Rephaeli A W, Saier M H
J Biol Chem. 1978 Nov 10;253(21):7595-7.
The sugar phosphate:sugar transphosphorylation reaction catalyzed by the glucose Enzyme II complex of the phosphotransferase system has been analyzed kinetically. Initial rates of phosphoryl transfer from glucose-6-P to methyl alpha-glucopyranoside were determined with butanol/urea-extracted membranes from Salmonella typhimurium strains. The kinetic mechanism was shown to be Bi-Bi Sequential, indicating that the Enzyme II possesses nonoverlapping binding sites for sugar and sugar phosphate. Binding of the two substrates appears to occur in a positively cooperative fashion. A mutant with a defective glucose Enzyme II was isolated which transported methyl alpha-glucoside and glucose with reduced maximal velocities and higher Km values. In vitro kinetic studies of the transphosphorylation reaction catalyzed by the mutant enzyme showed a decrease in maximal velocity and increases in the Km values for both the sugar and sugar phosphate substrates. These results are consistent with the conclusion that a single Enzyme II complex catalyzes both transport and transphosphorylation of its sugar substrates.
磷酸转移酶系统的葡萄糖酶II复合物催化的糖磷酸:糖转磷酸化反应已进行了动力学分析。用来自鼠伤寒沙门氏菌菌株的丁醇/尿素提取膜测定了从葡萄糖-6-磷酸到α-甲基吡喃葡萄糖苷的磷酰基转移初始速率。动力学机制显示为双底物双顺序机制,表明酶II对糖和糖磷酸具有不重叠的结合位点。两种底物的结合似乎以正协同方式发生。分离出一种葡萄糖酶II有缺陷的突变体,其转运α-甲基葡萄糖苷和葡萄糖的最大速度降低,Km值升高。对突变酶催化的转磷酸化反应进行的体外动力学研究表明,最大速度降低,糖和糖磷酸底物的Km值均升高。这些结果与单一酶II复合物催化其糖底物的转运和转磷酸化这一结论一致。