Evidence for paraquat-pepsin interaction: In vitro and silico study

The use of the herbicide paraquat (PQ) has raised concerns about potential environmental consequences due to its toxicity and persistence in the environment. Considering the affinity of dangerous compounds to biological molecules, it is necessary to know their binding properties. This article focuse...

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Veröffentlicht in:Chemosphere (Oxford) 2024-02, Vol.349, p.140714-140714, Article 140714
Hauptverfasser: Farokhvand, Najimeh, Shareghi, Behzad, Farhadian, Sadegh
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Sprache:eng
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Zusammenfassung:The use of the herbicide paraquat (PQ) has raised concerns about potential environmental consequences due to its toxicity and persistence in the environment. Considering the affinity of dangerous compounds to biological molecules, it is necessary to know their binding properties. This article focuses on the behavior of the pepsin enzyme following its contact with paraquat poison, and the interaction between paraquat and pepsin has been investigated in laboratory conditions and simulated physiological conditions using multispectral techniques. Fluorescence experiments showed that PQ uses a static method to quench pepsin's intrinsic fluorescence. By causing structural damage to pepsin, PQ may be detrimental as it alters its conformational function based on FT-IR spectroscopy. The coupling reaction is a spontaneous process caused by hydrogen bonding and van der Waals forces according to the analysis of the thermodynamic parameters of each system at three different temperatures. The molecular structure of pepsin changes when it binds to PQ. Also, the results showed that PQ is a pepsin inhibitor that changes the function of the enzyme. [Display omitted] •Pesticides are essential agricultural chemicals to kill harmful organisms.•The structure and conformational of pepsin alter after binding to PQ.•Structural changes lead to changes in pepsin function.•The results obtained in this in vitro and in silico confirm another.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2023.140714