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Probing the Molecular Interaction of Triazole Fungicides with Human Serum Albumin by Multispectroscopic Techniques and Molecular Modeling

机译:用多光谱技术和分子模型探讨三唑类杀菌剂与人血清白蛋白的分子相互作用

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摘要

Triazole fungicides, one category of broad-spectrum fungicides, are widely applied in agriculture and medicine. The extensive use leads to many residues and casts potential detrimental effects on aquatic ecosystems and human health. After exposure of the human body, triazole fungicides may penetrate into the bloodstream and interact with plasma proteins. Whether they could have an impact on the structure and function of proteins is still poorly understood. By using multispectroscopic techniques and molecular modeling, the interaction of several typical triazole fungicides with human serum albumin (HSA), the major plasma protein, was investigated. The steady-state and time-resolved fluorescence spectra manifested that static type, due to complex formation, was the dominant mechanism for fluorescence quenching. Structurally related binding modes speculated by thermodynamic parameters agreed with the prediction of molecular modeling. For triadimefon, hydrogen bonding with Arg-218 and Arg-222 played an important role, whereas for imazalil, myclobutanil, and penconazole, the binding process was mainly contributed by hydrophobic and electrostatic interactions. Via alterations in three-dimensional fluorescence and circular dichroism spectral properties, it was concluded that triazoles could induce slight conformational and some microenvironmental changes of HSA. It is anticipated that these data can provide some information for possible toxicity risk of triazole fungicides to human health and be helpful in reinforcing the supervision of food safety.
机译:三唑类杀菌剂是一种广谱杀菌剂,已广泛应用于农业和医学领域。广泛使用会导致许多残留物,并对水生生态系统和人类健康产生潜在的有害影响。人体暴露后,三唑类杀菌剂可能会渗透到血液中并与血浆蛋白相互作用。它们是否会影响蛋白质的结构和功能仍然知之甚少。通过使用多光谱技术和分子建模,研究了几种典型的三唑类杀菌剂与人血浆白蛋白(HSA)(主要血浆蛋白)的相互作用。稳态和时间分辨荧光光谱表明,由于形成复合物,静态类型是荧光猝灭的主要机理。由热力学参数推测的结构相关的结合模式与分子模型的预测相一致。对于三唑酮,与Arg-218和Arg-222的氢键起着重要作用,而对于咪唑,Myclobutanil和Penconazole,结合过程主要是由疏水和静电相互作用引起的。通过改变三维荧光和圆二色性光谱特性,可以得出结论三唑类化合物可以引起HSA的轻微构象变化和一些微环境变化。预计这些数据可以为三唑类杀菌剂对人体健康的潜在毒性风险提供一些信息,并有助于加强对食品安全的监管。

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