[Spectroscopic studies on the interaction of nicotine and BSA].

Guang Pu Xue Yu Guang Pu Fen Xi

Institute of Bioinorgannic Chemistry, College of Chemistry and Chemical Engineering, Guangxi Normal University, Guilin 541004, China.

Published: October 2005

AI Article Synopsis

  • The study analyzed how nicotine interacts with bovine serum albumin (BSA) using fluorescence and UV-vis spectra, revealing that nicotine causes a regular quenching of BSA's fluorescence.
  • Quenching mechanisms were identified as dynamic at pH 5.0 and static at pH 7.4 and 11.0, with association constants varying according to temperature and pH levels.
  • The UV-vis spectra indicated a red shift in BSA's absorbance and a loosening of its secondary structure, suggesting a change from hydrophobic to hydrophilic environments for certain aromatic amino acids in BSA with increased nicotine concentration.

Article Abstract

The interaction of nicotine and bovine serum albumin(BSA) was investigated by fluorescence spectra and UV-vis spectra. The fluorescence spectrum showed that BSA fluorescence quench regularly with the addition of nicotine.The fluorescence quenching mechanisms were also studied in pH 5.0, pH 7.4 and pH 11.0 by Stern-Volmer equation, indicating dynamic quenching(pH 5.0) and static quenching(pH 7.4 and pH 11.0) respectively. Association constants (k) of nicotine and BSA at pH 7.4 and pH 11.0 at the temperatures of 20 and 37 degrees C were given by the Lineweaver-Buck equation, which are: k(20 degrees C) = 140.15 L x mol(-1) and k(37 degrees C) = 131.83 mol x L(-1) (pH 7.4), and k(20 degrees C) = 141.76 mol x L(-1), k(37 degrees C) = 27.79 mol x L(-1) (pH 11.0), suggesting that the association constant is effected by the temperature much more remarkably at pH 7.4 than that at pH 11.0 because of the different states of nicotine at different pHs. The UV-Vis spectra exhibit that the absorbance of BSA(210 nm) shifts to red and decreases gradually with the addition of nicotine, reflecting the transition of secondary structure of BSA, namely, the helix of BSA becomes looser. The UV-Vis second derivative spectra and synchronous spectra (delta wavelength = wavelength(em) - wavelength(ex) = 15 nm and delta wavelength = wavelength(em) - wavelength(ex) = 60 nm) imply the change of the microcircumstance of aromatic amino residues of BSA(Trp, Tyr and Phe) from hydrophobicity to hydrophilicity at high concentration of nicotine.

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