Permiakov E A, Ostrovskiĭ A V, Kalinichenko L P, Deĭkus G Iu
Mol Biol (Mosk). 1987 Jul-Aug;21(4):1017-22.
Dissociation kinetics of parvalbumin complexes with calcium and magnesium ions were studied by means of stopped-flow method employing intrinsic protein fluorescence registration. In the temperature range from 10 to 30 degrees C the kinetic curves of Ca2+ and Mg2+ dissociation are best fitted with a sum of two exponential terms, each term is ascribed to a dissociation process in one of two bindings sites of parvalbumin. Dissociation rate constants in this temperature range increase from 0.03 to 0.8 s-1 and from 0.18 to 5 s-1 for Ca2+, and from 0.9 to 4.5 s-1 and from 4 to 33 s-1 for Mg2+. Parvalbumin equilibrium binding constants of Ca2+ and Mg2+ were also measured in the same temperature range. It makes possible to estimate the rate constants of association of Ca2+ and Mg2+. In the case of Ca2+ the rate of association approaches the diffusion controlled limit.
采用蛋白质固有荧光记录的停流法研究了小清蛋白与钙离子和镁离子复合物的解离动力学。在10至30摄氏度的温度范围内,Ca2+和Mg2+解离的动力学曲线最适合用两个指数项之和来拟合,每个项归因于小清蛋白两个结合位点之一的解离过程。在此温度范围内,Ca2+的解离速率常数从0.03增加到0.8 s-1,从0.18增加到5 s-1;Mg2+的解离速率常数从0.9增加到4.5 s-1,从4增加到33 s-1。还在相同温度范围内测量了小清蛋白与Ca2+和Mg2+的平衡结合常数。这使得估计Ca2+和Mg2+的缔合速率常数成为可能。就Ca2+而言,缔合速率接近扩散控制极限。