Literature DB >> 18939861

Evaluation of strong cation exchange versus isoelectric focusing of peptides for multidimensional liquid chromatography-tandem mass spectrometry.

Robbert J C Slebos1, Jonathan W C Brock, Nancy F Winters, Sarah R Stuart, Misti A Martinez, Ming Li, Mathew C Chambers, Lisa J Zimmerman, Amy J Ham, David L Tabb, Daniel C Liebler.   

Abstract

Shotgun proteome analysis platforms based on multidimensional liquid chromatography-tandem mass spectrometry (LC-MS/MS) provide a powerful means to discover biomarker candidates in tissue specimens. Analysis platforms must balance sensitivity for peptide detection, reproducibility of detected peptide inventories and analytical throughput for protein amounts commonly present in tissue biospecimens (< 100 microg), such that platform stability is sufficient to detect modest changes in complex proteomes. We compared shotgun proteomics platforms by analyzing tryptic digests of whole cell and tissue proteomes using strong cation exchange (SCX) and isoelectric focusing (IEF) separations of peptides prior to LC-MS/MS analysis on a LTQ-Orbitrap hybrid instrument. IEF separations provided superior reproducibility and resolution for peptide fractionation from samples corresponding to both large (100 microg) and small (10 microg) protein inputs. SCX generated more peptide and protein identifications than did IEF with small (10 microg) samples, whereas the two platforms yielded similar numbers of identifications with large (100 microg) samples. In nine replicate analyses of tryptic peptides from 50 microg colon adenocarcinoma protein, overlap in protein detection by the two platforms was 77% of all proteins detected by both methods combined. IEF more quickly approached maximal detection, with 90% of IEF-detectable medium abundance proteins (those detected with a total of 3-4 peptides) detected within three replicate analyses. In contrast, the SCX platform required six replicates to detect 90% of SCX-detectable medium abundance proteins. High reproducibility and efficient resolution of IEF peptide separations make the IEF platform superior to the SCX platform for biomarker discovery via shotgun proteomic analyses of tissue specimens.

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Year:  2008        PMID: 18939861      PMCID: PMC2669493          DOI: 10.1021/pr8004666

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  33 in total

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Authors:  Jinzhi Chen; Brian M Balgley; Donald L DeVoe; Cheng S Lee
Journal:  Anal Chem       Date:  2003-07-01       Impact factor: 6.986

Review 2.  Mass spectral analysis in proteomics.

Authors:  John R Yates
Journal:  Annu Rev Biophys Biomol Struct       Date:  2004

3.  Overview of the HUPO Plasma Proteome Project: results from the pilot phase with 35 collaborating laboratories and multiple analytical groups, generating a core dataset of 3020 proteins and a publicly-available database.

Authors:  Gilbert S Omenn; David J States; Marcin Adamski; Thomas W Blackwell; Rajasree Menon; Henning Hermjakob; Rolf Apweiler; Brian B Haab; Richard J Simpson; James S Eddes; Eugene A Kapp; Robert L Moritz; Daniel W Chan; Alex J Rai; Arie Admon; Ruedi Aebersold; Jimmy Eng; William S Hancock; Stanley A Hefta; Helmut Meyer; Young-Ki Paik; Jong-Shin Yoo; Peipei Ping; Joel Pounds; Joshua Adkins; Xiaohong Qian; Rong Wang; Valerie Wasinger; Chi Yue Wu; Xiaohang Zhao; Rong Zeng; Alexander Archakov; Akira Tsugita; Ilan Beer; Akhilesh Pandey; Michael Pisano; Philip Andrews; Harald Tammen; David W Speicher; Samir M Hanash
Journal:  Proteomics       Date:  2005-08       Impact factor: 3.984

Review 4.  Protein biomarker discovery and validation: the long and uncertain path to clinical utility.

