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A Mass Spectrometry-Based Approach for Mapping Protein Subcellular Localization Reveals the Spatial Proteome of Mouse Primary Neurons

机译:基于质谱的蛋白质亚细胞定位定位方法揭示了小鼠原代神经元的空间蛋白质组。

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We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determination of protein subcellular localization and identification of translocation events in comparative experiments. The use of metabolic labeling for quantification (stable isotope labeling by amino acids in cell culture [SILAC]) renders the method best suited to cells grown in culture. Here, we have adapted the workflow to both label-free quantification (LFQ) and chemical labeling/multiplexing strategies (tandem mass tagging [TMT]). Both methods are highly effective for the generation of organellar maps and capture of protein translocations. Furthermore, application of label-free organellar mapping to acutely isolated mouse primary neurons provided subcellular localization and copy-number information for over 8,000 proteins, allowing a detailed analysis of organellar organization. Our study extends the scope of dynamic organellar maps to any cell type or tissue and also to high-throughput screening.
机译:我们先前开发了一种基于质谱的方法,动态细胞器图谱,用于确定蛋白质亚细胞定位和在比较实验中鉴定易位事件。使用代谢标记进行定量(通过细胞培养物中氨基酸的稳定同位素标记[SILAC])使该方法最适合培养中生长的细胞。在这里,我们将工作流程调整为适用于无标记定量(LFQ)和化学标记/多路复用策略(串联质量标记[TMT])。两种方法对于生成细胞器图谱和捕获蛋白易位都非常有效。此外,将无标签细胞器作图应用于急性分离的小鼠原代神经元可提供8,000多种蛋白质的亚细胞定位和拷贝数信息,从而可以对细胞器的组织进行详细分析。我们的研究将动态细胞器图谱的范围扩展到任何细胞类型或组织,以及高通量筛选。

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