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Generation of Multiple Reporter Ions from a Single Isobaric Reagent Increases Multiplexing Capacity for Quantitative Proteomics

机译:从单一同量异位试剂中生成多个报告子离子可增加定量蛋白质组学的多路复用能力。

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摘要

Isobaric labeling strategies for mass spectrometry-based proteomics enable multiplexed simultaneous quantification of samples and therefore substantially increase the sample throughput in proteomics. However, despite these benefits, current limits to multiplexing capacity are prohibitive for large sample sizes and impose limitations on experimental design. Here, we introduce a novel mechanism for increasing the multiplexing density of isobaric reagents. We present Combinatorial Isobaric Mass Tags (CMTs), an isobaric labeling architecture with the unique ability to generate multiple series of reporter ions simultaneously. We demonstrate that utilization of multiple reporter ion series improves multiplexing capacity of CMT with respect to a commercially available isobaric labeling reagent with preserved quantitative accuracy and depth of coverage in complex mixtures. We provide a blueprint for the realization of 16-plex reagents with 1 Da spacing between reporter ions and up to 28-plex at 6 mDa spacing using only 5 heavy isotopes per reagent. We anticipate that this improvement in multiplexing capacity will further advance the application of quantitative proteomics, particularly in high-throughput screening assays.
机译:基于质谱的蛋白质组学的等压标记策略可以对样品进行多重同时定量,因此可以大大提高蛋白质组学中样品的通量。但是,尽管有这些好处,但对于大样本量而言,当前对多路复用能力的限制仍然令人望而却步,并给实验设计带来了限制。在这里,我们介绍了一种增加同量异位试剂的多重密度的新机制。我们介绍了组合等压质量标签(CMT),一种等压标记结构,具有同时生成多个报告离子系列的独特能力。我们证明,利用多个报告离子系列可提高CMT相对于市售同量异位标记试剂的多重能力,同时保留定量精度和复杂混合物的覆盖深度。我们提供了一个实现蓝图的蓝图,该图实现了在报告离子之间具有1 Da间距,在6 mDa间距下最多28层,每试剂仅含5种重同位素的试剂。我们预计,这种多路复用能力的提高将进一步推动定量蛋白质组学的应用,特别是在高通量筛选分析中。

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