Division of Applied Biology, Kyoto Institute of Technology, Goshokaido-cho Matsugasaki Sakyo-ku, Kyoto, Japan.
Biosci Biotechnol Biochem. 2021 May 25;85(6):1295-1313. doi: 10.1093/bbb/zbab043.
The enzymatic characteristics of γ-glutamyltranspeptidase were elucidated. The catalytic nucleophile of the enzymatic reaction of Escherichia coli γ-glutamyltranspeptidase was identified as the Oγ of the N-terminal Thr-residue of the small subunit. It was demonstrated that the inactive precursor of γ-glutamyltranspeptidase is processed autocatalytically and intramolecularly into the active heterodimeric mature enzyme via an ester intermediate. The catalytic nucleophile of this processing reaction was identified as the same Oγ atom of the N-terminal Thr-residue of the small subunit. These results were also supported by the three-dimensional structures of the γ-glutamyl enzyme intermediate and of the precursor-mimicked T391A nonprocessable mutant enzyme. Applications of transpeptidation and hydrolysis activities of bacterial γ-glutamyltranspeptidases were developed. Using transpeptidation activity, efficient enzymatic production of useful γ-glutamyl compounds, such as prodrug for Parkinson's disease, theanine and kokumi compound, was enabled. Hydrolysis activity was used as glutaminase and the mutant enzymes gaining glutaryl-7-aminocephalosporanic acid acylase activity were isolated.
阐明了γ-谷氨酰转肽酶的酶学特性。鉴定出大肠杆菌γ-谷氨酰转肽酶的酶促反应的催化亲核基团为小亚基 N 端 Thr 残基的 Oγ。证明γ-谷氨酰转肽酶的无活性前体通过酯中间体自动催化和分子内加工成活性的异二聚体成熟酶。该加工反应的催化亲核基团被鉴定为小亚基 N 端 Thr 残基的相同 Oγ 原子。这些结果还得到了γ-谷氨酰酶中间体和前体模拟 T391A 不可加工突变酶的三维结构的支持。开发了细菌γ-谷氨酰转肽酶的转肽和水解活性的应用。利用转肽活性,能够有效地酶促生产有用的γ-谷氨酰化合物,如帕金森病的前药、茶氨酸和美味化合物。水解活性用作谷氨酰胺酶,并分离出获得戊二酰-7-氨基头孢烷酸酰氨酶活性的突变酶。