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Interactions of Quercetin with Casein and Bovine Serum Albumin as well as the Effects of Coexisting Carbon Nanotubes
Authors:Daiwu Chen  Qingji Xie  Xueqin Jiang
Affiliation:a Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research of the Ministry of Education of China, College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha 410081, P. R. China
b Shaoyang Medical College, Shaoyang 422000, Hunan Province, P. R. China
Abstract:
Fluorescence quenching and synchronous fluorescence methods were used to study the interactions of fluore-scence-active quercetin (Qct) with casein (Cas) and bovine serum albumin (BSA) in phosphate buffer solution (PBS, pH=7.4) with or without coexisting carbon nanotubes (CNTs). Formulae for binding constant (K) and molar binding ratio (n) were established for methods 1 (fixing protein concentration, changing Qct concentration, and monitoring the fluorescence of protein) and 2 (fixing Qct concentration, changing protein concentration, and monitoring the fluorescence of Qct), to which values of K and n were calculated via nonlinear least-square fitting of the experimental data, and the “optical inner filtering induced fluorescence quenching” effect was thus quantitatively evaluated. The quenching effects of coexisting CNTs on the fluorescence of Qct, BSA, and Cas, as well as the effects of coexisting CNTs on Qct-BSA and Qct-Cas interactions, were examined. Synchronous fluorescence was also used to examine the effects of coexisting CNTs and Qct on the conformations of BSA and Cas, with relevant K and n values for tyrosine (Tyr) and tryptophan (Trp) residues estimated. It was concluded that the CNTs mainly interacted with the Trp residues locating near the protein surfaces, but small-sized Qct molecules could further interact with the Tyr residues locating inside the protein molecules.
Keywords:Carbon nanotubes   Quercetin   Casein   Bovine serum albumin   Fluorescence quenching   Synchronous fluorescence   Intermolecular interactions
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