Beassoni Paola R, Berti Federico Pérez de, Otero Lisandro H, Risso Valeria A, Ferreyra Raul G, Lisa Angela T, Domenech Carlos E, Ermácora Mario R
Departamento de Biología Molecular, Universidad Nacional de Río Cuarto, Río Cuarto, Córdoba, Argentina.
Protein Expr Purif. 2010 Jun;71(2):153-9. doi: 10.1016/j.pep.2010.01.006. Epub 2010 Jan 11.
Pseudomonas aeruginosa infections constitute a widespread health problem with high economical and social impact, and the phosphorylcholine phosphatase (PchP) of this bacterium is a potential target for antimicrobial treatment. However, drug design requires high-resolution structural information and detailed biophysical knowledge not available for PchP. An obstacle in the study of PchP is that current methods for its expression and purification are suboptimal and allowed only a preliminary kinetic characterization of the enzyme. Herein, we describe a new procedure for the efficient preparation of recombinant PchP overexpressed in Escherichia coli. The enzyme is purified from urea solubilized inclusion bodies and refolded by dialysis. The product of PchP refolding is a mixture of native PchP and a kinetically-trapped, alternatively-folded aggregate that is very slowly converted into the native state. The properly folded and fully active enzyme is isolated from the refolding mixture by size-exclusion chromatography. PchP prepared by the new procedure was subjected to chemical and biophysical characterization, and its basic optical, hydrodynamic, metal-binding, and catalytic properties are reported. The unfolding of the enzyme was also investigated, and its thermal stability was determined. The obtained information should help to compare PchP with other phosphatases and to obtain a better understanding of its catalytic mechanism. In addition, preliminary trials showed that PchP prepared by the new protocol is suitable for crystallization, opening the way for high-resolution studies of the enzyme structure.
铜绿假单胞菌感染构成了一个具有广泛经济和社会影响的健康问题,该细菌的磷酸胆碱磷酸酶(PchP)是抗菌治疗的一个潜在靶点。然而,药物设计需要高分辨率的结构信息和详细的生物物理知识,而这些对于PchP来说是不可用的。研究PchP的一个障碍是,目前其表达和纯化的方法并不理想,仅能对该酶进行初步的动力学表征。在此,我们描述了一种高效制备在大肠杆菌中过表达的重组PchP的新方法。该酶从尿素溶解的包涵体中纯化出来,并通过透析进行复性。PchP复性的产物是天然PchP和一种动力学捕获的、可折叠的聚集体的混合物,这种聚集体会非常缓慢地转化为天然状态。通过尺寸排阻色谱从复性混合物中分离出正确折叠且完全有活性的酶。对通过新方法制备的PchP进行了化学和生物物理表征,并报道了其基本的光学、流体力学、金属结合和催化特性。还研究了该酶的去折叠情况,并测定了其热稳定性。所获得的信息应有助于将PchP与其他磷酸酶进行比较,并更好地理解其催化机制。此外,初步试验表明,通过新方案制备