Faculty of Science, Pavol Jozef Šafárik University, Jesenná 5, 041 54 Košice, Slovakia.
University of Veterinary Medicine & Pharmacy, Komenského 73, 041 81 Košice, Slovakia.
Int J Mol Sci. 2021 Feb 15;22(4):1925. doi: 10.3390/ijms22041925.
The interactions of epoxiconazole and prothioconazole with human serum albumin and bovine serum albumin were investigated using spectroscopic methods complemented with molecular modeling. Spectroscopic techniques showed the formation of pesticide/serum albumin complexes with the static type as the dominant mechanism. The association constants ranged from 3.80 × 10-6.45 × 10 L/mol depending on the pesticide molecule (epoxiconazole, prothioconazole) and albumin type (human or bovine serum albumin). The calculated thermodynamic parameters revealed that the binding of pesticides into serum albumin macromolecules mainly depended on hydrogen bonds and van der Waals interactions. Synchronous fluorescence spectroscopy and the competitive experiments method showed that pesticides bind to subdomain IIA, near tryptophan; in the case of bovine serum albumin also on the macromolecule surface. Concerning prothioconazole, we observed the existence of an additional binding site at the junction of domains I and III of serum albumin macromolecules. These observations were corroborated well by molecular modeling predictions. The conformation changes in secondary structure were characterized by circular dichroism, three-dimensional fluorescence, and UV/VIS absorption methods.
采用光谱法结合分子模拟研究了环氧康唑和丙硫菌唑与人血清白蛋白和牛血清白蛋白的相互作用。光谱技术表明,农药/血清白蛋白复合物的形成以静态型为主导机制。结合常数范围取决于农药分子(环氧康唑、丙硫菌唑)和白蛋白类型(人或牛血清白蛋白),从 3.80×10-6 到 6.45×10 L/mol。计算的热力学参数表明,农药结合到血清白蛋白大分子主要取决于氢键和范德华相互作用。同步荧光光谱和竞争实验方法表明,农药结合到色氨酸附近的亚域 IIA;在牛血清白蛋白的情况下,也结合到大分子表面。关于丙硫菌唑,我们观察到在血清白蛋白大分子的结构域 I 和 III 的交界处存在一个额外的结合位点。这些观察结果与分子建模预测很好地吻合。二级结构的构象变化通过圆二色性、三维荧光和紫外/可见吸收方法进行了表征。