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Isotope Coded Protein Labeling Coupled Immunoprecipitation (ICPL-IP): A Novel Approach for Quantitative Protein Complex Analysis From Native Tissue

机译:同位素编码的蛋白质标记偶联免疫沉淀(ICPL-IP):一种从天然组织中定量蛋白质复合物分析的新方法

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摘要

High confidence definition of protein interactions is an important objective toward the understanding of biological systems. Isotope labeling in combination with affinity-based isolation of protein complexes has increased in accuracy and reproducibility, yet, larger organisms—including humans—are hardly accessible to metabolic labeling and thus, a major limitation has been its restriction to small animals, cell lines, and yeast.As composition as well as the stoichiometry of protein complexes can significantly differ in primary tissues, there is a great demand for methods capable to combine the selectivity of affinity-based isolation as well as the accuracy and reproducibility of isotope-based labeling with its application toward analysis of protein interactions from intact tissue.Toward this goal, we combined isotope coded protein labeling (ICPL) with immunoprecipitation (IP) and quantitative mass spectrometry (MS). ICPL-IP allows sensitive and accurate analysis of protein interactions from primary tissue.We applied ICPL-IP to immuno-isolate protein complexes from bovine retinal tissue. Protein complexes of immunoprecipitated β-tubulin, a highly abundant protein with known interactors as well as the lowly expressed small GTPase RhoA were analyzed. The results of both analyses demonstrate sensitive and selective identification of known as well as new protein interactions by our method.
机译:蛋白质相互作用的高置信度定义是理解生物学系统的重要目标。同位素标记与基于亲和力的蛋白质复合物分离相结合已提高了准确性和可重复性,但是,包括人类在内的大型生物几乎都无法进行代谢标记,因此,主要的局限性在于它仅限于小型动物,细胞系,由于初级组织中蛋白质复合物的组成和化学计量可能存在显着差异,因此迫切需要能够将基于亲和力的分离的选择性以及基于同位素的标记的准确性和可重复性结合在一起的方法为此,我们将同位素编码蛋白标记(ICPL) 与免疫沉淀(IP)和定量质谱(MS)相结合。 ICPL-IP可以对来自原发组织的蛋白质相互作用进行灵敏而准确的分析。我们将ICPL-IP应用于免疫分离牛视网膜组织中的蛋白质复合物。分析了免疫沉淀的β-微管蛋白的蛋白质复合物,具有已知相互作用物的高度丰富的蛋白质以及低表达的小GTPase RhoA。两种分析的结果均表明,通过我们的方法可以对已知的以及新的蛋白质相互作用进行灵敏和选择性的鉴定。

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