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靶向细胞分裂蛋白FtsZ的苯甲酰胺衍生物:连接子和苯并二恶烷骨架的修饰及其对抗菌活性的影响。

Benzamide Derivatives Targeting the Cell Division Protein FtsZ: Modifications of the Linker and the Benzodioxane Scaffold and Their Effects on Antimicrobial Activity.

作者信息

Straniero Valentina, Suigo Lorenzo, Casiraghi Andrea, Sebastián-Pérez Victor, Hrast Martina, Zanotto Carlo, Zdovc Irena, De Giuli Morghen Carlo, Radaelli Antonia, Valoti Ermanno

机构信息

Dipartimento di Scienze Farmaceutiche, Università degli Studi di Milano, Via Luigi Mangiagalli, 25, 20133 Milano, Italy.

Centro de Investigaciones Biológicas (CSIC), Ramiro de Maeztu 9, 28040 Madrid, Spain.

出版信息

Antibiotics (Basel). 2020 Apr 4;9(4):160. doi: 10.3390/antibiotics9040160.

Abstract

Filamentous temperature-sensitive Z (FtsZ) is a prokaryotic protein with an essential role in the bacterial cell division process. It is widely conserved and expressed in both Gram-positive and Gram-negative strains. In the last decade, several research groups have pointed out molecules able to target FtsZ in , and other Gram-positive strains, with sub-micromolar Minimum Inhibitory Concentrations (MICs). Conversely, no promising derivatives active on Gram-negatives have been found up to now. Here, we report our results on a class of benzamide compounds, which showed comparable inhibitory activities on both and FtsZ, even though they proved to be substrates of efflux pump AcrAB, thus affecting the antimicrobial activity. These surprising results confirmed how a single molecule can target both species while maintaining potent antimicrobial activity. A further computational study helped us decipher the structural features necessary for broad spectrum activity and assess the drug-like profile and the on-target activity of this family of compounds.

摘要

丝状温度敏感蛋白Z(FtsZ)是一种原核蛋白,在细菌细胞分裂过程中起关键作用。它在革兰氏阳性菌和革兰氏阴性菌中广泛保守并表达。在过去十年中,几个研究小组指出了能够在金黄色葡萄球菌及其他革兰氏阳性菌中靶向FtsZ的分子,其最小抑菌浓度(MIC)为亚微摩尔级。相反,到目前为止尚未发现对革兰氏阴性菌有活性的有前景的衍生物。在此,我们报告了一类苯甲酰胺化合物的研究结果,这类化合物对金黄色葡萄球菌和大肠杆菌的FtsZ均表现出相当的抑制活性,尽管它们被证明是外排泵AcrAB的底物,从而影响了抗菌活性。这些惊人的结果证实了单个分子如何能够靶向这两种菌,同时保持强大的抗菌活性。进一步的计算研究帮助我们解读了广谱活性所需的结构特征,并评估了这类化合物的类药特性和靶向活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf28/7235863/9999fb8af0f9/antibiotics-09-00160-g001.jpg

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