, including innate immunity and iron limitation. We previously reported that a high-throughput chemical screen using serum as the growth medium enabled the discovery of novel growth inhibitors overlooked by conventional screens. Here, we report that a subset of compounds from this high-throughput serum screen display an unexpected growth enhancing phenotype and are enriched for synthetic siderophores. We selected 35 compounds of diverse chemical structure and quantified their ability to enhance bacterial growth in human serum. We show that many of these compounds chelate iron, suggesting they were acting as siderophores and providing iron to the bacteria. For two different pharmacophores represented among these synthetic siderophores, conjugation to the β-lactam antibiotic ampicillin imparted iron-dependent enhancement in antibacterial activity. Conjugation of the most potent growth-enhancing synthetic siderophore with the monobactam aztreonam produced MLEB-22043, a broad-spectrum antibiotic with significantly improved activity against , , , and . This synthetic siderophore-monobactam conjugate uses multiple TonB-dependent transporters for uptake into . Like aztreonam, MLEB-22043 demonstrated activity against metallo-β-lactamase expressing bacteria, and, when combined with the β-lactamase inhibitor avibactam, was active against clinical strains coexpressing the NDM-1 metallo-β-lactamase and serine β-lactamases. Our work shows that human serum is an effective bacterial growth medium for the high-throughput discovery of synthetic siderophores, enabling the development of novel Trojan Horse antibiotics.

摘要

为了引起感染,细菌病原体必须克服宿主的免疫因素和营养获取障碍。在体外重现宿主生理学的这些方面,为抗菌药物的发现带来了很大的希望。当用作细菌生长培养基时,人血清复制了宿主环境的几个方面,包括先天免疫和铁限制。我们之前报道过,使用血清作为生长培养基的高通量化学筛选使我们能够发现传统筛选忽略的新型生长抑制剂。在这里,我们报告说,从这个高通量血清筛选中获得的一组化合物显示出意想不到的生长增强表型,并且富含合成铁载体。我们选择了 35 种具有不同化学结构的化合物,并定量它们在人血清中增强细菌生长的能力。我们表明,这些化合物中的许多都能螯合铁,这表明它们是作为铁载体起作用,并向细菌提供铁。对于这些合成铁载体中代表的两种不同的药效团,将其与β-内酰胺抗生素氨苄西林缀合赋予了铁依赖性增强的抗菌活性。将最有效的生长增强合成铁载体与单环β-内酰胺抗生素氨曲南缀合,产生了 MLEB-22043,这是一种广谱抗生素,对 、 、 和 的活性显著提高。这种合成铁载体-单环β-内酰胺缀合物使用多个 TonB 依赖性转运蛋白进入 。像氨曲南一样,MLEB-22043对表达金属β-内酰胺酶的细菌具有活性,并且当与β-内酰胺酶抑制剂阿维巴坦联合使用时,对同时表达 NDM-1 金属β-内酰胺酶和丝氨酸β-内酰胺酶的临床菌株有效。我们的工作表明,人血清是用于高通量发现合成铁载体的有效细菌生长培养基,为开发新型特洛伊木马抗生素提供了可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3f9/11556397/ea99a0ee54ac/id4c00359_0001.jpg

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