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大肠杆菌K12(λ)的天冬氨酸激酶I-高丝氨酸脱氢酶I。单价阳离子的激活作用以及三磷酸腺苷-镁离子复合物对该激活过程影响的分析。

Aspartokinase I-homoserine dehydrogenase I of Escherichia coli K12 (lambda). Activation by monovalent cations and an analysis of the effect of the adenosine triphosphate-magnesium ion complex on this activation process.

作者信息

Ogilvie J W, Vickers L P, Clark R B, Jones M M

出版信息

J Biol Chem. 1975 Feb 25;250(4):1242-50.

PMID:163250
Abstract

The dehydrogenase activity of the aspartokinase I-homoserine dehydrogenase I complex isolated from Escherichia coli K12 is subject to a cooperative activation by K+ or Rb+, which is characterized by a Hill coefficient of approximately 2. Ionic strength has little effect on the Hill coefficient for this activation process; however, high ionic strength appears to increase the enzyme's affinity for K+ and decrease its affinity for Rb+. The Vmax of the K+-activated dehydrogenase is greater than that of the Rb+-activated dehydrogenase. The results of a study of the competition between K+ and Rb+ in the activation process suggest the presence of an activated species containing both K+ and Rb+. The cooperative activation by K+ is antagonized by Na+ via a process that is noncooperative with respect to Na+. The MgATP-2- complex, a substrate for the kinase activity of aspartokinase I-homoserine dehydrogenase I, has a marked effect on the K+ activation of the dehydrogenase activity. Kinetic studies of this effect of MgATP-2- on the K+ requirement of the dehydrogenase at pH 8.9 indicate that: (a) activation by a monovalent cation is essential in the presence as well as in the absence of MgATP-2-; (b) the concentration of K+ required to activate fully the dehydrogenase is reduced in the presence of MgATP-2-; (c) activation of the dehydrogenase by K+ is noncooperative in the presence of MgATP-2-; and (d) the maximum velocity for the dehydrogenase catalyzed oxidation of homoserine is greater in the presence of MgATP-2- than in its absence. Based on these results, a simple model consistent with these data is proposed. Destruction of the kinase activity and the threonine sensitivity of the aspartokinase-homoserine dehydrogenase complex by treatment with 5,5'-dithiobis(2-nitrobenzoic acid) or by incubation at pH 9 also converts the K+ activation of the dehydrogenase from a cooperative to a noncooperative process. Marked protection of the enzyme against loss of threonine sensitivity at pH 9 is afforded by MgATP-2- plus K+ and homoserine. The apparent molecular radius of the enzyme complex as determined by gel filtration at pH 8.85 in the presence of threonine or MgATP-2- plus K+ and homoserine is dependent on the enzyme concentration. The observed apparent molecular radii of 70 A at high enzyme concentrations and 61 A at low enzyme concentrations are consistent with the enzyme's undergoing a concentration-dependent dissociation from a tetrameric to a dimeri

摘要

从大肠杆菌K12中分离出的天冬氨酸激酶I - 高丝氨酸脱氢酶I复合物的脱氢酶活性受到K⁺或Rb⁺的协同激活,其特征在于希尔系数约为2。离子强度对该激活过程的希尔系数影响很小;然而,高离子强度似乎会增加酶对K⁺的亲和力并降低其对Rb⁺的亲和力。K⁺激活的脱氢酶的Vmax大于Rb⁺激活的脱氢酶的Vmax。一项关于K⁺和Rb⁺在激活过程中的竞争研究结果表明存在同时含有K⁺和Rb⁺的激活物种。K⁺的协同激活被Na⁺通过一个对Na⁺而言非协同的过程所拮抗。MgATP²⁻复合物是天冬氨酸激酶I - 高丝氨酸脱氢酶I激酶活性的底物,对脱氢酶活性的K⁺激活有显著影响。在pH 8.9下对MgATP²⁻对脱氢酶K⁺需求的这种影响进行的动力学研究表明:(a) 在有和没有MgATP²⁻的情况下,单价阳离子的激活都是必不可少的;(b) 在有MgATP²⁻的情况下,完全激活脱氢酶所需的K⁺浓度会降低;(c) 在有MgATP²⁻的情况下,K⁺对脱氢酶的激活是非协同的;(d) 在有MgATP²⁻的情况下,脱氢酶催化高丝氨酸氧化的最大速度比没有时更大。基于这些结果,提出了一个与这些数据一致的简单模型。用5,5'-二硫代双(2 - 硝基苯甲酸)处理或在pH 9下孵育破坏天冬氨酸激酶 - 高丝氨酸脱氢酶复合物的激酶活性和苏氨酸敏感性,也会使脱氢酶的K⁺激活从协同过程转变为非协同过程。MgATP²⁻加K⁺和高丝氨酸能显著保护酶在pH 9下不丧失苏氨酸敏感性。在苏氨酸或MgATP²⁻加K⁺和高丝氨酸存在下,于pH 8.85通过凝胶过滤测定的酶复合物的表观分子半径取决于酶浓度。在高酶浓度下观察到的表观分子半径为70 Å,在低酶浓度下为61 Å,这与酶从四聚体浓度依赖性解离为二聚体一致

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