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Study on the Interaction Between {mathrm{Cu}}{left( {{mathrm{phen}}} right)}^{{2 + }}_{3} and Bovine Serum Albumin by Spectroscopic Methods
Authors:Ye-Zhong Zhang  Xiao-Ping Zhang  Han-Na Hou  Jie Dai  Yi Liu
Affiliation:Department of Chemistry, College of Chemistry and Environmental Engineering, Yangtze University, Jingzhou, Hubei, People's Republic of China.
Abstract:In this work, the interaction between ${text{Cu}}left( {{text{phen}}} right)_3^{,,2 + } In this work, the interaction between Cu(phen)(2+)(3) and bovine serum albumin (BSA) was investigated by fluorescence spectroscopy combined with UV-vis absorption and circular dichroism (CD) spectroscopic techniques under physiological conditions. The fluorescence data proved that the fluorescence quenching of BSA by Cu(phen)(2+)(3) was the result of the Cu(phen)(2+)(3) -BSA complex formation. The binding constants (K (a)) between Cu(phen)(2+)(3) and BSA at four different temperatures were calculated according to the modified Stern-Volmer equation. The enthalpy change (DeltaH) and entropy change (DeltaS) were calculated to be 10.74 kJ mol(-1) and 54.35 J mol(-1) K(-1), respectively, which indicated that electrostatic interactions played a major role in the formation of Cu(phen)(2+)(3) -BSA complex. The distance r between the donor (BSA) and acceptor[Cu(phen)(2+)(3)] was obtained to be 3.55 nm based on F?rster's energy transfer theory. The synchronous fluorescence and CD spectroscopy results showed that the polarity of the residues increased and the lost of the alpha-helix content of BSA (from 59.84 to 53.70%). These indicated that the microenvironment and conformation of BSA were changed in the presence of Cu(phen)(2+)(3).
Keywords:  IEq10"  >  /content/dw238p51h80204t1/12011_2007_8045_Article_IEq10.gif"   alt="  $${text{Cu}}left( {{text{phen}}} right)_3^{,,2 + } $$"   align="  middle"   border="  0"  >   Bovine serum albumin  Fluorescence quenching  Circular dichroism spectroscopy  Thermodynamic parameters
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