Allen B, Blum M, Cunningham A, Tu G C, Hofmann T
Department of Biochemistry, University of Toronto, Canada.
J Biol Chem. 1990 Mar 25;265(9):5060-5.
The effect of temperature on the rate constants of hydrolysis of various substrates by penicillopepsin is dependent on the length of the substrate. For the series Ac-(Ala)m-Lys-Nph-(Ala)n-amide (where Ac- is acetyl- and Nph- is p-nitrophenylalanyl-), where m and n = 0-2, substrates lacking both P'2 and P3 residues give linear Arrhenius plots with an energy of activation of about 55 kJ.mol-1. The Arrhenius plots of substrates in which an alanine residue occupies P'2 show a sharp break at an average transition temperature of 10.5 degrees C. The activation energies are approximately 90 kJ.mol-1 below and approximately 54 kJ.mol-1 above the transition temperature, respectively. For substrates in which P3 is occupied, the average transition temperature is 14.2 degrees C. In this case, the activation energies are 66 kJ.mol-1 below and from 26 to 39 kJ.mol-1 above the transition point. The most probable explanation of these phenomena is that substrate interaction at subsites S3 and/or S'2 of the enzyme induces a temperature-dependent conformational change. Physical evidence for this comes from the observation that the temperature dependence of a CD absorption band at 242 nm of a penicillopepsin-pepstatin complex shows a sharp break that corresponds to those observed in the Arrhenius plots of substrates with alanine at P'2 and P3, whereas the same CD band in the free enzyme is linearly dependent on temperature.
温度对青霉胃蛋白酶水解各种底物的速率常数的影响取决于底物的长度。对于系列Ac-(Ala)m-Lys-Nph-(Ala)n-酰胺(其中Ac-为乙酰基,Nph-为对硝基苯丙氨酰基),当m和n = 0 - 2时,既缺乏P'2又缺乏P3残基的底物给出线性阿伦尼乌斯图,活化能约为55 kJ·mol-1。在P'2位置有一个丙氨酸残基的底物的阿伦尼乌斯图在平均转变温度10.5℃处出现急剧转折。在转变温度以下和以上的活化能分别约为90 kJ·mol-1和54 kJ·mol-1。对于P3被占据的底物,平均转变温度为14.2℃。在这种情况下,在转变点以下和以上的活化能分别为66 kJ·mol-1和26至39 kJ·mol-1。对这些现象最可能的解释是酶的S3和/或S'2亚位点处的底物相互作用诱导了温度依赖性的构象变化。对此的物理证据来自以下观察结果:青霉胃蛋白酶 - 胃蛋白酶抑制剂复合物在242 nm处的圆二色吸收带的温度依赖性显示出与在P'2和P3位置有丙氨酸的底物的阿伦尼乌斯图中观察到的急剧转折相对应,而游离酶中的相同圆二色带与温度呈线性相关。