Kamada M, Ikekita M, Kurahashi T, Aoki K, Kizuki K, Moriya H, Sweeley C C, Kamo M, Tsugita A
Department of Biochemistry, Faculty of Pharmaceutical Sciences, Science University of Tokyo, Japan.
Chem Pharm Bull (Tokyo). 1990 Apr;38(4):1053-7. doi: 10.1248/cpb.38.1053.
The generation of a different type of beta-kallikrein, designated C beta-kallikrein, from alpha-kallikrein by chymotryptic action was ascertained by the following observations: 1) When alpha-kallikrein was incubated with chymotrypsin, an increase of esterolytic activity of kallikrein was observed. 2) In sodium dodecyl sulfate polyacrylamide gel electrophoresis, C beta-kallikrein was found to be different from the beta-kallikrein obtained from alpha-kallikrein by tryptic digestion, and was designated T beta-kallikrein. 3) N-Terminal amino acid sequence analyses of internal light and heavy chains of C beta-kallikrein indicated that N-termini of the light and the heavy chains were isoleucine and lysine, respectively, and that the heavy chain had most of the "kallikrein autolysis loop" sequence in its N-terminal end. In the case of T beta-kallikrein, N-termini of the light and the heavy chains were isoleucine and alanine, respectively, and the light chain retained the "kallikrein autolysis loop" region in its C-terminal end. These observations demonstrated that C beta-kallikrein was different from the beta-kallikrein prepared from autolyzed pancreas, A beta-kallikrein, which had lost the "kallikrein autolysis loop" sequence. Structural differences of the above four kallikreins (alpha-, T beta-, C beta-, and A beta-) result in somewhat different enzyme properties. The kinetic constants for the hydrolysis of synthetic substrates (N alpha-benzoyl-L-arginine ethyl ester and N alpha-tosyl-L-arginine methyl ester) of these kallikreins differed from each other, and inhibitory profiles against alpha 1-antitrypsin were also different.(ABSTRACT TRUNCATED AT 250 WORDS)
通过以下观察确定了由糜蛋白酶作用从α-激肽释放酶产生的一种不同类型的β-激肽释放酶,即Cβ-激肽释放酶:1)当α-激肽释放酶与糜蛋白酶一起孵育时,观察到激肽释放酶的酯解活性增加。2)在十二烷基硫酸钠聚丙烯酰胺凝胶电泳中,发现Cβ-激肽释放酶与通过胰蛋白酶消化从α-激肽释放酶获得的β-激肽释放酶不同,并将其命名为Tβ-激肽释放酶。3)Cβ-激肽释放酶内部轻链和重链的N末端氨基酸序列分析表明,轻链和重链的N末端分别为异亮氨酸和赖氨酸,并且重链在其N末端具有大部分“激肽释放酶自溶环”序列。对于Tβ-激肽释放酶,轻链和重链的N末端分别为异亮氨酸和丙氨酸,并且轻链在其C末端保留了“激肽释放酶自溶环”区域。这些观察结果表明,Cβ-激肽释放酶与从自溶胰腺制备的β-激肽释放酶Aβ-激肽释放酶不同,后者已经失去了“激肽释放酶自溶环”序列。上述四种激肽释放酶(α-、Tβ-、Cβ-和Aβ-)的结构差异导致了酶性质略有不同。这些激肽释放酶对合成底物(Nα-苯甲酰-L-精氨酸乙酯和Nα-甲苯磺酰-L-精氨酸甲酯)水解的动力学常数彼此不同,并且对α1-抗胰蛋白酶的抑制谱也不同。(摘要截短于250字)