Laboratory of Systems Pharmacology , Harvard Medical School , Boston , Massachusetts 02115 , United States.
Department of Cell Biology , Harvard Medical School , Boston , Massachusetts 02115 , United States.
J Proteome Res. 2018 Apr 6;17(4):1741-1747. doi: 10.1021/acs.jproteome.8b00006. Epub 2018 Feb 26.
Protein phosphorylation is critically important for many cellular processes, including progression through the cell cycle, cellular metabolism, and differentiation. Isobaric labeling, for example, tandem mass tags (TMT), in phosphoproteomics workflows enables both relative and absolute quantitation of these phosphorylation events. Traditional TMT workflows identify peptides using fragment ions at the MS2 level and quantify reporter ions at the MS3 level. However, in addition to the TMT reporter ions, MS3 spectra also include fragment ions that can be used to identify peptides. Here we describe using MS3 spectra for both phosphopeptide identification and quantification, a process that we term MS3-IDQ. To maximize quantified phosphopeptides, we optimize several instrument parameters, including the modality of mass analyzer (i.e., ion trap or Orbitrap), MS2 automatic gain control (AGC), and MS3 normalized collision energy (NCE), to achieve the best balance of identified and quantified peptides. Our optimized MS3-IDQ method included the following parameters for the MS3 scan: NCE = 37.5 and AGC target = 1.5 × 10, and scan range = 100-2000. Data from the MS3 scan were complementary to those of the MS2 scan, and the combination of these scans can increase phosphoproteome coverage by >50%, thereby yielding a greater number of quantified and accurately localized phosphopeptides.
蛋白质磷酸化对于许多细胞过程至关重要,包括细胞周期的进展、细胞代谢和分化。例如,同位标记(例如,串联质量标签(TMT))在磷酸蛋白质组学工作流程中可用于相对和绝对定量这些磷酸化事件。传统的 TMT 工作流程使用 MS2 水平的碎片离子鉴定肽,并在 MS3 水平定量报告离子。然而,除了 TMT 报告离子之外,MS3 光谱还包括可用于鉴定肽的碎片离子。在这里,我们描述了使用 MS3 光谱进行磷酸肽鉴定和定量的过程,我们称之为 MS3-IDQ。为了最大限度地定量磷酸肽,我们优化了几个仪器参数,包括质量分析仪的模式(即离子阱或轨道阱)、MS2 自动增益控制(AGC)和 MS3 归一化碰撞能量(NCE),以实现鉴定和定量肽的最佳平衡。我们优化的 MS3-IDQ 方法包括以下用于 MS3 扫描的参数:NCE = 37.5 和 AGC 目标 = 1.5×10,扫描范围 = 100-2000。MS3 扫描的数据与 MS2 扫描的数据互补,这些扫描的组合可以将磷酸蛋白质组覆盖率提高 >50%,从而产生更多定量和准确定位的磷酸肽。