Pol Ewa
GE Healthcare Bio-Sciences AB.
J Vis Exp. 2010 Mar 17(37):1746. doi: 10.3791/1746.
In this study, we explore the interaction between the bovine cysteine protease inhibitor cystatin B and a catalytically inactive form of papain (Fig. 1), a plant cysteine protease, by real-time label-free analysis using Biacore X100. Several cystatin B variants with point mutations in areas of interaction with papain, are produced. For each cystatin B variant we determine its specific binding concentration using calibration-free concentration analysis (CFCA) and compare the values obtained with total protein concentration as determined by A(280). After that, the kinetics of each cystatin B variant binding to papain is measured using single-cycle kinetics (SCK). We show that one of the four cystatin B variants we examine is only partially active for binding. This partial activity, revealed by CFCA, translates to a significant difference in the association rate constant (k(a)) and affinity (K(D)), compared to the values calculated using total protein concentration. Using CFCA in combination with kinetic analysis in a structure-function study contributes to obtaining reliable results, and helps to make the right interpretation of the interaction mechanism.
在本研究中,我们使用Biacore X100通过实时无标记分析,探究了牛半胱氨酸蛋白酶抑制剂胱抑素B与木瓜蛋白酶(一种植物半胱氨酸蛋白酶)的无催化活性形式之间的相互作用(图1)。我们制备了几种在与木瓜蛋白酶相互作用区域存在点突变的胱抑素B变体。对于每种胱抑素B变体,我们使用无校准浓度分析(CFCA)确定其特异性结合浓度,并将所得值与通过A(280)测定的总蛋白浓度进行比较。之后,使用单循环动力学(SCK)测量每种胱抑素B变体与木瓜蛋白酶结合的动力学。我们发现,我们检测的四种胱抑素B变体中的一种在结合方面仅具有部分活性。通过CFCA揭示的这种部分活性,与使用总蛋白浓度计算得出的值相比,在缔合速率常数(k(a))和亲和力(K(D))方面存在显著差异。在结构 - 功能研究中,将CFCA与动力学分析相结合有助于获得可靠的结果,并有助于对相互作用机制做出正确的解释。