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PMID: 21902226 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Improvement of the quantification accuracy and throughput for phosphoproteome analysis by a pseudo triplex stable isotope dimethyl labeling approach.

Analytical chemistry ·Vol. 83 ·No. 20 ·2011-10-15 ·Pages 7755-62

Song C, Wang F, Ye M, Cheng K, Chen R, Zhu J, Tan Y, Wang H, Figeys D, Zou H

Abstract

Accurately quantifying the changes of phosphorylation level on specific sites is crucial to understand the role of protein phosphorylation in physiological and pathological processes. Here, a pseudo triplex stable isotope dimethyl labeling approach was developed to improve the accuracy and the throughput of comprehensive quantitative phosphoproteome analyses. In this strategy, two identical samples are labeled with light and heavy isotopes, respectively, while another comparative sample is labeled with an intermediate isotope. Two replicated quantification results were achieved in just one experiment, and the relative standard deviation (RSD) criterion was used to control the quantification accuracy. Compared with the conventional duplex labeling approach, the number of quantified phosphopeptides increased nearly 50% and the experimental time was reduced by 50% under the same quantification accuracy. Combined with the automated online reversed phase-strong cation exchange-reversed phase (RP-SCX-RP) multidimensional separation system, a comparative phosphoproteome analysis of hepatocellular carcinoma (HCC) and normal human liver tissues was performed. Over 1800 phosphopeptides corresponding to ~2000 phosphorylation sites were quantified reliably in a 42 h multidimensional analysis. The pro-directed motifs, which were mainly associated with the extracellular signal-regulated kinases (ERKs), were observed as being overrepresented in the regulated phosphorylation sites, and some quantification results of phosphorylation sites were validated by the other studies. Therefore, this pseudo triplex labeling approach was demonstrated as a promising alternative for the comprehensive quantitative phosphoproteome analysis.

MeSH Terms
Carcinoma, Hepatocellular/metabolism Chromatography, Ion Exchange Chromatography, Reverse-Phase Humans Isotope Labeling Liver/metabolism Liver Neoplasms/metabolism Mass Spectrometry Phosphopeptides/analysis,isolation & purification Phosphorylation Proteomics
Chemicals
Phosphopeptides
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Song Chunxia
CAS Key Laboratory of Separation Sciences for Analytical Chemistry, National Chromatographic R&A Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Wang Fangjun
Ye Mingliang
Cheng Kai
Chen Rui
Zhu Jun
Tan Yexiong
Wang Hongyang
Figeys Daniel
Zou Hanfa
Article Info
Journal
Analytical chemistry
Abbr.
Anal Chem
ISSN
1520-6882
Published
2011-10-15
Epub
2011-00-21
Pages
7755-62
Language
English
Region
United States
NLM ID
0370536
Subset
IM
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