Kumar Sanjai, Zhou Bo, Liang Fubo, Wang Wei-Qing, Huang Zhonghui, Zhang Zhong-Yin
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Proc Natl Acad Sci U S A. 2004 May 25;101(21):7943-8. doi: 10.1073/pnas.0402323101. Epub 2004 May 17.
Protein tyrosine phosphatases (PTPs) are involved in the regulation of many aspects of cellular activity including proliferation, differentiation, metabolism, migration, and survival. Given the large number and complexity of PTPs in cell signaling, new strategies are needed for the integrated analysis of PTPs in the whole proteome. Unfortunately, the activities of many PTPs are tightly regulated by posttranslational mechanisms, limiting the utility of standard genomics and proteomics methods for functional characterization of these enzymes. To facilitate the global analysis of PTPs, we designed and synthesized two activity-based probes that consist of alpha-bromobenzylphosphonate as a PTP-specific trapping device and a linker that connects the trapping device with a biotin tag for visualization and purification. We showed that these probes are active site-directed irreversible inactivators of PTPs and form a covalent adduct with PTPs involving the active site Cys residue. Additionally, we demonstrated that the probes are extremely specific toward PTPs while remaining inert to other proteins, including the whole proteome from Escherichia coli. Consequently, these activity-based PTP probes can be used to profile PTP activity in complex proteomes. The ability to interrogate the entire PTP family on the basis of changes in their activity should greatly accelerate both the assignment of PTP function and the identification of potential therapeutic targets.
蛋白质酪氨酸磷酸酶(PTPs)参与细胞活动多个方面的调节,包括增殖、分化、代谢、迁移和存活。鉴于细胞信号传导中PTPs数量众多且复杂,需要新的策略来对整个蛋白质组中的PTPs进行综合分析。不幸的是,许多PTPs的活性受到翻译后机制的严格调控,这限制了标准基因组学和蛋白质组学方法用于这些酶功能表征的效用。为了促进对PTPs的全局分析,我们设计并合成了两种基于活性的探针,它们由作为PTP特异性捕获装置的α-溴苄基膦酸酯和将捕获装置与生物素标签连接以进行可视化和纯化的接头组成。我们表明,这些探针是PTPs的活性位点定向不可逆失活剂,并与涉及活性位点半胱氨酸残基的PTPs形成共价加合物。此外,我们证明这些探针对PTPs具有极高的特异性,而对其他蛋白质(包括大肠杆菌的整个蛋白质组)保持惰性。因此,这些基于活性的PTP探针可用于分析复杂蛋白质组中的PTP活性。基于其活性变化对整个PTP家族进行探究的能力应能极大地加速PTP功能的确定以及潜在治疗靶点的识别。