Department of Molecular Biology and Biotechnology, Krebs Institute, University of Sheffield, Sheffield S10 2TN, United Kingdom.
Proc Natl Acad Sci U S A. 2012 May 1;109(18):6910-5. doi: 10.1073/pnas.1116855109. Epub 2012 Apr 13.
Experimental observations of fluoromagnesate and fluoroaluminate complexes of β-phosphoglucomutase (β-PGM) have demonstrated the importance of charge balance in transition-state stabilization for phosphoryl transfer enzymes. Here, direct observations of ground-state analog complexes of β-PGM involving trifluoroberyllate establish that when the geometry and charge distribution closely match those of the substrate, the distribution of conformers in solution and in the crystal predominantly places the reacting centers in van der Waals proximity. Importantly, two variants are found, both of which satisfy the criteria for near attack conformers. In one variant, the aspartate general base for the reaction is remote from the nucleophile. The nucleophile remains protonated and forms a nonproductive hydrogen bond to the phosphate surrogate. In the other variant, the general base forms a hydrogen bond to the nucleophile that is now correctly orientated for the chemical transfer step. By contrast, in the absence of substrate, the solvent surrounding the phosphate surrogate is arranged to disfavor nucleophilic attack by water. Taken together, the trifluoroberyllate complexes of β-PGM provide a picture of how the enzyme is able to organize itself for the chemical step in catalysis through the population of intermediates that respond to increasing proximity of the nucleophile. These experimental observations show how the enzyme is capable of stabilizing the reaction pathway toward the transition state and also of minimizing unproductive catalysis of aspartyl phosphate hydrolysis.
实验观察到β-磷酸葡萄糖变位酶(β-PGM)的氟镁酸盐和氟铝酸盐复合物,这表明在磷酸转移酶的过渡态稳定中,电荷平衡的重要性。在这里,通过直接观察涉及三氟化铍的β-PGM 的基态类似物复合物,确定了当几何形状和电荷分布与底物非常匹配时,在溶液中和晶体中的构象分布主要将反应中心置于范德华接近状态。重要的是,发现了两种变体,它们都满足接近攻击构象的标准。在一种变体中,反应的天冬氨酸总碱远离亲核试剂。亲核试剂仍然质子化,并与磷酸替代物形成非生产性氢键。在另一种变体中,总碱与亲核试剂形成氢键,现在该氢键的取向正确,适用于化学转移步骤。相比之下,在没有底物的情况下,围绕磷酸替代物的溶剂排列不利于亲核试剂的水进攻。总之,β-PGM 的三氟化铍复合物提供了一个画面,说明酶如何通过响应亲核试剂接近程度的中间产物的分布来组织自身以进行催化中的化学步骤。这些实验观察表明了酶如何能够稳定反应途径向过渡态的发展,并且还能够最小化天冬氨酸磷酸水解的非生产性催化。