Kumar Ramasamy P, Morehouse Benjamin R, Matos Jason O, Malik Karan, Lin Hongkun, Krauss Isaac J, Oprian Daniel D
Department of Biochemistry, Brandeis University , Waltham, Massachusetts 02454, United States.
Department of Chemistry, Brandeis University , Waltham, Massachusetts 02454, United States.
Biochemistry. 2017 Mar 28;56(12):1716-1725. doi: 10.1021/acs.biochem.7b00144. Epub 2017 Mar 15.
The stereochemical course of monoterpene synthase reactions is thought to be determined early in the reaction sequence by selective binding of distinct conformations of the geranyl diphosphate (GPP) substrate. We explore here formation of early Michaelis complexes of the (+)-limonene synthase [(+)-LS] from Citrus sinensis using monofluorinated substrate analogues 2-fluoro-GPP (FGPP) and 2-fluoroneryl diphosphate (FNPP). Both are competitive inhibitors for (+)-LS with K values of 2.4 ± 0.5 and 39.5 ± 5.2 μM, respectively. The K values are similar to the K for the respective nonfluorinated substrates, indicating that fluorine does not significantly perturb binding of the ligand to the enzyme. FGPP and FNPP are also substrates, but with dramatically reduced rates (k values of 0.00054 ± 0.00005 and 0.00024 ± 0.00002 s, respectively). These data are consistent with a stepwise mechanism for (+)-LS involving ionization of the allylic GPP substrate to generate a resonance-stabilized carbenium ion in the rate-limiting step. Crystals of apo-(+)-LS were soaked with FGPP and FNPP to obtain X-ray structures at 2.4 and 2.2 Å resolution, respectively. The fluorinated analogues are found anchored in the active site through extensive interactions involving the diphosphate, three metal ions, and three active-site Asp residues. Electron density for the carbon chains extends deep into a hydrophobic pocket, while the enzyme remains mostly in the open conformation observed for the apoprotein. While FNPP was found in multiple conformations, FGPP, importantly, was in a single, relatively well-defined, left-handed screw conformation, consistent with predictions for the mechanism of stereoselectivity in the monoterpene synthases.
单萜合酶反应的立体化学过程被认为在反应序列早期由香叶基二磷酸(GPP)底物不同构象的选择性结合所决定。我们在此利用单氟取代的底物类似物2-氟-GPP(FGPP)和2-氟橙花基二磷酸(FNPP),探索来自脐橙的(+)-柠檬烯合酶[(+)-LS]早期米氏复合物的形成。二者都是(+)-LS的竞争性抑制剂,K值分别为2.4±0.5和39.5±5.2μM。这些K值与相应非氟化底物的K值相似,表明氟不会显著干扰配体与酶的结合。FGPP和FNPP也是底物,但反应速率大幅降低(k值分别为0.00054±0.00005和0.00024±0.00002 s)。这些数据与(+)-LS的逐步机制一致,该机制涉及烯丙基GPP底物的电离,在限速步骤中产生共振稳定的碳正离子。将脱辅基(+)-LS晶体用FGPP和FNPP浸泡,分别获得分辨率为2.4和2.2 Å的X射线结构。发现氟化类似物通过涉及二磷酸、三个金属离子和三个活性位点天冬氨酸残基的广泛相互作用锚定在活性位点。碳链的电子密度深入到一个疏水口袋中,而酶大部分保持脱辅基蛋白所观察到的开放构象。虽然发现FNPP有多种构象,但重要的是,FGPP处于单一的、相对明确的左旋螺旋构象,这与单萜合酶立体选择性机制的预测一致。