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Post-electrophoretic identification of oxidized proteins

机译:电泳后氧化蛋白的鉴定

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The oxidative modification of proteins has been shown to play a major role in a number of human diseases. However, the ability to identify specific proteins that are most susceptible to oxidative modifications is difficult. Separation of proteins using polyacrylamide gel electrophoresis (PAGE) offers the analytical potential for the recovery, amino acid sequencing, and identification of thousands of individual proteins from cells and tissues. We have developed a method to allow underivatized proteins to be electroblotted onto PVDF membranes before derivatization and staining. Since both the protein and oxidation proteins are quantifiable, the specific oxidation index of each protein can be determined. The optimal sequence and conditions for the staining process are (a) electrophoresis, (b) electroblotting onto PVDF membranes, (c) derivatization of carbonyls with 2,4-DNP, (d) immunostaining with anti DNP antibody, and (e) protein staining with colloidal gold.
机译:已经证明蛋白质的氧化修饰在许多人类疾病中起主要作用。然而,鉴定最易发生氧化修饰的特定蛋白质的能力是困难的。使用聚丙烯酰胺凝胶电泳(PAGE)分离蛋白质为从细胞和组织中回收,氨基酸测序和鉴定成千上万的单个蛋白质提供了分析潜力。我们已经开发出一种方法,可以在衍生化和染色之前,将未衍生的蛋白质电印迹到PVDF膜上。由于蛋白质和氧化蛋白质都是可定量的,因此可以确定每种蛋白质的比氧化指数。染色过程的最佳顺序和条件是(a)电泳,(b)在PVDF膜上进行电印迹,(c)用2,4-DNP衍生羰基,(d)用抗DNP抗体进行免疫染色和(e)蛋白用胶体金染色。

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