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Use of intein-mediated phosphoprotein arrays to study substrate specificity of protein phosphatases

机译:内含肽介导的磷蛋白阵列在研究蛋白磷酸酶底物特异性中的应用

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摘要

Synthetic peptides incorporating various chemical moieties, for example, phosphate groups, are convenient tools for investigating protein modification enzymes, such as protein phosphatases (PPs). However, short peptides are sometimes poor substrates, and their binding to commonly used matrices is unpredictable and variable. In general, protein substrates for PPs are superior for enzymatic assays, binding to various matrices, and Western blot analysis. The preparation and characterization of phosphoproteins, however can be difficult and technically demanding. In this study, the intein-mediated protein ligation (IPL) technique was used to readily generate phosphorylated protein substrates by ligating a synthetic phosphopeptide to an intein-generated carrier protein (CP) possessing a carboxyl-terminal thioester with a one-to-one stoichiometry. The ligated phosphoprotein (LPP) substrate was treated with a PP and subsequently subjected to array or Western blot analysis with a phospho-specific antibody. This approach is highly effective in producing arrays of protein substrates containing phosphorylated amino acid residues and has been applied for screening of PPs with specificity toward phosphorylated tyrosine, serine, or threonine residues, resulting in an approximately 240-fold increase in sensitivity in dot blot analysis compared with the use of synthetic peptides. The IPL technique overcomes the disadvantages of current methods and is a versatile system for the facile production of protein substrates containing well-defined structural motifs for the study of protein modification enzymes.
机译:结合有各种化学部分(例如磷酸基)的合成肽是研究蛋白质修饰酶(例如蛋白质磷酸酶(PPs))的便捷工具。但是,短肽有时是较差的底物,它们与常用基质的结合是不可预测的且可变的。通常,PPs的蛋白质底物在酶法测定,与各种基质结合以及蛋白质印迹分析方面表现优异。然而,磷蛋白的制备和表征可能是困难的并且在技术上要求很高。在这项研究中,内含蛋白介导的蛋白质连接(IPL)技术用于通过将合成的磷酸肽与具有羧基末端硫酯的内含蛋白生成的载体蛋白(CP)一对一连接,轻松生成磷酸化的蛋白底物。化学计量。连接的磷蛋白(LPP)底物用PP处理,然后用磷特异性抗体进行阵列或蛋白质印迹分析。该方法在生产包含磷酸化氨基酸残基的蛋白质底物阵列方面非常有效,并且已用于筛选对磷酸化酪氨酸,丝氨酸或苏氨酸残基具有特异性的PP,从而使斑点印迹分析的灵敏度提高了约240倍。与使用合成肽相比。 IPL技术克服了当前方法的弊端,是一种简便的生产蛋白质底物的通用系统,该底物包含用于研究蛋白质修饰酶的明确定义的结构基序。

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