Moussaoui M, Nogués M V, Guasch A, Barman T, Travers F, Cuchillo C M
Departament de Bioquímica i Biologia Molecular, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.
J Biol Chem. 1998 Oct 2;273(40):25565-72. doi: 10.1074/jbc.273.40.25565.
The kinetics of the hydrolysis of cytidine 2',3'-cyclic phosphate (C>p) to 3'-CMP by ribonuclease A are multiphasic at high substrate concentrations. We have investigated these kinetics by determining 3'-CMP formation both spectrophotometrically and by a highly specific and quantitative chemical sampling method. With the use of RNase A derivatives that lack a functional p2 binding subsite, evidence is presented that the abnormal kinetics with the native enzyme are caused by the sequential binding of the substrate to the several subsites that make up the active site of ribonuclease. The evidence is based on the following points. 1) Some of the unusual features found with native RNase A and C>p as substrate disappear when the derivatives lacking a functional p2 binding subsite are used. 2) The kcat/Km values with oligocytidylic acids of increasing lengths (ending in C>p) show a behavior that parallels the specific velocity with C>p at high concentrations: increase in going from the monomer to the trimer, a decrease from tetramer to hexamer, and then an increase in going to poly(C). 3) Adenosine increases the kcat obtained with a fixed concentration of C>p as substrate. 4) High concentrations of C>p protect the enzyme from digestion with subtilisin, which results in a more compact molecule, implying large substrate concentration-induced conformational changes. The data for the hydrolysis of C>p by RNase A can be fitted to a fifth order polynomial that has been derived from a kinetic scheme based on the sequential binding of several monomeric substrate molecules.
在高底物浓度下,核糖核酸酶A催化胞苷2',3'-环磷酸酯(C>p)水解为3'-胞苷单磷酸(3'-CMP)的动力学过程呈现多相性。我们通过分光光度法和一种高度特异性且定量的化学采样方法测定3'-CMP的生成,对这些动力学过程进行了研究。利用缺乏功能性p2结合亚位点的核糖核酸酶A衍生物,有证据表明天然酶异常的动力学是由底物依次结合到构成核糖核酸酶活性位点的几个亚位点所致。该证据基于以下几点:1)当使用缺乏功能性p2结合亚位点的衍生物时,天然核糖核酸酶A以C>p为底物时发现的一些异常特征消失了。2)随着寡聚胞苷酸长度增加(以C>p结尾),其kcat/Km值呈现出与高浓度下C>p的比速度相似的行为:从单体到三聚体时增加,从四聚体到六聚体时降低,然后在变为聚(C)时又增加。3)腺苷可增加以固定浓度的C>p为底物时的kcat。4)高浓度的C>p可保护酶不被枯草杆菌蛋白酶消化,这会导致分子更加紧凑,意味着底物浓度高时会引起构象变化。核糖核酸酶A催化C>p水解的数据可拟合到一个基于几个单体底物分子依次结合的动力学方案推导出来的五次多项式。