Sebastián María, Anoz-Carbonell Ernesto, Gracia Begoña, Cossio Pilar, Aínsa José Antonio, Lans Isaías, Medina Milagros
a Departamento de Bioquímica y Biología Molecular y Celular, Facultad de Ciencias , Universidad de Zaragoza , Zaragoza , Spain.
b Institute of Biocomputation and Physics of Complex Systems (BIFI-IQFR and CBsC-CSIC Joint Units) , Universidad de Zaragoza , Zaragoza , Spain.
J Enzyme Inhib Med Chem. 2018 Dec;33(1):241-254. doi: 10.1080/14756366.2017.1411910.
The increase of bacterial strains resistant to most of the available antibiotics shows a need to explore novel antibacterial targets to discover antimicrobial drugs. Bifunctional bacterial FAD synthetases (FADSs) synthesise the flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD). These cofactors act in vital processes as part of flavoproteins, making FADS an essential enzyme. Bacterial FADSs are potential antibacterial targets because of differences to mammalian enzymes, particularly at the FAD producing site. We have optimised an activity-based high throughput screening assay targeting Corynebacterium ammoniagenes FADS (CaFADS) that identifies inhibitors of its different activities. We selected the three best high-performing inhibitors of the FMN:adenylyltransferase activity (FMNAT) and studied their inhibition mechanisms and binding properties. The specificity of the CaFADS hits was evaluated by studying also their effect on the Streptococcus pneumoniae FADS activities, envisaging differences that can be used to discover species-specific antibacterial drugs. The antimicrobial effect of these compounds was also evaluated on C. ammoniagenes, S. pneumoniae, and Mycobacterium tuberculosis cultures, finding hits with favourable antimicrobial properties.
对大多数现有抗生素耐药的细菌菌株数量不断增加,这表明有必要探索新的抗菌靶点以发现抗菌药物。双功能细菌黄素腺嘌呤二核苷酸合成酶(FADSs)可合成黄素单核苷酸(FMN)和黄素腺嘌呤二核苷酸(FAD)。这些辅因子作为黄素蛋白的一部分,在重要过程中发挥作用,使FADS成为一种必需酶。由于与哺乳动物酶存在差异,特别是在FAD产生位点,细菌FADS是潜在的抗菌靶点。我们优化了一种基于活性的高通量筛选测定法,该方法针对产氨棒杆菌FADS(CaFADS),可识别其不同活性的抑制剂。我们选择了FMN:腺苷酸转移酶活性(FMNAT)的三种最佳高性能抑制剂,并研究了它们的抑制机制和结合特性。通过研究它们对肺炎链球菌FADS活性的影响,评估了CaFADS命中物的特异性,设想可以利用这些差异来发现物种特异性抗菌药物。还评估了这些化合物对产氨棒杆菌、肺炎链球菌和结核分枝杆菌培养物的抗菌作用,发现了具有良好抗菌特性的命中物。