Matoba T, Doi E
J Biochem. 1975 Jun;77(6):1297-303.
The substrate specificity of carboxypeptidase (F-II) purified from watermelon for various synthetic peptides and esters was examined kinetically. The enzyme showed a broad substrate specificity against various carbobenzoxy- and benzyl-dipeptides. Peptides containing glycine or proline were hydrolyzed slowly by the enzyme. Peptides containing hydrophobic amino acids were hydrolyzed rapidly. The presence of hydrophobic amino acid residues, not only at the C-terminal position but also at the second position and probably the third position from the C-terminal resulted in an increase in the rate of hydrolysis. Inhibition studies with diisopropyl flurophosphate and diastereomers of carbobenzoxy-Phe-Ala demonstrated that the peptidase and esterase activities of the enzyme are both catalyzed by the same site of the enzyme molecule, but the binding sites for peptides and esters seem not to be the same. The enzyme also had amidase activity, which was optimal at pH 7.0.
对从西瓜中纯化得到的羧肽酶(F-II)针对各种合成肽和酯的底物特异性进行了动力学研究。该酶对各种苄氧羰基和苄基二肽表现出广泛的底物特异性。含有甘氨酸或脯氨酸的肽被该酶缓慢水解。含有疏水氨基酸的肽被快速水解。疏水氨基酸残基不仅在C末端位置,而且在距C末端第二个位置以及可能第三个位置的存在导致水解速率增加。用氟磷酸二异丙酯和苄氧羰基-Phe-Ala的非对映异构体进行的抑制研究表明,该酶的肽酶和酯酶活性均由酶分子的同一部位催化,但肽和酯的结合部位似乎不同。该酶还具有酰胺酶活性,在pH 7.0时活性最佳。