Fukuda M, Kunugi S
J Biochem. 1987 Jan;101(1):233-40. doi: 10.1093/oxfordjournals.jbchem.a121896.
A kinetic study of hydrolytic catalysis by wheat bran carboxypeptidase (carboxypeptidase W) was carried out using 3-(2-furyl)acryloyl-acylated (Fua-) synthetic substrates. This enzyme showed high esterase activity in addition to the intrinsic carboxypeptidase activity. The optimum pH for the peptidase activity (kcat/Km) was at pH 3.3 and the kcat/Km value decreased with increasing pH with an apparent pKa of 4.50, while the esterase activity increased with pH up to pH 8 with an apparent pKa of 6.04. Optimum pH's for kcat for the peptidase and esterase reactions were also very different and their apparent pKa values were 3.80 and 6.15, respectively. From a measurement of the pressure dependences of kcat and Km, the activation volumes (delta V not equal to) and reaction volumes (delta V), respectively, were determined. delta V not equal to for kcat was -7 to -8 ml/mol for peptidase and -2 to -3 ml/mol for esterase. These results lead us to propose that the peptidase and esterase activities of carboxypeptidase W are different not in the rate-determining steps in a common reaction pathway, but in the binding modes and/or catalytic site(s).
利用3-(2-呋喃基)丙烯酰化(Fua-)合成底物对小麦麸皮羧肽酶(羧肽酶W)的水解催化作用进行了动力学研究。该酶除了具有固有的羧肽酶活性外,还表现出高酯酶活性。肽酶活性(kcat/Km)的最适pH值为3.3,随着pH值升高,kcat/Km值下降,表观pKa为4.50,而酯酶活性随pH值升高至8,表观pKa为6.04。肽酶和酯酶反应的kcat最适pH值也有很大差异,其表观pKa值分别为3.80和6.15。通过测量kcat和Km的压力依赖性,分别确定了活化体积(ΔV≠)和反应体积(ΔV)。肽酶的kcat的ΔV≠为-7至-8 ml/mol,酯酶为-2至-3 ml/mol。这些结果使我们提出,羧肽酶W的肽酶和酯酶活性的差异不在于共同反应途径中的速率决定步骤,而在于结合模式和/或催化位点。