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A general strategy for epitope mapping by direct MALDI-TOF massspectrometry using secondary antibodies and cross-linking

机译:通过直接MALDI-TOF质谱使用二抗和交联进行表位作图的一般策略

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The combination of limited proteolysis and MALDI-TOF mass spectrometry has become an important tool for the determination of epitopes but works best with highly purified antibodies. Here we report the use of capture antibodies to reduce the need for purification of the antibody in the mass spectrometric determination of the epitope. In this new method, a secondary Fc-specific antibody, covalently bound to Sepharose beads, is used to capture the primary antibody (the antibody of interest). After capture, the two antibodies are cross-linked. The antigen is then bound to the immobilized antibodies and subjected to proteolysis using several successive proteinases. In this study, this strategy is demonstrated with a crude mouse anti-ACTH IgG solution and adrenocorticotropin (ACTH). Comparing this strategy with previous methods where the antibody is bound directly to activated beads, the new method (1) results in a higher binding capacity of the bound antibody to ACM, (2) does not require purification of the antibody of interest, and (3) dramatically reduces the chemical background in the MALDI mass spectra.
机译:有限的蛋白水解和MALDI-TOF质谱联用已成为确定表位的重要工具,但对高度纯化的抗体效果最佳。在这里,我们报告了捕获抗体的使用,以减少在质谱测定表位中纯化抗体的需求。在这种新方法中,共价结合至琼脂糖珠的二抗Fc特异性抗体被用于捕获一抗(目的抗体)。捕获后,两种抗体交联。然后将抗原结合到固定的抗体上,并使用几种连续的蛋白酶进行蛋白水解。在这项研究中,使用粗制的小鼠抗ACTH IgG溶液和促肾上腺皮质激素(ACTH)证明了该策略。与将抗体直接与活化珠粒结合的先前方法进行比较,新方法(1)导致结合的抗体与ACM的结合能力更高,(2)不需要纯化目标抗体,并且( 3)大大降低MALDI质谱图中的化学背景。

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