Deerfield D W, Berkowitz P, Olson D L, Wells S, Hoke R A, Koehler K A, Pedersen L G, Hiskey R G
J Biol Chem. 1986 Apr 15;261(11):4833-9.
Examination of metal ion-dependent effects on the electrophoretic mobility of bovine prothrombin and fragment 1 provides a useful and sensitive method for investigation of conformational processes in these proteins. Utilization of this method reveals a conformational change in bovine prothrombin and fragment 1 which occurs at low metal ion concentrations. Equilibrium dialysis studies indicate that the metal ion-induced shape change occurs concomitant with binding of a single calcium ion/molecule of prothrombin or fragment 1. Mixed metal electrophoretic mobility studies with Mg2+ and Ca2+ have demonstrated the "synergistic" effect for fragment 1 observed by others. Mixed metal equilibrium dialysis has provided experimental support for this observation and allows us to conclude that two tight Ca2+ sites are not affected by low Mg2+ concentrations and that the third Ca2+ site is also a tight site for Mg2+. Thus, at low Mg2+ concentrations and upon the addition of Ca2+, there are effectively three tight sites; consequently more Ca2+ will bind to the protein at lower total Ca2+ ion concentrations.
研究金属离子对牛凝血酶原和片段1电泳迁移率的依赖性效应,为研究这些蛋白质的构象变化过程提供了一种有用且灵敏的方法。运用该方法可揭示牛凝血酶原和片段1在低金属离子浓度下发生的构象变化。平衡透析研究表明,金属离子诱导的形状变化与凝血酶原或片段1的单个钙离子/分子的结合同时发生。用Mg2+和Ca2+进行的混合金属电泳迁移率研究证实了其他人观察到的片段1的“协同”效应。混合金属平衡透析为这一观察结果提供了实验支持,并使我们得出结论:两个紧密的Ca2+位点不受低Mg2+浓度的影响,第三个Ca2+位点也是Mg2+的紧密位点。因此,在低Mg2+浓度下并加入Ca2+后,实际上存在三个紧密位点;因此,在较低的总Ca2+离子浓度下会有更多的Ca2+与蛋白质结合。