Hertel K J, Uhlenbeck O C
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.
Biochemistry. 1995 Feb 7;34(5):1744-9. doi: 10.1021/bi00005a031.
The effects of temperature, pH, and magnesium ion concentration on the internal equilibrium of the hammerhead ribozyme reaction were determined in order to better understand why the ribozyme-bound substrate RNA is 99% cleaved at equilibrium. Cleavage of substrate is more efficient at higher temperatures because a large entropy gain upon cleavage outweighs an enthalpically unfavorable generation of a 2',3'-cyclic phosphate product. The delta H of the reaction is as expected from bond energies, and provides no indication of high-energy ribozyme/substrate interactions that are lost upon cleavage. The rate constants of both cleavage and ligation increase log-linearly with pH between 5.6 and 8.0, indicating that a deprotonation step is required for both cleavage and ligation. The magnesium ion dependence of the internal equilibrium suggests that either the number or the affinity of bound magnesium ions changes upon cleavage. Since the very slow rate of hydrolysis of the 2',3'-cyclic terminus of product P1 was unaffected by the presence of the ribozyme, we conclude that hydrolysis is not a significant side reaction of the hammerhead cleavage reaction.
为了更好地理解为何锤头状核酶反应中与核酶结合的底物RNA在平衡状态下99%被切割,我们测定了温度、pH值和镁离子浓度对锤头状核酶反应内部平衡的影响。在较高温度下底物的切割更有效,因为切割时较大的熵增超过了生成2',3'-环磷酸产物时焓变不利的情况。反应的ΔH如键能所预期,未显示出切割时失去的高能核酶/底物相互作用的迹象。在5.6至8.0的pH范围内,切割和连接的速率常数均随pH呈对数线性增加,表明切割和连接都需要一个去质子化步骤。内部平衡对镁离子的依赖性表明,切割后结合的镁离子数量或亲和力发生了变化。由于产物P1的2',3'-环末端水解速率非常慢,不受核酶存在的影响,我们得出结论,水解不是锤头状切割反应的显著副反应。