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利用具有等质量异位素的报告离子同位素增加 TMT 的多重分析能力。

Increasing the multiplexing capacity of TMTs using reporter ion isotopologues with isobaric masses.

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, United States.

出版信息

Anal Chem. 2012 Sep 4;84(17):7469-78. doi: 10.1021/ac301572t. Epub 2012 Aug 20.

Abstract

Quantitative mass spectrometry methods offer near-comprehensive proteome coverage; however, these methods still suffer with regards to sample throughput. Multiplex quantitation via isobaric chemical tags (e.g., TMT and iTRAQ) provides an avenue for mass spectrometry-based proteome quantitation experiments to move away from simple binary comparisons and toward greater parallelization. Herein, we demonstrate a straightforward method for immediately expanding the throughput of the TMT isobaric reagents from 6-plex to 8-plex. This method is based upon our ability to resolve the isotopic shift that results from substituting a (15)N for a (13)C. In an accommodation to the preferred fragmentation pathways of ETD, the TMT-127 and -129 reagents were recently modified such that a (13)C was exchanged for a (15)N. As a result of this substitution, the new TMT reporter ions are 6.32 mDa lighter. Even though the mass difference between these reporter ion isotopologues is incredibly small, modern high-resolution and mass accuracy analyzers can resolve these ions. On the basis of our ability to resolve and accurately measure the relative intensity of these isobaric reporter ions, we demonstrate that we are able to quantify across eight samples simultaneously by combining the (13)C- and (15)N-containing reporter ions. Considering the structure of the TMT reporter ion, we believe this work serves as a blueprint for expanding the multiplexing capacity of the TMT reagents to at least 10-plex and possibly up to 18-plex.

摘要

定量质谱方法提供了近乎全面的蛋白质组覆盖;然而,这些方法在样品通量方面仍然存在问题。通过等重化学标签(例如 TMT 和 iTRAQ)进行多重定量为基于质谱的蛋白质组定量实验提供了一种途径,可以摆脱简单的二进制比较,实现更大的并行化。在此,我们展示了一种简单的方法,可以将 TMT 等重试剂的通量从 6 重立即扩展到 8 重。该方法基于我们能够分辨出由 (15)N 取代 (13)C 所导致的同位素位移。为了适应 ETD 的优先断裂途径,TMT-127 和 -129 试剂最近进行了修改,使得 (13)C 被 (15)N 取代。由于这种取代,新的 TMT 报告离子轻了 6.32 mDa。尽管这些报告离子同位素之间的质量差异非常小,但现代高分辨率和质量精度分析仪能够分辨这些离子。基于我们能够分辨和准确测量这些等重报告离子的相对强度的能力,我们证明我们能够通过组合含有 (13)C 和 (15)N 的报告离子同时对 8 个样本进行定量。考虑到 TMT 报告离子的结构,我们相信这项工作为将 TMT 试剂的多重化能力扩展到至少 10 重甚至 18 重提供了蓝图。

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