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Investigation of the Interaction between Patulin and Human Serum Albumin by a Spectroscopic Method Atomic Force Microscopy and Molecular Modeling

机译:光谱法原子力显微镜和分子建模研究棒曲霉素与人血清白蛋白之间的相互作用

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摘要

The interaction of patulin with human serum albumin (HSA) was studied in vitro under normal physiological conditions. The study was performed using fluorescence, ultraviolet-visible spectroscopy (UV-Vis), circular dichroism (CD), atomic force microscopy (AFM), and molecular modeling techniques. The quenching mechanism was investigated using the association constants, the number of binding sites, and basic thermodynamic parameters. A dynamic quenching mechanism occurred between HSA and patulin, and the binding constants (K) were 2.60 × 104, 4.59 × 104, and 7.01 × 104 M−1 at 288, 300, and 310 K, respectively. Based on fluorescence resonance energy transfer, the distance between the HSA and patulin was determined to be 2.847 nm. The ΔG 0, ΔH 0, and ΔS 0 values across various temperatures indicated that hydrophobic interaction was the predominant binding force. The UV-Vis and CD results confirmed that the secondary structure of HSA was altered in the presence of patulin. The AFM results revealed that the individual HSA molecule dimensions were larger after interaction with patulin. In addition, molecular modeling showed that the patulin-HSA complex was stabilized by hydrophobic and hydrogen bond forces. The study results suggested that a weak intermolecular interaction occurred between patulin and HSA. Overall, the results are potentially useful for elucidating the toxigenicity of patulin when it is combined with the biomolecular function effect, transmembrane transport, toxicological, testing and other experiments.
机译:在正常生理条件下体外研究了棒曲霉素与人血清白蛋白(HSA)的相互作用。该研究是使用荧光,紫外可见光谱(UV-Vis),圆二色性(CD),原子力显微镜(AFM)和分子建模技术进行的。使用缔合常数,结合位点数和基本热力学参数研究了淬灭机理。 HSA和棒曲蛋白之间发生动态猝灭机制,结合常数(K)为2.60×10 4 ,4.59×10 4 和7.01×10 4 M −1 分别位于288、300和310K。根据荧光共振能量转移,HSA和棒曲霉素之间的距离确定为2.847 nm。在各种温度下的ΔG 0 ,ΔH 0 和ΔS 0 值表明,疏水作用是主要的结合力。 UV-Vis和CD结果证实,在棒曲霉素的存在下,HSA的二级结构发生了变化。原子力显微镜的结果表明,与巡视蛋白相互作用后,单个HSA分子的尺寸较大。此外,分子建模表明,patulin-HSA复合物可通过疏水和氢键作用而稳定。研究结果表明,棒曲霉素和HSA之间的分子间相互作用较弱。总的来说,当结合生物分子功能作用,跨膜转运,毒理学,测试和其他实验时,该结果可能有助于阐明棒蛋白的毒性。

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