Bazzone T J, Vallee B L
Biochemistry. 1976 Feb 24;15(4):868-75. doi: 10.1021/bi00649a022.
Bovine procarboxypeptidase A exhibits intrinsic hydrolytic activity toward haloacyl amino acids (Behnke and Vallee, 1972), as well as toward conventional peptide and ester substrates for carboxypeptidase A (Bezzone, 1974; Uren and Neurath, 1974). The kinetics of hydrolysis of a series of such substrates by native procarboxypeptidase has now been examined in detail in order to ascertain the extent to which the binding and catalytic sites of carboxypeptidase preexist inthe zymogen. Distinct differences in the substrate binding sites of the zymogen compared with the enzyme are apparent from their respective kinetic profiles as well as from the effects of modifiers on their activities. Substrate activation with the dipeptides BzGly-L-Phe and CbzGly-L-Phe, well known for carboxypeptidase, is exhibited also by the zymogen, but the corresponding substrate inhibition by CbzGly-L-Phe and BzGly-Ophe is absent. Moreover, the substrate inhibition of carboxypeptidase by CbzGlyGly-L-Phe and BzGly-Ophe is replaced by substrate activation in the zymogen...
牛羧肽酶原A对卤代酰基氨基酸具有内在水解活性(Behnke和Vallee,1972),对羧肽酶A的传统肽和酯底物也有活性(Bezzone,1974;Uren和Neurath,1974)。现在已经详细研究了天然羧肽酶原对一系列此类底物的水解动力学,以确定羧肽酶的结合位点和催化位点在酶原中预先存在的程度。从它们各自的动力学曲线以及修饰剂对其活性的影响可以明显看出,与酶相比,酶原的底物结合位点存在明显差异。羧肽酶原也表现出被二肽BzGly-L-Phe和CbzGly-L-Phe激活,这两种二肽对羧肽酶来说是众所周知的,但不存在CbzGly-L-Phe和BzGly-Ophe相应的底物抑制作用。此外,CbzGlyGly-L-Phe和BzGly-Ophe对羧肽酶的底物抑制作用在酶原中被底物激活所取代……