Cook N D, Upperton K P, Challis B C, Peters T J
Biochim Biophys Acta. 1987 Aug 21;914(3):240-5. doi: 10.1016/0167-4838(87)90283-4.
The donor specificity of the hydrolytic reaction of gamma-glutamyltransferase [5-glutamyl)-peptide:amino-acid 5-glutamyltransferase, EC 2.3.2.2) has been studied by the use of specifically synthesised gamma-glutamyl substrates. It was found that a wide variety of gamma-glutamylated adducts were hydrolysed by the enzyme. The structure of the adduct was relatively unimportant for donor specificity and the enzyme appears to 'recognise' the gamma-glutamyl portion of the donor molecule. In particular the alpha-amino group and the free proton of the gamma-peptide bond appear to be essential for donor activity. The Vmax of hydrolysis increased proportionally to the electron-withdrawing capacity of the adduct moiety. The rate of formation of gamma-glutamyl-enzyme intermediate was therefore dependent upon the structure of the adduct of the gamma-glutamyl donor. The results suggest that the enzyme shows little specificity beyond that for gamma-glutamyl amides and there is therefore no reason to postulate the presence of a specific glutathione-binding site.
通过使用特异性合成的γ-谷氨酰底物,研究了γ-谷氨酰转移酶水解反应([5-谷氨酰基)肽:氨基酸5-谷氨酰转移酶,EC 2.3.2.2)的供体特异性。发现该酶能水解多种γ-谷氨酰化加合物。加合物的结构对供体特异性相对不重要,并且该酶似乎“识别”供体分子的γ-谷氨酰部分。特别是γ-肽键的α-氨基和游离质子似乎对供体活性至关重要。水解的Vmax与加合物部分的吸电子能力成比例增加。因此,γ-谷氨酰-酶中间体的形成速率取决于γ-谷氨酰供体加合物的结构。结果表明,该酶除了对γ-谷氨酰胺外几乎没有特异性,因此没有理由假定存在特定的谷胱甘肽结合位点。