Departamento de Química, Universidade Federal de São Carlos, Cx Postal 676, São Carlos 13565-905, São Paulo, Brazil.
J Chromatogr A. 2012 Apr 6;1232:110-5. doi: 10.1016/j.chroma.2011.10.056. Epub 2011 Oct 28.
The enzyme purine nucleoside phosphorylase (PNP) is a target for the discovery of new lead compounds employed on the treatment severe T-cell mediated disorders. Within this context, the development of new, direct, and reliable methods for ligands screening is an important task. This paper describes the preparation of fused silica capillaries human PNP (HsPNP) immobilized enzyme reactor (IMER). The activity of the obtained IMER is monitored on line in a multidimensional liquid chromatography system, by the quantification of the product formed throughout the enzymatic reaction. The K(M) value for the immobilized enzyme was about twofold higher than that measured for the enzyme in solution (255 ± 29.2 μM and 133 ± 14.9 μM, respectively). A new fourth-generation immucillin derivative (DI4G; IC(50)=40.6 ± 0.36 nM), previously identified and characterized in HsPNP free enzyme assays, was used to validate the IMER as a screening method for HsPNP ligands. The validated method was also used for mechanistic studies with this inhibitor. This new approach is a valuable tool to PNP ligand screening, since it directly measures the hypoxanthine released by inosine phosphorolysis, thus furnishing more reliable results than those one used in a coupled enzymatic spectrophotometric assay.
嘌呤核苷磷酸化酶(PNP)是一种新的治疗严重 T 细胞介导疾病的先导化合物的靶点。在这种情况下,开发新的、直接的和可靠的配体筛选方法是一项重要的任务。本文描述了人 PNP(HsPNP)固定化酶反应器(IMER)的制备。通过在线多维液相色谱系统监测获得的 IMER 的活性,通过定量检测整个酶反应过程中形成的产物来实现。固定化酶的 K(M)值大约是溶液中酶的两倍(分别为 255±29.2 μM 和 133±14.9 μM)。一种新的第四代免疫抑制剂衍生物(DI4G;IC(50)=40.6±0.36 nM),以前在 HsPNP 游离酶测定中被鉴定和表征,被用来验证 IMER 作为 HsPNP 配体筛选的方法。该验证方法也用于该抑制剂的机制研究。该新方法是 PNP 配体筛选的有价值的工具,因为它直接测量肌苷磷酸解释放的次黄嘌呤,从而提供比偶联酶分光光度测定法更可靠的结果。