Eisenstein E
Center for Advanced Research in Biotechnology, University of Maryland, Shady Grove, Rockville 20850.
J Biol Chem. 1991 Mar 25;266(9):5801-7.
Feedback inhibition of the regulatory enzyme threonine deaminase by isoleucine provides an important level of enzymic control over branched chain amino acid biosynthesis in Escherichia coli. Cloning ilvA, the structural gene for threonine deaminase, under control of the trc promoter results in expression of active enzyme upon induction by isopropyl 1-thio-beta-D-galactoside to levels of approximately 20% of the soluble protein in cell extracts. High level expression of threonine deaminase has facilitated the development of a rapid and efficient protocol for the purification of gram quantities of enzyme with a specific activity 3-fold greater than previous preparations. The catalytic activity of threonine deaminase is absolutely dependent on the presence of pyridoxal phosphate, and the tetrameric molecule is isolated containing 1 mol of cofactor/56,000-Da chain. Wild-type threonine deaminase demonstrates a sigmoidal dependence of initial velocity on threonine concentration in the absence of isoleucine, consistent with a substrate-promoted conversion of the enzyme from a low activity to a high activity conformation. The enzymic dehydration of threonine to alpha-ketobutyrate measured by steady-state kinetics, performed at 20 degrees C in 0.05 M potassium phosphate, pH 7.5, is described by a Hill coefficient, nH, of 2.3 and a K0.5 of 8.0 mM. The negative allosteric effector L-isoleucine strongly inhibits the enzyme, yielding a value for nH of 3.9 and K0.5 of 74 mM whereas enzyme activity is greatly increased by L-valine, which yields nearly hyperbolic kinetics characterized by a value for nH of 1.0 and a K0.5 of 5.7 mM. Thus, these effectors promote dramatic and opposing effects on the transition from the low activity to the high activity conformation of the tetrameric enzyme.
异亮氨酸对调节酶苏氨酸脱氨酶的反馈抑制为大肠杆菌中支链氨基酸生物合成提供了重要的酶促控制水平。将苏氨酸脱氨酶的结构基因ilvA克隆到trc启动子的控制下,经异丙基硫代-β-D-半乳糖苷诱导后,活性酶的表达量可达细胞提取物中可溶性蛋白质的约20%。苏氨酸脱氨酶的高水平表达促进了一种快速有效的方案的开发,用于纯化克级量的酶,其比活性比以前的制剂高3倍。苏氨酸脱氨酶的催化活性绝对依赖于磷酸吡哆醛的存在,分离得到的四聚体分子含有1摩尔辅因子/56,000道尔顿的链。野生型苏氨酸脱氨酶在不存在异亮氨酸的情况下,其初始速度对苏氨酸浓度呈S形依赖关系,这与底物促进酶从低活性构象向高活性构象的转变一致。在20℃、0.05M磷酸钾、pH7.5条件下通过稳态动力学测量的苏氨酸向α-酮丁酸的酶促脱水反应,其希尔系数nH为2.3,K0.5为8.0mM。负别构效应剂L-异亮氨酸强烈抑制该酶,nH值为3.9,K0.5为74mM,而L-缬氨酸则大大提高了酶活性,其动力学几乎呈双曲线,nH值为1.0,K0.5为5.7mM。因此,这些效应剂对四聚体酶从低活性构象向高活性构象的转变产生了显著且相反的影响。