首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Multispectroscopic insight, morphological analysis and molecular docking studies of Cu-II-based chemotherapeutic drug entity with human serum albumin (HSA) and bovine serum albumin (BSA)
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Multispectroscopic insight, morphological analysis and molecular docking studies of Cu-II-based chemotherapeutic drug entity with human serum albumin (HSA) and bovine serum albumin (BSA)

机译:用人血清白蛋白(HSA)和牛血清白蛋白(BSA)Cu-II基化学治疗药物实体形态分析及分子对接研究

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摘要

The interaction studies of Cu-II nalidixic acid-DACH chemotherapeutic drug entity, [C36H50N8O6Cu] with serum albumin proteins, viz., human serum albumin (HSA) and bovine serum albumin (BSA) employing UV-vis, fluorescence, CD, FTIR and molecular docking techniques have been carried out. Complex [C36H50N8O6Cu] demonstrated strong binding affinity towards serum albumin proteins via hydrophobic contacts with binding constants, K = 3.18 x 10(5) and 7.44 x 10(4) M-1 for HSA and BSA, respectively implicating a higher binding affinity for HSA. The thermodynamic parameters Delta G, Delta H and Delta S at different temperatures were also calculated and the interaction of complex [C36H50N8O6Cu] with HSA and BSA was found to be enthalpy and entropy favoured, nevertheless, complex [C36H50N8O6Cu] demonstrated higher binding affinity towards HSA than BSA evidenced from its higher binding constant values. Time resolved fluorescence spectroscopy (TRFS) was carried out to validate the static quenching mechanism of HSA/BSA fluorescence. The collaborative results of spectroscopic studies indicated that the microenvironment and the conformation of HSA and BSA (alpha-helix) were significantly perturbed upon interaction with complex [C36H50N8O6Cu]. Hirshfeld surfaces analysis and fingerprint plots revealed various intermolecular interactions viz., N-H center dot center dot center dot center dot O, O-H center dot center dot center dot center dot O and C-H center dot center dot center dot center dot O linkages in a 2-dimensional framework that provide crucial information about the supramolecular architectures in the complex. Molecular docking studies were carried out to ascertain the preferential binding mode and affinity of complex [C36H50N8O6Cu] at the target site of HSA and BSA. Furthermore, only for Transmission electroscopy microscopy micrographs of HSA and BSA in presence of complex [C36H50N8O6Cu] revealed major protein morphological transitions and aggregation which validates efficient delivery of complex by serum proteins to the target site.
机译:Cu-II Nalidxic acid酸-DACH化学治疗药物实体,[C36H50N806CU]与血清白蛋白,ZIZ,荧光,CD,FTIR及其血清白蛋白(HSA)和牛血清白蛋白(BSA)的相互作用研究已经进行了分子对接技术。复合物[C36H50N8O6CU]通过疏水触点对HSA和BSA的结合常数,K = 3.18×10(5)和7.44×10(4)m-1施加强血清白蛋白蛋白的强粘合亲和力分别对HSA的更高的结合亲和力来说。还计算了不同温度下的热力学参数δg,delta h和δs,发现复合物[c36h50n8o6cu]与HSA和BSA的相互作用是焓和熵优,复杂的[C36H50N8O6CU]对HSA表现出更高的结合亲和力比BSA从其更高的绑定恒定值证明。进行时间分辨荧光光谱(TRF)以验证HSA / BSA荧光的静态猝灭机制。光谱研究的协作结果表明,在与复合物[C36H50N8O6CU]相互作用时显着扰乱了微环境和HSA和BSA(α-螺旋)的构象。 Hirshfeld表面分析和指纹图显示各种分子间相互作用即,NH中心点中心的点中心的点中心的点O,OH中心点中心的点中心的点中心的点O和CH中心点中心的点中心的点中心的点连接键在2-尺寸框架,提供关于复杂中的超分子架构的重要信息。进行了分子对接研究,以确定复合物[C36H50N8O6CU]在HSA和BSA靶位点的优先结合模式和亲和力。此外,仅在复合物[C36H50N8O6CU]存在的主要蛋白质形态转变和聚集中仅针对HSA和BSA的透射电镜显微镜显微镜显微镜显微镜,其验证血清蛋白与靶位点的有效递送复合物的有效递送。

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