首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Design, preparation and use of ligated phosphoproteins: a novel approach to study protein phosphatases by dot blot array, ELISA and Western blot assays.
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Design, preparation and use of ligated phosphoproteins: a novel approach to study protein phosphatases by dot blot array, ELISA and Western blot assays.

机译:连接的磷蛋白的设计,制备和使用:通过点印迹阵列,ELISA和Western印迹测定法研究蛋白磷酸酶的新方法。

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摘要

The study of substrate specificity of protein phosphatases (PPs) is very challenging since it is difficult to prepare a suitable phosphorylated substrate. Phosphoproteins, phosphorylated by a protein kinase, or chemically synthesized phosphopeptides are commonly used substrates for PPs. Both types of these substrates have their advantages and limitations. Phosphoproteins mimic more closely the physiologically relevant PP substrates, but their preparation is technically demanding. Synthetic phosphopeptides present advantages over proteins because they can be easily produced in large quantity and their amino acid sequence can be designed to contain potential determinants of substrate specificity. However, short peptides are less optimal compared to in vivo PP substrates and often display poor and variable binding to different matrices, resulting in low sensitivity in analysis of PP activity on solid support. In this work we utilize the intein-mediated protein ligation (IPL) technique to generate substrates for PPs, combining the advantages of proteins and synthetic peptides in one molecule. The ligation of a synthetic phosphopeptide to an intein-generated carrier protein (CP) with a one-to-one stoichiometry results in the formation of a ligated phosphoprotein (LPP). Three widely used assays, dot blot array, Western blot and ELISA were employed to study the PP activity on LPP substrates. Dephosphorylation was measured by detection of the remaining phosphorylation, or lack of it, with a phospho-specific antibody. The data show the advantage of LPPs over free peptides in assays on solid supports. LPPs exhibited enhanced binding to the matrices used in the study, which significantly improved sensitivity and consistency of the assays. In addition, saturation of the signal was circumvented by serial dilution of the assay samples. This report describes detailed experimental procedures for preparation of LPP substrates and their use in PP assays based on immobilization on solid supports.
机译:由于难以制备合适的磷酸化底物,因此蛋白质磷酸酶(PPs)底物特异性的研究非常具有挑战性。被蛋白激酶磷酸化的磷蛋白或化学合成的磷肽是PP的常用底物。两种类型的基板都有其优点和局限性。磷蛋白更紧密地模拟生理相关的PP底物,但其制备在技术上要求很高。合成的磷酸肽比蛋白质具有优势,因为它们易于大量生产,并且其氨基酸序列可设计为包含底物特异性的潜在决定因素。但是,与体内PP底物相比,短肽的最佳性较差,通常显示与不同基质的结合力差且可变,导致对固体支持物上PP活性的分析灵敏度较低。在这项工作中,我们利用内含蛋白介导的蛋白质连接(IPL)技术生成PP的底物,将蛋白质和合成肽的优势结合在一分子中。以一对一的化学计量比将合成的磷酸肽与内含蛋白生成的载体蛋白(CP)连接,导致形成连接的磷酸蛋白(LPP)。三种广泛使用的测定法,斑点印迹阵列,蛋白质印迹和ELISA用于研究LPP底物上的PP活性。通过用磷酸特异性抗体检测剩余的磷酸化或缺乏磷酸化来测量去磷酸化。数据表明,在固体支持物上进行测定时,LPP优于游离肽。 LPP与研究中使用的基质结合增强,从而显着提高了测定的灵敏度和一致性。另外,通过连续稀释测定样品来避免信号的饱和。该报告描述了制备LPP底物的详细实验步骤,以及它们在固定在固体支持物上的基础上在PP分析中的用途。

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