Antonini E, Ascenzi P, Bolognesi M, Menegatti E, Guarneri M
J Biol Chem. 1983 Apr 25;258(8):4676-8.
The formation of the bovine beta-trypsin-bovine basic pancreatic trypsin inhibitor (Kunitz) (BPTI) complex was monitored, making use of three different signals: proflavine displacement, optical density changes in the ultraviolet region, and the loss of the catalytic activity. The rates of the reactions indicated by the three different signals were similar at neutral pH, but diverged at low pH. At pH 3.50, proflavine displacement precedes the optical density changes in the ultraviolet and the loss of enzyme activity by several orders of magnitude in time (Antonini, E., Ascenzi, P., Menegatti, E., and Guarneri, M. (1983) Biopolymers 22, 363-375). These data indicated that the bovine beta-trypsin-BPTI complex formation is a multistage process and led to the prediction that, at pH 3.50, BPTI addition to the bovine beta-trypsin-proflavine complex would remove proflavine inhibition and the enzyme would recover transiently its catalytic activity before being irreversibly inhibited by completion of BPTI binding. The kinetic evidences, by completion of BPTI binding. The kinetic evidences, here shown, verified this prediction, indicating that during the bovine beta-trypsin-BPTI complex formation one transient intermediate occurs, which is not able to bind proflavine but may bind and hydrolyze the substrate. Thus, the observed peculiar catalytic behavior is in line with the proposed reaction mechanism for the bovine beta-trypsin-BPTI complex formation, which postulates a sequence of distinct polar and apolar interactions at the contact area.
利用三种不同的信号监测牛β-胰蛋白酶-牛碱性胰腺胰蛋白酶抑制剂(库尼茨)(BPTI)复合物的形成:原黄素置换、紫外区域的光密度变化以及催化活性的丧失。在中性pH值下,由这三种不同信号指示的反应速率相似,但在低pH值下有所不同。在pH 3.50时,原黄素置换在紫外光密度变化和酶活性丧失之前,在时间上领先几个数量级(安东尼尼,E.,阿斯岑齐,P.,梅内加蒂,E.,和瓜内里,M.(1983年)生物聚合物22,363 - 375)。这些数据表明牛β-胰蛋白酶-BPTI复合物的形成是一个多阶段过程,并导致预测,在pH 3.50时,向牛β-胰蛋白酶-原黄素复合物中添加BPTI将消除原黄素抑制作用,并且在被BPTI结合完全不可逆抑制之前,酶将暂时恢复其催化活性。这里所示的动力学证据证实了这一预测,表明在牛β-胰蛋白酶-BPTI复合物形成过程中会出现一个瞬时中间体,它不能结合原黄素,但可能结合并水解底物。因此,观察到的特殊催化行为与提出的牛β-胰蛋白酶-BPTI复合物形成的反应机制一致,该机制假定在接触区域存在一系列不同的极性和非极性相互作用。