Ab'/> Deciphering the complexation process of a fluoroquinolone antibiotic, levofloxacin, with bovine serum albumin in the presence of additives
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Deciphering the complexation process of a fluoroquinolone antibiotic, levofloxacin, with bovine serum albumin in the presence of additives

机译:在添加剂存在下,通过氟喹啉酮抗生素抗生素抗生素抗生素抗生素的络合过程,在添加剂存在下用牛血清白蛋白

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AbstractThe current work aims to explore the thermodynamic and conformational aspects for the binding of fluoroquinolone antibacterial drug, levofloxacin (LFC), with bovine serum albumin (BSA) using calorimetric, spectroscopic (UV–visible, fluorescence, circular dichroism, and1H NMR), dynamic light scattering (DLS) and computational methods (molecular docking). The binding of LFC with BSA at two sequential sites with higher affinity (~103M?1) at the first site has been explored by calorimetry whereas the binding at a single site with affinity of the order of ~104M?1has been observed from fluorescence spectroscopy. The calorimetric study in the presence of additives along with docking analysis reveals the significant role of electrostatic, hydrogen bonding, and hydrophobic interactions in the association process. The slight conformational changes in protein as well as the changes in the water network structure around the binding cavity of protein have been observed from spectroscopic and DLS measurements. The LFC induced quenching of BSA fluorescence was observed to be initiated mainly through the static quenching process and this suggests the formation of ground state LFC-BSA association complex. The stronger interactions of LFC in the cavity of Sudlow site I (subdomain IIA) of protein have been explored from site marker calorimetric and molecular docking study.
机译:<![cdata [ 抽象 当前工作旨在探讨氟喹诺酮抗菌药物,左氧氟沙星(LFC)结合的热力学和构象方面,用牛血清白蛋白(BSA)使用量热,光谱(UV可见,荧光,圆形二色性,以及 1 H NMR),动态光散射(DLS)和计算方法(分子对接)。 LFC与BSA在两个顺序位点的结合,具有较高亲和力的顺序位点(〜10 3 M ?1 )在第一个站点上已经通过量热法探索,而在单个位点的绑定具有〜10 4 m 1 已从荧光光谱中观察到。添加剂存在的热量研究以及对接分析揭示了静电,氢键和疏水相互作用在结合过程中的显着作用。从光谱和DLS测量中观察到蛋白质的微小构象变化以及蛋白质结合腔周围的水网络结构的变化。观察到BSA荧光的LFC诱导猝灭主要通过静态猝灭过程引发,这表明地态LFC-BSA关联复合物的形成。 LFC在Sudlow Site I(亚域IIA)腔中的较强的相互作用从现场标记量热量和分子对接研究探讨了蛋白质。

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