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Generation and purification of highly specific antibodies for detecting post-translationally modified proteins in vivo

机译:生成和纯化用于检测体内翻译后修饰蛋白的高特异性抗体

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Post-translational modifications alter protein structure, affecting activity, stability, localization and/or binding partners. Antibodies that specifically recognize post-translationally modified proteins have a number of uses including immunocytochemistry and immunoprecipitation of the modified protein to purify protein-protein and protein-nucleic acid complexes. However, antibodies directed at modified sites on individual proteins are often nonspecific. Here we describe a protocol to purify polyclonal antibodies that specifically detect the modified protein of interest. The approach uses iterative rounds of subtraction and affinity purification, using stringent washes to remove antibodies that recognize the unmodified protein and low sequence complexity epitopes containing the modified amino acid. Dot blot and western blot assays are used to assess antibody preparation specificity. The approach is designed to overcome the common occurrence that a single round of subtraction and affinity purification is not sufficient to obtain a modified protein-specific antibody preparation. one full round of antibody purification and specificity testing takes 6 d of discontinuous time.
机译:翻译后修饰改变蛋白质结构,影响活性,稳定性,定位和/或结合伴侣。特异性识别翻译后修饰蛋白的抗体具有多种用途,包括免疫细胞化学和修饰蛋白的免疫沉淀以纯化蛋白-蛋白和蛋白-核酸复合物。但是,针对单个蛋白质修饰位点的抗体通常是非特异性的。在这里,我们描述了一种纯化多克隆抗体的方案,该抗体可特异性检测目的修饰蛋白。该方法使用减法和亲和纯化的迭代轮次,使用严格的洗涤去除识别未修饰蛋白的抗体和包含修饰氨基酸的低序列复杂性表位。点印迹法和蛋白质印迹法用于评估抗体制剂的特异性。设计该方法是为了克服单轮减法和亲和纯化不足以获得修饰的蛋白质特异性抗体制剂这一普遍现象。一轮完整的抗体纯化和特异性测试需要6 d的不连续时间。

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