Serafini M T, Romeu A
Departamento de Ingeniería Química y Bioquímica, Universidad de Barcelona, Tarragona, Spain.
Rev Esp Fisiol. 1989 Jun;45(2):199-202.
The steady-state kinetic studies of yeast glutathione reductase, performed when [GSSG] = 10[NADPH] in the assay mixture, show that at concentrations of GSSG under 450 microM the enzymatic mechanism pathway is ping-pong. Furthermore, in the case of higher values, the enzymatic kinetics follows a sequential pathway. However when the glutathione reductase reaction passes to the ping-pong mechanism, the inhibition effect by excess of NADPH is stronger than when the reaction takes place over the sequential mechanism.
当测定混合物中[GSSG] = 10[NADPH]时,对酵母谷胱甘肽还原酶进行的稳态动力学研究表明,在GSSG浓度低于450微摩尔时,酶促机制途径为乒乓机制。此外,在较高值的情况下,酶动力学遵循顺序途径。然而,当谷胱甘肽还原酶反应转变为乒乓机制时,过量NADPH的抑制作用比反应通过顺序机制时更强。