Berger E, Arabshahi A, Wei Y, Schilling J F, Frey P A
Department of Biochemistry, University of Wisconsin-Madison, 1710 University Avenue, Madison, Wisconsin 53705, USA.
Biochemistry. 2001 Jun 5;40(22):6699-705. doi: 10.1021/bi0104571.
The steady-state kinetic parameters for epimerization of UDP-galactose by UDP-galactose 4-epimerase from Escherichia coli (GalE), Y149F-GalE, and S124A-GalE have been measured as a function of pH. The deuterium kinetic isotope effects for epimerization of UDP-galactose-C-d(7) by these enzymes have also been measured. The results show that the activity of wild-type GalE is pH-independent in the pH range of 5.5-9.3, and there is no significant deuterium kinetic isotope effect in the reaction of UDP-galactose-C-d(7). It is concluded that the rate-limiting step for epimerization by wild-type GalE is not hydride transfer and must be either a diffusional process or a conformational change. Epimerization of UDP-galactose-C-d(7) by Y149F-GalE proceeds with a pH-dependent deuterium kinetic isotope effect on k(cat) of 2.2 +/- 0.4 at pH 6.2 and 1.1 +/- 0.5 at pH 8.3. Moreover, the plot of log k(cat)/K(m) breaks downward on the acid side with a fitted value of 7.1 for the pK(a). It is concluded that the break in the pH-rate profile arises from a change in the rate-limiting step from hydride transfer at low pH to a conformational change at high pH. Epimerization of UDP-galactose-C-d(7) by S124A-GalE proceeds with a pH-independent deuterium kinetic isotope effect on k(cat) of 2.0 +/- 0.2 between pH 6 and 9. Both plots of log k(cat) and log k(cat)/K(m) display pH dependence. The plot of log k(cat) versus pH breaks downward with a pK(a) of 6.35 +/- 0.10. The plot of log k(cat)/K(m) versus pH is bell-shaped, with fitted pK(a) values of 6.76 +/- 0.09 and 9.32 +/- 0.21. It is concluded that hydride transfer is rate-limiting, and the pK(a) of 6.7 for free S124A-GalE is assigned to Tyr 149, which displays the same value of pK(a) when measured spectrophotometrically in this variant. Acid-base catalysis by Y149F-GalE is attributed to Ser 124, which is postulated to rescue catalysis of proton transfer in the absence of Tyr 149. The kinetic pK(a) of 7.1 for free Y149F-GalE is lower than that expected for Ser 124, as proven by the pH-dependent kinetic isotope effect. Epimerization by the doubly mutated Y149F/S124A-GalE proceeds at a k(cat) that is lower by a factor of 10(7) than that of wild-type GalE. This low rate is attributed to the synergistic actions of Tyr 149 and Ser 124 in wild-type GalE and to the absence of any internal catalysis of hydride transfer in the doubly mutated enzyme.
已测定来自大肠杆菌的UDP - 半乳糖4 - 差向异构酶(GalE)、Y149F - GalE和S124A - GalE使UDP - 半乳糖差向异构化的稳态动力学参数随pH的变化情况。还测定了这些酶使UDP - 半乳糖 - C - d(7)差向异构化的氘动力学同位素效应。结果表明,野生型GalE的活性在pH 5.5 - 9.3范围内与pH无关,并且在UDP - 半乳糖 - C - d(7)的反应中没有显著的氘动力学同位素效应。得出结论,野生型GalE差向异构化的限速步骤不是氢化物转移,必定是扩散过程或构象变化。Y149F - GalE使UDP - 半乳糖 - C - d(7)差向异构化时,在pH 6.2时对k(cat)的pH依赖性氘动力学同位素效应为2.2±0.4,在pH 8.3时为1.1±0.5。此外,log k(cat)/K(m)对pH的曲线在酸性一侧向下转折,拟合的pK(a)值为7.1。得出结论,pH - 速率曲线的转折源于限速步骤从低pH时的氢化物转移变为高pH时的构象变化。S124A - GalE使UDP - 半乳糖 - C - d(7)差向异构化时,在pH 6至9之间对k(cat)的氘动力学同位素效应与pH无关,为2.0±0.2。log k(cat)和log k(cat)/K(m)对pH的曲线均显示出pH依赖性。log k(cat)对pH的曲线向下转折,pK(a)为6.35±0.10。log k(cat)/K(m)对pH的曲线呈钟形,拟合的pK(a)值为6.76±0.09和9.32±0.21。得出结论,氢化物转移是限速步骤,游离S124A - GalE的pK(a)为6.7归属于Tyr 149,当在该变体中用分光光度法测量时,其显示相同的pK(a)值。Y149F - GalE的酸碱催化归因于Ser 124,推测在没有Tyr 149的情况下它可挽救质子转移的催化作用。游离Y149F - GalE的动力学pK(a)为7.1,低于Ser 124预期的值,这已由pH依赖性动力学同位素效应证实。双突变体Y149F/S124A - GalE的差向异构化反应的k(cat)比野生型GalE低10^7倍。这种低速率归因于野生型GalE中Tyr 149和Ser 124的协同作用以及双突变酶中不存在氢化物转移的任何内部催化作用。