The Biotechnology Centre of Oslo, University of Oslo, P.O. Box 1125 Blindern, 0317 Oslo, Norway.
Anal Chem. 2013 Feb 19;85(4):2478-85. doi: 10.1021/ac3035508. Epub 2013 Jan 29.
Isobaric peptide termini labeling (IPTL) is based on labeling of both peptide termini with complementary isotopic labels resulting in isobaric peptides. MS/MS analysis after IPTL derivatization produces peptide-specific fragment ions which are distributed throughout the MS/MS spectrum. Thus, several quantification points can be obtained per peptide. In this report, we present triplex-IPTL, a chemical labeling strategy for IPTL allowing the simultaneous quantification of three states within one MS run. For this purpose, dimethylation of the N-terminal amino group followed by dimethylation of lysines was used with different stable isotopes of formaldehyde and cyanoborohydride. Upon LC-MS/MS analysis, the combined samples revealed three corresponding isotopic fragment ion series reflecting quantitatively the peptide ratios. To support this multiplexing labeling strategy, we have further developed the data analysis tool IsobariQ and included multidimensional VSN normalization, statistical inference, and graphical visualization of triplex-IPTL data and clustering of protein profiling patterns. The power of the triplex-IPTL approach in combination with IsobariQ was demonstrated through temporal profiling of HeLa cells incubated with the kinesin Eg5 inhibitor S-Trityl-l-cysteine (STLC). As a result, clusters of quantified proteins were found by their ratio profiles which corresponded well to their gene ontology association in mitotic arrest and cell death, respectively.
等压肽末端标记(IPTL)基于用互补的同位素标记同时标记肽的两个末端,从而产生等压肽。在 IPTL 衍生化后的 MS/MS 分析中,会产生肽特异性的片段离子,这些离子分布在整个 MS/MS 谱中。因此,每个肽可以获得多个定量点。在本报告中,我们提出了三重 IPTL,这是一种 IPTL 的化学标记策略,允许在一次 MS 运行中同时定量三个状态。为此,使用不同稳定同位素的甲醛和氰基硼氢化钠对 N-末端氨基进行二甲化,然后对赖氨酸进行二甲化。在 LC-MS/MS 分析中,合并的样品显示出三个对应的同位素片段离子系列,定量反映了肽的比例。为了支持这种多重标记策略,我们进一步开发了数据分析工具 IsobariQ,并包括多维 VSN 归一化、统计推断以及三重 IPTL 数据的图形可视化和蛋白质分析模式的聚类。通过用驱动蛋白 Eg5 抑制剂 S-三苯甲基-l-半胱氨酸(STLC)孵育 HeLa 细胞的时间进程分析,展示了三重 IPTL 方法与 IsobariQ 相结合的强大功能。结果,通过其比率分布找到定量蛋白质的聚类,这与它们在有丝分裂阻滞和细胞死亡中的基因本体关联非常吻合。