Department of Chemistry & Institutes of Biomedical Sciences, Fudan University, Shanghai, China.
Proteomics. 2012 Aug;12(14):2258-70. doi: 10.1002/pmic.201100649.
A facile proteomic quantification method, fluorescent labeling absolute quantification (FLAQ), was developed. Instead of using MS for quantification, the FLAQ method is a chromatography-based quantification in combination with MS for identification. Multidimensional liquid chromatography (MDLC) with laser-induced fluorescence (LIF) detection with high accuracy and tandem MS system were employed for FLAQ. Several requirements should be met for fluorescent labeling in MS identification: Labeling completeness, minimum side-reactions, simple MS spectra, and no extra tandem MS fragmentations for structure elucidations. A fluorescence dye, 5-iodoacetamidofluorescein, was finally chosen to label proteins on all cysteine residues. The fluorescent dye was compatible with the process of the trypsin digestion and MALDI MS identification. Quantitative labeling was achieved with optimization of reacting conditions. A synthesized peptide and model proteins, BSA (35 cysteines), OVA (five cysteines), were used for verifying the completeness of labeling. Proteins were separated through MDLC and quantified based on fluorescent intensities, followed by MS identification. High accuracy (RSD% < 1.58) and wide linearity of quantification (1-10(5) ) were achieved by LIF detection. The limit of quantitation for the model protein was as low as 0.34 amol. Parts of proteins in human liver proteome were quantified and demonstrated using FLAQ.
一种简单的蛋白质组定量方法,荧光标记绝对定量(FLAQ)被开发出来。FLAQ 方法不是使用 MS 进行定量,而是一种基于色谱的定量方法,结合 MS 进行鉴定。多维液相色谱(MDLC)与激光诱导荧光(LIF)检测和串联 MS 系统用于 FLAQ。用于 MS 鉴定的荧光标记需要满足几个要求:标记完全、最小副反应、简单的 MS 谱和无需额外的串联 MS 片段化用于结构解析。最终选择了荧光染料 5-碘乙酰胺荧光素来标记所有半胱氨酸残基上的蛋白质。荧光染料与胰蛋白酶消化和 MALDI MS 鉴定过程兼容。通过优化反应条件实现了定量标记。合成肽和模型蛋白,BSA(35 个半胱氨酸),OVA(五个半胱氨酸),用于验证标记的完整性。通过 MDLC 分离蛋白质,并根据荧光强度进行定量,然后进行 MS 鉴定。LIF 检测实现了高准确性(RSD%<1.58)和宽线性定量范围(1-10(5))。模型蛋白的定量下限低至 0.34 amol。使用 FLAQ 对人肝蛋白质组的部分蛋白质进行了定量和演示。