Whitman C P, Hegeman G D, Cleland W W, Kenyon G L
Biochemistry. 1985 Jul 16;24(15):3936-42. doi: 10.1021/bi00336a020.
Kinetic properties of mandelate racemase catalysis (Vmax, Km, deuterium isotope effects, and pH profiles) were all measured in both directions by the circular dichroic assay of Sharp et al. [Sharp, T. R., Hegeman, G. D., & Kenyon, G. L. (1979) Anal. Biochem. 94, 329]. These results, along with those of studying interactions of mandelate racemase with resolved, enantiomeric competitive inhibitors [(R)- and (S)-alpha-phenylglycerates], indicate a high degree of symmetry in both binding and catalysis. Racemization of either enantiomer of mandelate in D2O did not show an overshoot region of molecular ellipticity in circular dichroic measurements upon approach to equilibrium. Both the absence of such an overshoot region and the high degree of kinetic symmetry are consistent with a one-base acceptor mechanism for mandelate racemase. On the other hand, results of irreversible inhibition with partially resolved, enantiomeric affinity labels [(R)- and (S)-alpha-phenylglycidates] reveal a "functional asymmetry" at the active site. Mechanistic proposals, consistent with these results, are presented.
扁桃酸消旋酶催化的动力学性质(Vmax、Km、氘同位素效应和pH曲线)均通过夏普等人的圆二色性测定法在两个方向上进行了测量[夏普,T.R.,赫格曼,G.D.,&凯尼恩,G.L.(1979年)《分析生物化学》94卷,329页]。这些结果,连同扁桃酸消旋酶与拆分后的对映体竞争性抑制剂[(R)-和(S)-α-苯基甘油酸]相互作用的研究结果,表明在结合和催化过程中都具有高度的对称性。在D2O中扁桃酸的任何一种对映体消旋时,在接近平衡的圆二色性测量中均未显示分子椭圆率的过冲区域。这种过冲区域的不存在以及高度的动力学对称性都与扁桃酸消旋酶的单碱基受体机制一致。另一方面,用部分拆分的对映体亲和标记物[(R)-和(S)-α-苯基缩水甘油酸]进行不可逆抑制的结果揭示了活性位点处的“功能不对称性”。本文提出了与这些结果一致的机理推测。