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活性黑 5 与人血清白蛋白的相互作用:光谱学和分子动力学模拟方法的结合。

The interactions between Reactive Black 5 and human serum albumin: combined spectroscopic and molecular dynamics simulation approaches.

机构信息

Department of Cell and Molecular Biology, Faculty of Chemistry, University of Kashan, Kashan, 8731751167, Iran.

Department of Biology, Faculty of Science, Shahrekord University, P. O. Box 115, Shahrekord, Iran.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(46):70114-70124. doi: 10.1007/s11356-022-20736-7. Epub 2022 May 18.

Abstract

Azo dyes are made in significant amounts annually and released into the environment after being employed in the industry. There are some reports about the toxic effects of these dyes on several organisms. Thus, the textile dye Reactive Black 5 (RB5) has been examined for its cytotoxic effects on the human serum albumin (HSA) structure. Molecular interaction between RB5 and HSA indicated the combination of docking methods, molecular dynamic simulation, and multi-spectroscopic approaches. HSA's intrinsic fluorescence was well quenched with enhancing RB5 level, confirming complex formation. Molecular dynamics (MD) simulation was done to study the cytotoxic effects of RB5 and HSA conformation. Molecular modeling revealed that the RB5-HSA complex was stabilized by hydrogen bonds and van der Waals interactions. The results of molecular docking revealed that the binding energy of RB5 to HSA was - 27.94 kJ/mol. The change in secondary structure causes the annihilation of hydrogen bonding networks and the reduction of biological activity. This research can indicate a suitable molecular modeling interaction of RB5 and HAS and broaden our knowledge for azo dye toxicity under natural conditions.

摘要

偶氮染料的年生产量很大,在工业中使用后会被排放到环境中。有一些关于这些染料对几种生物的毒性作用的报告。因此,已经研究了纺织染料活性黑 5(RB5)对人血清白蛋白(HSA)结构的细胞毒性作用。RB5 和 HSA 之间的分子相互作用表明,结合了对接方法、分子动力学模拟和多光谱方法。随着 RB5 水平的提高,HSA 的固有荧光被很好地猝灭,证实了复合物的形成。进行了分子动力学(MD)模拟以研究 RB5 和 HSA 构象的细胞毒性作用。分子建模表明,RB5-HSA 复合物通过氢键和范德华相互作用稳定。分子对接的结果表明,RB5 与 HSA 的结合能为-27.94 kJ/mol。二级结构的变化导致氢键网络的破坏和生物活性的降低。这项研究可以表明 RB5 和 HAS 之间合适的分子建模相互作用,并拓宽我们对自然条件下偶氮染料毒性的认识。

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