Huang Cheng-Yang, Yang Yuh-Shyong
Institute of Biochemical Engineering, College of Biological Science and Technology, National Chiao Tung University, Hsinchu, Taiwan, ROC.
Protein Expr Purif. 2005 Mar;40(1):203-11. doi: 10.1016/j.pep.2004.12.008.
Enzymatic hydrolysis of the N-iminylamide was investigated in this study. An enzyme possessing N-iminylamidase activity from pig liver was purified to electrophoretic homogeneity. This enzyme was also active, however, with imides and appears to be identical to pig liver imidase. The identification was confirmed by copurification of enzyme activities and by specificities of typical substrates of mammalian imidase, such as phthalimide, dihydrouracil, and maleimide. The hydrolysis of 3-iminoisoindolinone was further analyzed by HPLC, (13)C NMR spectrometry, and LC-MS measurements to determine its chemicoselectivity. All data indicated that this enzyme chemicoselectively catalyzed the hydrolysis of the N-iminylamide to produce the compound bearing the diamine and carboxylate group. The pH profiles of this enzyme suggest that one of the protons of 3-iminoisoindolinone was important to promote the ring-opening process of this substrate. These results constituted a first study on the enzymatic hydrolysis of compounds bearing the N-iminylamide functional group.
本研究对N-亚胺基酰胺的酶促水解进行了研究。从猪肝中纯化出一种具有N-亚胺基酰胺酶活性的酶,达到电泳纯。然而,这种酶对酰亚胺也有活性,似乎与猪肝酰亚胺酶相同。通过酶活性的共纯化以及哺乳动物酰亚胺酶典型底物(如邻苯二甲酰亚胺、二氢尿嘧啶和马来酰亚胺)的特异性,证实了该鉴定。通过高效液相色谱(HPLC)、核磁共振碳谱(¹³C NMR)光谱和液相色谱-质谱(LC-MS)测量进一步分析了3-亚氨基异吲哚啉酮的水解,以确定其化学选择性。所有数据表明,该酶化学选择性地催化N-亚胺基酰胺的水解,生成带有二胺和羧基的化合物。该酶的pH曲线表明,3-亚氨基异吲哚啉酮的一个质子对于促进该底物的开环过程很重要。这些结果构成了对含有N-亚胺基酰胺官能团化合物的酶促水解的首次研究。