Rose Z B, Dube S
J Biol Chem. 1978 Dec 10;253(23):8583-92.
The steady state kinetics and effects of salts on chicken breast phosphoglycerate mutase have been examined. The enzyme can catalyze three phosphoryl transfer reactions: mutase, bisphosphoglycerate phosphatase, and bisphosphoglycerate synthase. The mutase rate was measured in the favorable direction (Keq = glycerate-3-P/glycerate-2-P approximately equal to 12) using [2T]glycerate-2-P as substrate. The bisphosphoglycerate phosphatase activity was studied in the presence of the activator, glycolate-2-P. The latter is an analog of the glycerate-P's and appears to act as an abortive mutase substrate. The kinetic pattern obtained with both activities is that of a ping-pong mechanism with inhibition by the second substrate occurring at a lower concentration than the Km value for that substrate. The kinetic parameters for the mutase determined in 50 mM N-[tris(hydroxymethyl)methyl-2-amino]ethanesulfonate (TES)/sodium buffer containing 0.1 M KCl, pH 7.5, 25 degrees C are: Km glycerate-2,3-P2, 0.069 micron; Km glycerate-2-P, 14 micron; Km glycerate-3-P approximately 200 micron; Ki glycerate-2-P, 4 micron. The kinetic parameters for the phosphatase reaction in 50 mM triethanolamine/Cl- buffer, pH 7.5, 25 degrees C are: Km glycerate-2,3-P2, 0.065 micron:Km glycolate-2P, 479 micron; Ki glycolate-2-P, 135 micron. The enzyme is sensitive to changes in the ionic environment. Increasing salt concentrations activate the phosphatase in the presence of glycolate-2-P by decreasing the apparent Km of glycerate-2,3-P2. The effects are due to the anionic component and Cl- greater than acetate greater than TES. The same salts are competitive inhibitors with respect to glycolate-2-P. With high levels of KCl that produce a 30-fold decrease in the apparent maximal velocity due to competition with glycolate-2-P, the Km of glycerate-2,3-P2 remains low. These observations lead us to postulate that each monophosphoglycerate substrate has a separate site on the enzyme and that glycerate-2,3-P2 can bind to either site. The binding of anions to one site of the nonphosphorylated enzyme allows an increase in the on and off rates of glycerate-2,3-P2 at the alternate site. Salts inhibit the mutase reaction. The Km of glycerate-2,3-P2 is increased as is that of glycerate-2-P. The effect on the Km of glycerate-2,3-P2 is attributed to an increase in the off rate/on rate ratio for glycerate-2,3-P2. The bisphosphoglycerate synthase reaction is shown to require added glycerate-3-P. The equilibrium between enzyme and glycerate-1,3-P2 is favorable (Kdiss less than or equal 7 X 10(-8) M) and suggests that in the absence of a separate synthase this reaction may have functional significance.
已对鸡胸磷酸甘油酸变位酶的稳态动力学及盐类对其的影响进行了研究。该酶可催化三种磷酰基转移反应:变位酶反应、二磷酸甘油酸磷酸酶反应和二磷酸甘油酸合酶反应。使用[2T]甘油酸 - 2 - 磷酸作为底物,在有利方向(Keq = 甘油酸 - 3 - 磷酸/甘油酸 - 2 - 磷酸约等于12)上测定变位酶反应速率。在激活剂2 - 磷酸乙醇酸存在下研究二磷酸甘油酸磷酸酶活性。后者是甘油酸 - 磷酸的类似物,似乎作为一种无效的变位酶底物起作用。两种活性所获得的动力学模式均为乒乓机制,第二种底物的抑制作用在低于该底物Km值的浓度下发生。在50 mM N - [三(羟甲基)甲基 - 2 - 氨基]乙磺酸盐(TES)/含有0.1 M KCl的钠缓冲液中,pH 7.5,25℃条件下测定的变位酶动力学参数为:Km甘油酸 - 2,3 - 二磷酸,0.069微摩尔;Km甘油酸 - 2 - 磷酸,14微摩尔;Km甘油酸 - 3 - 磷酸约200微摩尔;Ki甘油酸 - 2 - 磷酸,4微摩尔。在50 mM三乙醇胺/Cl - 缓冲液中,pH 7.5,25℃条件下磷酸酶反应的动力学参数为:Km甘油酸 - 2,3 - 二磷酸,0.065微摩尔;Km 2 - 磷酸乙醇酸,479微摩尔;Ki 2 - 磷酸乙醇酸,135微摩尔。该酶对离子环境的变化敏感。在2 - 磷酸乙醇酸存在下,增加盐浓度可通过降低甘油酸 - 2,3 - 二磷酸的表观Km来激活磷酸酶。这些影响归因于阴离子成分,且Cl - 的作用大于乙酸根大于TES。相同的盐类对于2 - 磷酸乙醇酸而言是竞争性抑制剂。在高浓度KCl存在下,由于与2 - 磷酸乙醇酸竞争,表观最大速度降低30倍,但甘油酸 - 2,3 - 二磷酸的Km仍保持较低。这些观察结果使我们推测,每种单磷酸甘油酸底物在酶上有一个单独的位点,并且甘油酸 - 2,3 - 二磷酸可以结合到任何一个位点。阴离子与未磷酸化酶的一个位点结合会使甘油酸 - 2,3 - 二磷酸在另一个位点的结合和解离速率增加。盐类抑制变位酶反应。甘油酸 - 2,3 - 二磷酸的Km以及甘油酸 - 2 - 磷酸的Km均增加。对甘油酸 - 2,3 - 二磷酸Km的影响归因于甘油酸 - 2,3 - 二磷酸解离速率/结合速率比值的增加。已表明二磷酸甘油酸合酶反应需要添加甘油酸 - 3 - 磷酸。酶与甘油酸 - 1,3 - 二磷酸之间的平衡是有利的(Kdiss小于或等于7×10^(-8) M),这表明在没有单独合酶的情况下,该反应可能具有功能意义。