DeClue Michael S, Baldridge Kim K, Künzler Dominik E, Kast Peter, Hilvert Donald
Laboratory of Organic Chemistry, Swiss Federal Institute of Technology, ETH Hönggerberg, CH-8093 Zürich, Switzerland.
J Am Chem Soc. 2005 Nov 2;127(43):15002-3. doi: 10.1021/ja055871t.
Isochorismate pyruvate lyase (IPL) catalyzes the cleavage of isochorismate to give salicylate and pyruvate, a key step in bacterial siderophore biosynthesis. We investigated the enzyme from Pseudomonas aeruginosa using isochorismate selectively deuterated at C2 as a substrate. Monitoring the reaction by 2H NMR spectroscopy revealed that the label is quantitatively transferred from C2 to C9, producing stoichiometric amounts of [3-2H]pyruvate as product. Moreover, the deuterium kinetic isotope effect of 2.34 +/- 0.08 on kcat indicates that C-H cleavage is significantly rate limiting. Consistent with these data, hybrid density functional theory (HDFT) calculations at the Becke3LYP/DZ+(2d,p) level of theory predict a concerted but highly asynchronous pericyclic transition structure, in which carbon-oxygen bond cleavage is more advanced than hydrogen atom transfer from C2 to C9; the calculated 2H isotope effect of 2.22 at C2 is in excellent accord with the experimental value. Together, these findings indicate that IPL should be added to the small set of proteins that are known to catalyze pericyclic reactions. They also raise the possibility that enzymes, such as chorismate pyruvate lyase, salicylate synthase, 4-amino-4-deoxychorismate lyase, and anthranilate synthase, which accelerate formally similar reaction steps, may also exploit pericyclic mechanisms.
异分支酸丙酮酸裂解酶(IPL)催化异分支酸裂解生成水杨酸和丙酮酸,这是细菌铁载体生物合成中的关键步骤。我们使用在C2处选择性氘代的异分支酸作为底物,研究了铜绿假单胞菌中的这种酶。通过2H NMR光谱监测反应发现,该标记定量地从C2转移至C9,生成化学计量的[3-2H]丙酮酸作为产物。此外,kcat上2.34±0.08的氘动力学同位素效应表明,C-H裂解是显著的限速步骤。与这些数据一致,在Becke3LYP/DZ+(2d,p)理论水平上的杂化密度泛函理论(HDFT)计算预测了一个协同但高度异步的周环过渡结构,其中碳-氧键的裂解比氢原子从C2转移至C9更为超前;计算得出的C2处2H同位素效应为2.22,与实验值高度吻合。总之,这些发现表明,IPL应被添加到已知催化周环反应的一小类蛋白质中。它们还增加了这样一种可能性,即诸如分支酸丙酮酸裂解酶、水杨酸合酶、4-氨基-4-脱氧分支酸裂解酶和邻氨基苯甲酸合酶等加速形式上相似反应步骤的酶,也可能利用周环机制。