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首页> 外文期刊>Journal of molecular recognition: JMR >Identification and evaluation of quercetin as a potential inhibitor of naphthoate synthase from Enterococcus faecalis Enterococcus faecalis Enterococcus faecalis
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Identification and evaluation of quercetin as a potential inhibitor of naphthoate synthase from Enterococcus faecalis Enterococcus faecalis Enterococcus faecalis

机译:槲皮素鉴定和评价肠球菌鼻窦肠球菌甲磷酸盐合酶潜在抑制剂的鉴定及评价。粪便肠球菌

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Abstract Enterococcus faecalis is a gram‐positive, rod‐shape bacteria responsible for around 65% to 80% of all enterococcal nosocomial infections. It is multidrug resistant (MDR) bacterium resistant to most of the first‐line antibiotics. Due to the emergence of MDR strains, there is an urgent need to find novel targets to develop new antibacterial drugs against E .? faecalis . In this regard, we have identified naphthoate synthase (1,4‐dihydroxy‐2‐naphthoyl‐CoA synthase, EC: 4.1.3.36; DHNS) as an anti‐ E . faecalis target, as it is an essential enzyme for menaquinone (vitamin K 2 ) synthetic pathway in the bacterium. Thus, inhibiting naphtholate synthase may consequently inhibit the bacteria's growth. In this regard, we report here cloning, expression, purification, and preliminary structural studies of naphthoate synthase along with in silico modeling, molecular dynamic simulation of the model and docking studies of naphthoate synthase with quercetin, a plant alkaloid. Biochemical studies have indicated quercetin, a plant flavonoid as the potential lead compound to inhibit catalytic activity of Ef DHNS. Quercetin binding has also been validated by spectrofluorimetric studies in order to confirm the bindings of the ligand compound with Ef DHNS at ultralow concentrations. Reported studies may provide a base for structure‐based drug development of antimicrobial compounds against E .? faecalis .
机译:摘要肠球菌粪便是革兰氏阳性,杆状细菌,负责所有肠球菌神经感染的65%至80%。它是多药(MDR)细菌抗性,对大多数一线抗生素耐药。由于MDR菌株的出现,迫切需要寻找新的靶向对E的新抗菌药物。粪便。在这方面,我们已经确定了萘酸盐合酶(1,4-二羟基-2-萘酰-CoA合酶,EC:4.1.3.36; dhns)作为抗e。粪便靶,因为它是细菌中母蛋白(维生素K 2)合成途径的必需酶。因此,抑制萘甲酸盐合酶可以抑制细菌的生长。在这方面,我们在此报告萘甲酸亚萘酸盐合酶的克隆,表达,纯化和初步结构研究以及丙二醇合酶的模型和对接研究的分子动态模拟与槲皮素,一种植物生物碱。生物化学研究表明槲皮素,一种植物黄酮作为潜在的铅化合物,以抑制EF DHN的催化活性。 Spectrofetric研究还验证了槲皮素结合,以确认配体化合物与EF DHN在超级浓度下的结合。报道的研究可以为抗微生物化合物的基于结构的药物发育提供碱基。?粪便。

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