Comparative study on the interaction between transferrin and flavonols: Experimental and computational modeling approaches

被引:15
|
作者
Li, Xiangrong [1 ,4 ]
Han, Linyu [2 ]
Song, Zhizhi [2 ]
Xu, Ruonan [1 ]
Wang, Lixia [3 ]
机构
[1] Xinxiang Med Univ, Sch Basic Med, Dept Med Chem, Key Lab Med Mol Probes, Xinxiang 453003, Henan, Peoples R China
[2] Xinxiang Med Univ, Sch Basic Med, Clin Med, Grade 2020, Xinxiang 453003, Henan, Peoples R China
[3] Henan Agr Univ, Coll Sci, Zhengzhou 450002, Henan, Peoples R China
[4] Xinxiang Med Univ, Sch Basic Med, Dept Med Chem, 601 Jin Sui Rd, Xinxiang 453003, Henan, Peoples R China
基金
中国国家自然科学基金;
关键词
Transferrin; Flavonols; Spectroscopy; Molecular docking; Molecular dynamic simulation; HUMAN HOLO-TRANSFERRIN; HUMAN SERUM TRANSFERRIN; ANTIOXIDANT ACTIVITY; MOLECULAR DOCKING; RECEPTOR; BINDING; FLUORESCENCE; COMPLEXES; MECHANISM; PROTEINS;
D O I
10.1016/j.saa.2022.122128
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
Transferrin is the indispensable component in the body fluids and has been explored as a potential drug carrier for target drugs to cancer cells. Flavonols are widely distributed in plants and shown a wide range of biological activities. In the present study, the interaction between flavonols (including galangin, kaempferol, quercetin, and myricetin) and transferrin under physiological conditions was investigated by using experimental as well as computational approaches. Fluorescence data reveal that the fluorescence quenching mechanism of transferrin by flavonols is static quenching. Transferrin has moderate affinity with flavonols, and the binding constants (Ka) are 103-104 L/mol. In addition, there are two different binding sites for the interaction between kaempferol and transferrin. Thermodynamic parameter analysis shows that the interaction of flavonols and transferrin is syn-ergistically driven by enthalpy and entropy. Hydrophobic interaction, electrostatic force and hydrogen bonds are the main force types. Synchronous fluorescence spectroscopy shows that flavonols decrease the hydrophobicity of the microenvironment around tryptophan (Trp) and have no effect on the microenvironment around tyrosine (Tyr). UV-vis and CD spectra show that the interaction between transferrin and flavonols leads to the loosening and unfolding of transferrin backbone. The increase of beta-sheet is accompanied by the decrease of alpha-helix and beta-turn. The specific binding sites of flavonols to transferrin are confirmed by molecular docking. Molecular dynamic simulation suggests that the transferrin-flavonols docked complex is stable throughout the simulation trajectory.
引用
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页数:16
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