Laboratory of Systems Biology, Van Andel Research Institute, Grand Rapids, Michigan, United States of America.
PLoS One. 2012;7(11):e50217. doi: 10.1371/journal.pone.0050217. Epub 2012 Nov 20.
PTPσ is a dual-domain receptor type protein tyrosine phosphatase (PTP) with physiologically important functions which render this enzyme an attractive biological target. Specifically, loss of PTPσ has been shown to elicit a number of cellular phenotypes including enhanced nerve regeneration following spinal cord injury (SCI), chemoresistance in cultured cancer cells, and hyperactive autophagy, a process critical to cell survival and the clearance of pathological aggregates in neurodegenerative diseases. Owing to these functions, modulation of PTPσ may provide therapeutic value in a variety of contexts. Furthermore, a small molecule inhibitor would provide utility in discerning the cellular functions and substrates of PTPσ. To develop such molecules, we combined in silico modeling with in vitro phosphatase assays to identify compounds which effectively inhibit the enzymatic activity of PTPσ. Importantly, we observed that PTPσ inhibition was frequently mediated by oxidative species generated by compounds in solution, and we further optimized screening conditions to eliminate this effect. We identified a compound that inhibits PTPσ with an IC(50) of 10 µM in a manner that is primarily oxidation-independent. This compound favorably binds the D1 active site of PTPσ in silico, suggesting it functions as a competitive inhibitor. This compound will serve as a scaffold structure for future studies designed to build selectivity for PTPσ over related PTPs.
PTPσ 是一种具有重要生理功能的双结构域受体型蛋白酪氨酸磷酸酶(PTP),使其成为有吸引力的生物靶点。具体而言,已经证明 PTPσ 的缺失会引起多种细胞表型,包括脊髓损伤(SCI)后神经再生增强、培养的癌细胞中的化疗耐药性以及过度活跃的自噬,这是细胞存活和清除神经退行性疾病中病理性聚集体的关键过程。由于这些功能,PTPσ 的调节可能在多种情况下具有治疗价值。此外,小分子抑制剂将有助于辨别 PTPσ 的细胞功能和底物。为了开发这些分子,我们将计算机模拟与体外磷酸酶测定相结合,以鉴定有效抑制 PTPσ 酶活性的化合物。重要的是,我们观察到 PTPσ 的抑制作用经常是由溶液中化合物产生的氧化物质介导的,我们进一步优化了筛选条件以消除这种影响。我们鉴定出一种化合物,以 10µM 的 IC50 抑制 PTPσ,其方式主要是非氧化依赖性。该化合物在计算机上有利于结合 PTPσ 的 D1 活性位点,表明其作为竞争性抑制剂发挥作用。该化合物将作为未来旨在针对 PTPσ 构建选择性的相关 PTP 的研究的支架结构。