Young Robert P, Caulkins Bethany G, Borchardt Dan, Bulloch Daryl N, Larive Cynthia K, Dunn Michael F, Mueller Leonard J
Department of Chemistry, University of California, Riverside, Riverside, CA, 92521, USA.
Department of Biochemistry, University of California, Riverside, Riverside, CA, 92521, USA.
Angew Chem Int Ed Engl. 2016 Jan 22;55(4):1350-4. doi: 10.1002/anie.201508898. Epub 2015 Dec 10.
Oxygen is an essential participant in the acid-base chemistry that takes place within many enzyme active sites, yet has remained virtually silent as a probe in NMR spectroscopy. Here, we demonstrate the first use of solution-state (17)O quadrupole central-transition NMR spectroscopy to characterize enzymatic intermediates under conditions of active catalysis. In the 143 kDa pyridoxal-5'-phosphate-dependent enzyme tryptophan synthase, reactions of the α-aminoacrylate intermediate with the nucleophiles indoline and 2-aminophenol correlate with an upfield shift of the substrate carboxylate oxygen resonances. First principles calculations suggest that the increased shieldings for these quinonoid intermediates result from the net increase in the charge density of the substrate-cofactor π-bonding network, particularly at the adjacent α-carbon site.
氧气是许多酶活性位点内发生的酸碱化学过程中的重要参与者,但在核磁共振光谱中作为探针却几乎未被使用过。在此,我们首次展示了利用溶液态(17)O四极中心跃迁核磁共振光谱在活性催化条件下表征酶中间体。在143 kDa的依赖于磷酸吡哆醛的色氨酸合酶中,α-氨基丙烯酸酯中间体与亲核试剂二氢吲哚和2-氨基苯酚的反应与底物羧酸根氧共振的上移相关。第一性原理计算表明,这些醌型中间体屏蔽作用的增强源于底物-辅因子π键网络电荷密度的净增加,特别是在相邻的α-碳位点。