Chang L S
Department of Biochemistry, Kaohsiung Medical College, Taiwan.
J Protein Chem. 1996 Apr;15(3):321-6. doi: 10.1007/BF01887121.
Rat kidney gamma-glutamylcysteine synthetase (gamma GCS) was inactivated by reaction with trinitrobenzene sulfonate (TNBS), and the reaction followed pseudo-first-order kinetics. Inactivation kinetics revealed that only one of the amino acid residues modified by TNBS was essential for gamma GCS activity. The addition of 10 mM Mg2+ to the TNBS inactivation reaction resulted in a 16-fold increase in the rate of inactivation. Chromatographic analysis on the tryptic hydrolyzates of trinitrophenylated (TNP) derivatives showed that Lys-38 in the gamma GCS heavy subunit was significantly modified in the presence of Mg2+. In contrast to small changes in the catalytic properties observed by mutation of Lys-38 to Arg, the mutants K38N and K38E had a marked decrease in enzymatic activity and about twofold increase in Km for glutamate. These results suggest that the positively charged Lys-38 may be involved in the binding of glutamate to gamma GCS.
大鼠肾脏γ-谷氨酰半胱氨酸合成酶(γGCS)与三硝基苯磺酸(TNBS)反应后失活,该反应遵循假一级动力学。失活动力学表明,TNBS修饰的氨基酸残基中只有一个对γGCS活性至关重要。向TNBS失活反应中添加10 mM Mg2+会导致失活速率增加16倍。对三硝基苯基化(TNP)衍生物的胰蛋白酶水解产物进行色谱分析表明,在Mg2+存在下,γGCS重亚基中的Lys-38被显著修饰。与将Lys-38突变为Arg所观察到的催化特性的微小变化相反,突变体K38N和K38E的酶活性显著降低,谷氨酸的Km增加约两倍。这些结果表明,带正电荷的Lys-38可能参与谷氨酸与γGCS的结合。