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Spectroscopic Study on the Interaction between Naphthalimide-Polyamine Conjugates and Bovine Serum Albumin (BSA)

机译:萘二甲酰亚胺-多胺结合物与牛血清白蛋白(BSA)相互作用的光谱研究

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摘要

The effect of a naphthalimide pharmacophore coupled with diverse substituents on the interaction between naphthalimide-polyamine conjugates >1–>4 and bovine serum albumin (BSA) was studied by UV absorption, fluorescence and circular dichroism (CD) spectroscopy under physiological conditions (pH = 7.4). The observed spectral quenching of BSA by the compounds indicated that they could bind to BSA. Furthermore, caloric fluorescent tests revealed that the quenching mechanisms of compounds >1–>3 were basically static type, but that of compound >4 was closer to a classical type. The Ksv values at room temperature for compound-BSA complexes->1-BSA, >2-BSA, >3-BSA and >4-BSA were 1.438 × 104, 3.190 × 104, 5.700 × 104 and 4.745 × 105, respectively, compared with the value of MINS, 2.863 × 104 at Ex = 280 nm. The obtained quenching constant, binding constant and thermodynamic parameter suggested that the binding between compounds >1–>4 with BSA protein, significantly affected by the substituted groups on the naphthalene backbone, was formed by hydrogen bonds, and other principle forces mainly consisting of charged and hydrophobic interactions. Based on results from the analysis of synchronous three-dimensional fluorescence and CD spectra, we can conclude that the interaction between compounds >1–>4 and BSA protein has little impact on the BSA conformation. Calculated results obtained from in silico molecular simulation showed that compound >1 did not prefer either enzymatic drug sites I or II over the other. However, DSII in BSA was more beneficial than DSI for the binding between compounds >2–>4 and BSA protein. The binding between compounds >1–>3 and BSA was hydrophobic in nature, compared with the electrostatic interaction between compound >4 and BSA.
机译:通过紫外吸收,荧光和紫外光谱研究了萘二甲酰亚胺药效基团与各种取代基偶联对萘二甲酰亚胺-多胺偶联物> 1 – > 4 与牛血清白蛋白(BSA)之间相互作用的影响。生理条件(pH = 7.4)下的圆二色性(CD)光谱。观察到的化合物对BSA的光谱猝灭表明它们可以与BSA结合。此外,热荧光测试显示化合物> 1 – > 3 的猝灭机理基本上是静态的,而化合物> 4 的猝灭机理更接近于古典型。化合物-BSA配合物-> 1 -BSA,> 2 -BSA,> 3 -BSA和> 4 < / strong> -BSA分别为1.438×10 4 ,3.190×10 4 ,5.700×10 4 和4.745×10 5 < / sup>分别与Ex = 280 nm时的MINS值2.863×10 4 进行比较。获得的猝灭常数,结合常数和热力学参数表明,化合物> 1 – > 4 与BSA蛋白之间的结合受到了萘骨架上取代基的显着影响。氢键和其他主要作用力主要由带电和疏水相互作用组成。根据同步三维荧光和CD光谱分析的结果,我们可以得出结论,化合物> 1 – > 4 与BSA蛋白之间的相互作用对BSA的影响很小构象。从计算机分子模拟中获得的计算结果表明,化合物> 1 不喜欢酶药物位点I或II。但是,BSA中的DSII在化合物> 2 – > 4 与BSA蛋白之间的结合方面比DSI更有益。与化合物> 4 和BSA之间的静电相互作用相比,化合物> 1 – > 3 与BSA之间的结合具有疏水性。

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