Title :
Investigation on the interaction between 3, 5-dihydroxytoluene and bovine serum albumin by fluorescence spectroscopy
Author :
Cao, Xiang-Yu ; Liu, Jian-Li ; Li, Tie-Min ; Yuan, Jiang-Bei ; Xu, Cheng-Bin ; Hui, Xiu-Juan ; Dong, Dian-Bo ; Zeng, Meng
Author_Institution :
Sch. of Life Sci., Liaoning Univ., Shenyang, China
Abstract :
The interaction between 3, 5-dihydroxytoluene and bovine serum albumin (BSA) had been investigated by fluorescence spectroscopy. By the analysis of fluorescence spectrum and fluorescence intensity, it was observed that the 3, 5-dihydroxytoluene had a strong ability to quench the intrinsic fluorescence of BSA through a static quenching procedure. The binding constant and the number of binding sites were determined at 298 K based on fluorescence quenching results. The thermodynamic parameters such as enthalpy change (ΔH), entropy change (ΔS) and Gibbs free-energy change (ΔG) for the reactions were also calculated according to the thermodynamic equations. The negative ΔH and ΔS values in case of 3, 5-dihydroxytoluene-BSA complexes showed that van der Waals interactions and hydrogen bonds might play a major role in the binding of 3, 5-dihydroxytoluene to BSA. The distance, r, between donor (BSA) and acceptor (3, 5-dihydroxytoluene) was obtained according to the Förster´s theory of non-radiation energy transfer. The experimental results of synchronous fluorescence spectroscopy showed that the binding of 3, 5-dihydroxytoluene to BSA induced conformational changes in BSA.
Keywords :
biochemistry; biothermics; enthalpy; entropy; fluorescence; free energy; hydrogen bonds; molecular biophysics; molecular configurations; proteins; radiation quenching; reaction rate constants; van der Waals forces; 3,5-dihydroxytoluene-BSA complexes; Forster theory; Gibbs free-energy change; binding constant; binding site number; bovine serum albumin; conformational changes; enthalpy change; entropy change; fluorescence intensity; fluorescence spectrum; hydrogen bonds; intrinsic fluorescence quenching; nonradiation energy transfer; static quenching procedure; synchronous fluorescence spectroscopy; temperature 298 K; thermodynamic parameters; van der Waals interactions; Absorption; Bovine; Energy exchange; Fluorescence; Proteins; Spectroscopy; Thermodynamics; 3, 5-dihydroxytoluene; Bovine serum albumin (BSA); Fluorescence spectroscopy; Interaction;
Conference_Titel :
IT in Medicine and Education (ITME), 2011 International Symposium on
Conference_Location :
Cuangzhou
Print_ISBN :
978-1-61284-701-6
DOI :
10.1109/ITiME.2011.6130752