Institute of Biophysics and Physical Biochemistry, University of Regensburg, Germany.
Protein Eng Des Sel. 2012 Nov;25(11):751-60. doi: 10.1093/protein/gzs080. Epub 2012 Oct 28.
In the course of tryptophan biosynthesis, the isomerization of phosphoribosylanthranilate (PRA) is catalyzed by the (βα)₈-barrel enzyme TrpF. The reaction occurs via a general acid-base mechanism with an aspartate and a cysteine residue acting as acid and base, respectively. PRA isomerase activity could be established on two (βα)₈-barrel enzymes involved in histidine biosynthesis, namely HisA and HisF, and on a HisAF chimera, by introducing two aspartate-to-valine substitutions. We have analyzed the reaction mechanism underlying this engineered activity by measuring its pH dependence, solving the crystal structure of a HisF variant with bound product analogue, and applying molecular dynamics simulations and mixed quantum and molecular mechanics calculations. The results suggest that PRA is anchored by the C-terminal phosphate-binding sites of HisA, HisF and HisAF. As a consequence, a conserved aspartate residue, which is equivalent to Cys7 from TrpF, is properly positioned to act as catalytic base. However, no obvious catalytic acid corresponding to Asp126 from TrpF could be identified in the three proteins. Instead, this role appears to be carried out by the carboxylate group of the anthranilate moiety of PRA. Thus, the engineered PRA isomerization activity is based on a reaction mechanism including substrate-assisted catalysis and thus differs substantially from the naturally evolved reaction mechanism used by TrpF.
在色氨酸生物合成过程中,磷酸核糖基邻氨基苯甲酸(PRA)的异构化由(βα)₈-桶状酶 TrpF 催化。该反应通过酸碱机制发生,天冬氨酸和半胱氨酸残基分别作为酸和碱起作用。通过引入两个天冬氨酸到缬氨酸的取代,可以在参与组氨酸生物合成的两个(βα)₈-桶状酶(即 HisA 和 HisF)和 HisAF 嵌合体上建立 PRA 异构酶活性。我们通过测量其 pH 依赖性、解析与结合产物类似物的 HisF 变体的晶体结构以及应用分子动力学模拟和混合量子和分子力学计算,分析了这种工程化活性的反应机制。结果表明,PRA 由 HisA、HisF 和 HisAF 的 C 末端磷酸结合位点锚定。因此,一个保守的天冬氨酸残基,相当于 TrpF 中的 Cys7,被正确定位为催化碱。然而,在这三种蛋白质中,都无法识别出与 TrpF 中的 Asp126 相对应的明显的催化酸。相反,这个角色似乎由 PRA 的邻氨基苯甲酸部分的羧酸基团承担。因此,工程化的 PRA 异构化活性基于包括底物辅助催化的反应机制,因此与 TrpF 自然进化的反应机制有很大不同。