J Proteome Res. 2019 May 3;18(5):2129-2138. doi: 10.1021/acs.jproteome.9b00021. Epub 2019 Apr 17.
Stable isotope labeling by amino acids in cell culture (SILAC) is routinely used to profile changes in protein and peptide abundance across different experimental paradigms. As with other quantitative proteomic approaches, the detection of peptide isotopomers can be limited by the presence of interference ions that ultimately affect the quality of quantitative measurements. Here, we evaluate high field asymmetric waveform ion mobility spectrometry (FAIMS) to improve the accuracy and dynamic range of quantitative proteomic analyses using SILAC. We compared quantitative measurements for tryptic digests of isotopically labeled protein extracts mixed in different ratios using LC-MS/MS with and without FAIMS. To further reduce sample complexity, we also examined the improvement in quantitative measurements when combining strong cation exchange (SCX) fractionation prior to LC-MS/MS analyses. Using the same amount of sample consumed, analyses performed using FAIMS provided more than 30% and 200% increase in the number of quantifiable peptides compared to LC-MS/MS performed with and without SCX fractionation, respectively. Furthermore, FAIMS reduced the occurrence of interfering isobaric ions and improved the accuracy of quantitative measurements. We leveraged the application of FAIMS in phosphoproteomic analyses to profile dynamic changes in protein phosphorylation in HEK293 cells subjected to heat shock for periods up to 20 min. In addition to the enhanced phosphoproteomic coverage, FAIMS also provided the ability to separate phosphopeptide isomers that often coelute and can be misassigned in conventional LC-MS/MS experiments.
稳定同位素标记的氨基酸细胞培养 ( SILAC ) 是一种常规方法,用于分析不同实验方案中蛋白质和肽丰度的变化。与其他定量蛋白质组学方法一样,肽同量异位体的检测可能会受到干扰离子的限制,这些干扰离子最终会影响定量测量的质量。在这里,我们评估了高场非对称波形离子淌度谱 ( FAIMS ) ,以改善使用 SILAC 的定量蛋白质组学分析的准确性和动态范围。我们比较了使用 LC-MS/MS 对以不同比例混合的同位素标记蛋白质提取物的胰蛋白酶消化物进行定量测量的结果,其中包括和不包括 FAIMS 。为了进一步降低样品复杂性,我们还研究了在进行 LC-MS/MS 分析之前结合强阳离子交换 ( SCX ) 分级分离时对定量测量的改善。使用相同量的消耗样品,与不进行 SCX 分级分离相比,使用 FAIMS 进行的分析分别提供了超过 30%和 200%的可定量肽数量的增加。此外,FAIMS 减少了干扰同量异位体的出现,并提高了定量测量的准确性。我们利用 FAIMS 在磷酸蛋白质组学分析中的应用,对 HEK293 细胞在热应激下长达 20 分钟过程中蛋白质磷酸化的动态变化进行了分析。除了增强的磷酸蛋白质组学覆盖范围外,FAIMS 还提供了分离磷酸肽异构体的能力,这些异构体通常共洗脱,并且在传统的 LC-MS/MS 实验中可能会被错误分配。