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重新定义扁桃酸消旋酶的最小基质容忍度。三氟乳酸的外消旋化。

Redefining the minimal substrate tolerance of mandelate racemase. Racemization of trifluorolactate.

机构信息

Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.

出版信息

Biochemistry. 2011 Oct 18;50(41):8846-52. doi: 10.1021/bi201188j. Epub 2011 Sep 21.

Abstract

Mandelate racemase (EC 5.1.2.2) from Pseudomonas putida catalyzes the interconversion of the enantiomers of mandelic acid and a variety of aryl- and heteroaryl-substituted mandelate derivatives, suggesting that β,γ-unsaturation is a requisite feature of substrates for the enzyme. We show that β,γ-unsaturation is not an absolute requirement for catalysis and that mandelate racemase can bind and catalyze the racemization of (S)-trifluorolactate (k(cat) = 2.5 ± 0.3 s(-1), K(m) = 1.74 ± 0.08 mM) and (R)-trifluorolactate (k(cat) = 2.0 ± 0.2 s(-1), K(m) = 1.2 ± 0.2 mM). The enzyme was shown to catalyze hydrogen-deuterium exchange at the α-postion of trifluorolactate using (1)H NMR spectrocsopy. β-Elimination of fluoride was not detected using (19)F NMR spectroscopy. Although mandelate racemase bound trifluorolactate with an affinity similar to that exhibited for mandelate, the turnover numbers (k(cat)) were markedly reduced by ∼318-fold, resulting in catalytic efficiencies (k(cat)/K(m)) that were ~400-fold lower than those observed for mandelate. These observations suggested that chemical steps on the enzyme were likely rate-determining, which was confirmed by demonstrating that the rates of mandelate racemase-catalyzed racemization of (S)-trifluorolactate were not dependent upon the solvent microviscosity. Circular dichroism spectroscopy was used to measure the rates of nonenzymatic racemization of (S)-trifluorolactate at elevated temperatures. The values of ΔH(‡) and ΔS(‡) for the nonenzymatic racemization reaction were determined to be 28.0 (±0.7) kcal/mol and -15.7 (±1.7) cal K(-1) mol(-1), respectively, corresponding to a free energy of activation equal to 33 (±4) kcal/mol at 25 °C. Hence, mandelate racemase stabilizes the altered trifluorolactate in the transition state (ΔG(tx)) by at least 20 kcal/mol.

摘要

假单胞菌属的扁桃酸消旋酶(EC 5.1.2.2)能够催化扁桃酸对映异构体和各种芳基和杂芳基取代的扁桃酸衍生物的相互转化,这表明β,γ-不饱和是该酶底物的必要特征。我们表明,β,γ-不饱和不是催化的绝对要求,并且扁桃酸消旋酶可以结合并催化(S)-三氟乳酸(k(cat)=2.5±0.3 s(-1),K(m)=1.74±0.08 mM)和(R)-三氟乳酸(k(cat)=2.0±0.2 s(-1),K(m)=1.2±0.2 mM)的外消旋化。使用(1)H NMR 光谱法证明该酶可以催化三氟乳酸的α-氢氘交换。使用(19)F NMR 光谱法未检测到氟化物的β-消除。尽管扁桃酸消旋酶与扁桃酸的亲和力相似,但结合三氟乳酸的 turnover number(k(cat))降低了约 318 倍,导致催化效率(k(cat)/K(m))比观察到的扁桃酸低约 400 倍。这些观察结果表明,酶上的化学步骤可能是限速步骤,这通过证明扁桃酸消旋酶催化(S)-三氟乳酸外消旋化的速率不依赖于溶剂微粘度得到证实。圆二色光谱法用于测量升高温度下(S)-三氟乳酸非酶促外消旋化的速率。确定非酶促外消旋反应的ΔH(‡)和ΔS(‡)值分别为 28.0(±0.7)kcal/mol 和-15.7(±1.7)cal K(-1) mol(-1),对应于 25°C 时的自由能激活等于 33(±4)kcal/mol。因此,扁桃酸消旋酶将改变的三氟乳酸在过渡态(ΔG(tx))中稳定至少 20 kcal/mol。

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