van Ameijde Jeroen, Overvoorde John, Knapp Stefan, den Hertog Jeroen, Ruijtenbeek Rob, Liskamp Rob M J
Medicinal Chemistry and Chemical Biology, Utrecht University, Universiteitsweg 99, 3584 CG Utrecht (The Netherlands), Fax: (+31) (0)30-253-6655.
Netherlands Proteomics Centre, Padualaan 8, 3584 CA Utrecht (The Netherlands).
Chempluschem. 2013 Nov;78(11):1349-1357. doi: 10.1002/cplu.201300299. Epub 2013 Sep 17.
Phosphatases and kinases regulate the crucial phosphorylation post-translational modification. In spite of their similarly important role in many diseases and therapeutic potential, phosphatases have received arguably less attention. One reason for this is a scarcity of high-throughput phosphatase assays. Herein, a new real-time, dynamic protein tyrosine phosphatase (PTP) substrate microarray assay measuring product formation is described. PTP substrates comprising a novel 3-nitrophosphotyrosine residue are immobilized in discrete spots. After reaction catalyzed by a PTP a 3-nitrotyrosine residue is formed that can be detected by specific, sequence-independent antibodies. The resulting microarray was successfully evaluated with a panel of recombinant PTPs and cell lysates, which afforded results comparable to data from other assays. Its parallel nature, convenience, and low sample requirements facilitate investigation of the therapeutically relevant PTP enzyme family.
磷酸酶和激酶调节关键的翻译后磷酸化修饰。尽管它们在许多疾病中具有同样重要的作用和治疗潜力,但磷酸酶受到的关注可能较少。造成这种情况的一个原因是高通量磷酸酶检测方法的匮乏。在此,描述了一种新的实时、动态蛋白质酪氨酸磷酸酶(PTP)底物微阵列检测方法,该方法可测量产物的形成。包含新型3-硝基磷酸酪氨酸残基的PTP底物固定在离散的斑点中。在PTP催化反应后,形成一个3-硝基酪氨酸残基,可通过特异性、不依赖序列抗体进行检测。用一组重组PTP和细胞裂解物成功评估了所得微阵列,其结果与其他检测方法的数据相当。其平行性、便利性和低样品需求有助于对具有治疗相关性的PTP酶家族进行研究。