Department of Applied Molecular Biosciences, Graduate School of Bioagricultural Sciences, Nagoya University, Japan.
FEBS J. 2012 Feb;279(4):612-24. doi: 10.1111/j.1742-4658.2011.08451.x. Epub 2012 Jan 19.
d-Serine dehydratase from Saccharomyces cerevisiae (DsdSC) is a fold-type III pyridoxal 5'-phosphate-dependent enzyme catalyzing d-serine dehydration. The enzyme contains 1 mol Zn(2+) in its active site and shows a unique zinc dependence. The Zn(2+) is essential for the d-serine dehydration, but not for the α,β-elimination of β-Cl-d-alanine catalyzed as a side-reaction. The fact that dehydration of d-threonine and d-allo-threonine, also catalyzed by DsdSC, is likewise Zn(2+) dependent indicates that Zn(2+) is indispensable for the elimination of hydroxyl group, regardless of the stereochemistry of C(β) . Removal of Zn(2+) results in a less polar active site without changing the gross conformation of DsdSC. (1) H NMR determined the rates of α-hydrogen abstraction and hydroxyl group elimination of d-serine in (2) H(2) O to be 9.7 and 8.5 s(-1) , respectively, while the removal of Zn(2+) abolished both reactions. Mutation of Cys400 or His398 within the Zn(2+) binding sites to Ala endowed DsdSC with similar properties to those of the Zn(2+) -depleted wild-type enzyme: the mutants lost the reactivity toward d-serine and d-threonine but retained that toward β-Cl-d-alanine. (1) H NMR analysis also revealed that both α-hydrogen abstraction and hydroxyl group elimination from d-serine were severely hampered in the C400A mutant. Our data suggest that DsdSC catalyzes the α-hydrogen abstraction and hydroxyl group elimination in a concerted fashion.
酿酒酵母 d-丝氨酸脱水酶(DsdSC)是一种折叠类型 III 的依赖吡哆醛 5'-磷酸的酶,可催化 d-丝氨酸脱水。该酶在其活性部位含有 1 个锌(Ⅱ)原子,表现出独特的锌依赖性。锌(Ⅱ)对于 d-丝氨酸脱水是必需的,但对于作为副反应催化的β-Cl-d-丙氨酸的α,β-消除则不是必需的。事实上,DsdSC 同样催化的 d-苏氨酸和 d-allo-苏氨酸的脱水也依赖于锌(Ⅱ),这表明锌(Ⅱ)对于羟基的消除是不可或缺的,而与 C(β)的立体化学无关。去除锌(Ⅱ)会导致活性部位极性降低,但不会改变 DsdSC 的总体构象。(1)H NMR 确定了 d-丝氨酸在(2)H2O 中α-氢的提取和羟基消除的速率分别为 9.7 和 8.5 s(-1),而去除锌(Ⅱ)则使这两种反应都停止。在锌(Ⅱ)结合位点将 Cys400 或 His398 突变为丙氨酸后,DsdSC 获得了与锌(Ⅱ)耗尽型野生型酶相似的性质:突变体失去了对 d-丝氨酸和 d-苏氨酸的反应性,但保留了对β-Cl-d-丙氨酸的反应性。(1)H NMR 分析还表明,C400A 突变体中 d-丝氨酸的α-氢提取和羟基消除都受到严重阻碍。我们的数据表明,DsdSC 以协同的方式催化α-氢提取和羟基消除。