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Binding of PFOS to serum albumin and DNA: insight into the molecular toxicity of perfluorochemicals

机译:PFOS与血清白蛋白和DNA的结合:深入了解全氟化物的分子毒性

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Background Health risk from exposure of perfluorochemicals (PFCs) to wildlife and human has been a subject of great interest for understanding their molecular mechanism of toxicity. Although much work has been done, the toxigenicity of PFCs remains largely unknown. In this work, the non-covalent interactions between perfluorooctane sulfonate (PFOS) and serum albumin (SA) and DNA were investigated under normal physiological conditions, aiming to elucidate the toxigenicity of PFCs.Results In equilibrium dialysis assay, the bindings of PFOS to SA correspond to the Langmuir isothermal model with two-step sequence model. The saturation binding number of PFOS was 45 per molecule of SA and 1 per three base-pairs of DNA, respectively. ITC results showed that all the interactions were spontaneous driven by entropy change. Static quenching of the fluorescence of SA was observed when interacting with PFOS, indicating PFOS bound Trp residue of SA. CD spectra of SA and DNA changed obviously in the presence of PFOS. At normal physiological conditions, 1.2 mmol/l PFOS reduces the binding ratio of Vitamin B_2 to SA by more than 30%.Conclusion The ion bond, van der Waals force and hydrophobic interaction contributed to PFOS binding to peptide chain of SA and to the groove bases of DNA duplex. The non-covalent interactions of PFOS with SA and DNA alter their secondary conformations, with the physiological function of SA to transport Vitamin B_2 being inhibited consequently. This work provides a useful experimental method for further studying the toxigenicity of PFCs.
机译:背景全氟化学品(PFC)暴露于野生生物和人类对健康的危害已成为了解其毒性分子机理的重要课题。尽管已经完成了许多工作,但PFC的产毒性仍然未知。在正常生理条件下,研究了全氟辛烷磺酸盐(PFOS)与血清白蛋白(SA)和DNA之间的非共价相互作用,目的是阐明PFC的毒性。结果在平衡透析试验中,PFOS与SA的结合对应于具有两步序列模型的Langmuir等温模型。 PFOS的饱和结合数分别是SA分子为45个和DNA的三个碱基对为1个。 ITC结果表明,所有相互作用都是由熵变化自发驱动的。当与PFOS相互作用时,观察到SA的荧光的静态猝灭,表明PFOS结合SA的Trp残基。在PFOS存在下,SA和DNA的CD光谱发生了明显变化。在正常的生理条件下,1.2 mmol / l PFOS可使维生素B_2与SA的结合率降低30%以上。结论离子键,范德华力和疏水相互作用促使PFOS与SA的肽链和沟槽结合。 DNA双链体的碱基。 PFOS与SA和DNA的非共价相互作用改变了它们的二级构象,因此SA转运维生素B_2的生理功能受到抑制。这项工作为进一步研究PFC的毒性提供了有用的实验方法。

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