Basset M, Defaye G, Chambaz E M
Biochim Biophys Acta. 1977 Apr 25;491(2):434-46. doi: 10.1016/0005-2795(77)90286-0.
The interaction of bovine serum albumin with dihydrotestosterone bearing a spin label at C-3 was studied using electron spin resonance (ESR) spectroscopy. Quantitative binding parameters (Ka approximately 10(5) M-1; maximum binding capacity; two sites/mol albumin) obtained by ESR were in good agreement with those given by equilibrium dialysis. ESR study at various temperatures allowed the calculation of the thermodynamic parameters of the steroid-protein interaction: deltaG=-6.8 kcal/mol; deltaH=-7.9 kcal/mol; deltaS=-3.2 cal/mol per degree and confirmed a transition temperature of about 65 degrees C for albumin. Na, Liland Ca salts had a generally favorable effect on the interaction whereas other ions (e.g. Hg, Cu) impaired the binding process. Study of the width of the ESR spectra of the protein-bound spin-labelled steroid and extrapolation of a 2 T value to infinite viscosity (Azz coupling constant) indicated a non-polar binding site, which became increasingly hydrophobic as the temperature was raised. Since this methodology can give both pertinent quantitative and qualitative data, ESR spectroscopy should be of value in the study of steroid-protein interactions of biological significance.
利用电子自旋共振(ESR)光谱研究了牛血清白蛋白与在C-3位带有自旋标记的二氢睾酮之间的相互作用。通过ESR获得的定量结合参数(Ka约为10⁵ M⁻¹;最大结合容量;每摩尔白蛋白两个位点)与平衡透析得到的参数吻合良好。在不同温度下进行的ESR研究使得能够计算类固醇 - 蛋白质相互作用的热力学参数:ΔG = -6.8 kcal/mol;ΔH = -7.9 kcal/mol;ΔS = -3.2 cal/mol·度,并证实白蛋白的转变温度约为65℃。钠、锂和钙盐通常对这种相互作用有促进作用,而其他离子(如汞、铜)则会损害结合过程。对与蛋白质结合的自旋标记类固醇的ESR光谱宽度进行研究,并将2T值外推至无限粘度(Azz耦合常数),结果表明存在一个非极性结合位点,随着温度升高,该位点的疏水性增强。由于这种方法能够提供相关的定量和定性数据,因此ESR光谱在研究具有生物学意义的类固醇 - 蛋白质相互作用方面应具有重要价值。