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胰蛋白酶及相关酶对脒基苯基酯的作用。

Behavior of trypsin and related enzymes toward amidinophenyl esters.

作者信息

Nozawa M, Tanizawa K, Kanaoka Y, Moriya H

出版信息

J Pharmacobiodyn. 1981 Aug;4(8):559-64. doi: 10.1248/bpb1978.4.559.

Abstract

Kinetics of the hydrolysis of amidinophenyl esters catalyzed by urokinase, kallikrein, plasmin and trypsins from various origins were studied. P-Amidinophenyl esters in which the arrangement of the specific group for bovine trypsin (charged amidinium) is reversed to that of normal substrates were characterized as specific substrates for the enzyme and named "inverse substrates" (K. Tanizawa, Y. Kasaba and Y. Kanaoka, J. Am. Chem. Sc., 99, 4485-4488) Behavior of these enzymes toward amidinophenyl esters was demonstrated to be very similar to that of bovine trypsin. These observations account for the structural similarity of their active sites. p- Amidinophenyl esters were found to be hydrolyzed also by clostripain which is known as a thiol protease with trypsin-like specificity. This is the first example of the "inverse substrates" for a thiol enzyme.

摘要

研究了尿激酶、激肽释放酶、纤溶酶和各种来源的胰蛋白酶催化脒基苯基酯水解的动力学。其中牛胰蛋白酶特异性基团(带电荷的脒鎓)的排列与正常底物相反的对脒基苯基酯被表征为该酶的特异性底物,并命名为“反向底物”(K. 谷泽、Y. 笠场和Y. 香冈,《美国化学会志》,99,4485 - 4488)。已证明这些酶对脒基苯基酯的行为与牛胰蛋白酶非常相似。这些观察结果解释了它们活性位点的结构相似性。还发现对脒基苯基酯也能被梭菌蛋白酶水解,梭菌蛋白酶是一种具有胰蛋白酶样特异性的巯基蛋白酶。这是巯基酶“反向底物”的首个实例。

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