Authors:  Nader Rifai; Michael A Gillette; Steven A Carr
Journal:  Nat Biotechnol       Date:  2006-08       Impact factor: 54.908

5.  MyriMatch: highly accurate tandem mass spectral peptide identification by multivariate hypergeometric analysis.

Authors:  David L Tabb; Christopher G Fernando; Matthew C Chambers
Journal:  J Proteome Res       Date:  2007-02       Impact factor: 4.466

6.  Membrane proteome analysis of microdissected ovarian tumor tissues using capillary isoelectric focusing/reversed-phase liquid chromatography-tandem MS.

Authors:  Weijie Wang; Tong Guo; Paul A Rudnick; Tao Song; Jie Li; Zhengping Zhuang; Wenxin Zheng; Don L Devoe; Cheng S Lee; Brian M Balgley
Journal:  Anal Chem       Date:  2007-02-01       Impact factor: 6.986

7.  In-depth analysis of the adipocyte proteome by mass spectrometry and bioinformatics.

Authors:  Jun Adachi; Chanchal Kumar; Yanling Zhang; Matthias Mann
Journal:  Mol Cell Proteomics       Date:  2007-04-04       Impact factor: 5.911

8.  Integration of capillary isoelectric focusing with capillary reversed-phase liquid chromatography for two-dimensional proteomics separation.

Authors:  Jinzhi Chen; Cheng S Lee; Yufeng Shen; Richard D Smith; Eric H Baehrecke
Journal:  Electrophoresis       Date:  2002-09       Impact factor: 3.535

9.  Direct analysis of protein complexes using mass spectrometry.

Authors:  A J Link; J Eng; D M Schieltz; E Carmack; G J Mize; D R Morris; B M Garvik; J R Yates
Journal:  Nat Biotechnol       Date:  1999-07       Impact factor: 54.908

10.  Challenges in deriving high-confidence protein identifications from data gathered by a HUPO plasma proteome collaborative study.

Authors:  David J States; Gilbert S Omenn; Thomas W Blackwell; Damian Fermin; Jimmy Eng; David W Speicher; Samir M Hanash
Journal:  Nat Biotechnol       Date:  2006-03       Impact factor: 54.908

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  39 in total

Review 1.  Proteomics characterization of exosome cargo.

Authors:  Kevin L Schey; J Matthew Luther; Kristie L Rose
Journal:  Methods       Date:  2015-03-31       Impact factor: 3.608

2.  Expanding the dipeptidyl peptidase 4-regulated peptidome via an optimized peptidomics platform.

Authors:  Arthur D Tinoco; Debarati M Tagore; Alan Saghatelian
Journal:  J Am Chem Soc       Date:  2010-03-24       Impact factor: 15.419

3.  Online nanoflow RP-RP-MS reveals dynamics of multicomponent Ku complex in response to DNA damage.

Authors:  Feng Zhou; Job D Cardoza; Scott B Ficarro; Guillaume O Adelmant; Jean-Bernard Lazaro; Jarrod A Marto
Journal:  J Proteome Res       Date:  2010-10-27       Impact factor: 4.466

Review 4.  Stable-isotope dilution LC–MS for quantitative biomarker analysis.

Authors:  Eugene Ciccimaro; Ian A Blair
Journal:  Bioanalysis       Date:  2010-02       Impact factor: 2.681

5.  Online nanoflow multidimensional fractionation for high efficiency phosphopeptide analysis.

Authors:  Scott B Ficarro; Yi Zhang; Marlene J Carrasco-Alfonso; Brijesh Garg; Guillaume Adelmant; James T Webber; C John Luckey; Jarrod A Marto
Journal:  Mol Cell Proteomics       Date:  2011-07-25       Impact factor: 5.911

6.  Depletion of abundant plasma proteins and limitations of plasma proteomics.

Authors:  Chengjian Tu; Paul A Rudnick; Misti Y Martinez; Kristin L Cheek; Stephen E Stein; Robbert J C Slebos; Daniel C Liebler
Journal:  J Proteome Res       Date:  2010-10-01       Impact factor: 4.466

Review 7.  Quality assessment for clinical proteomics.

Authors:  David L Tabb
Journal:  Clin Biochem       Date:  2012-12-12       Impact factor: 3.281

8.  Cysteinyl peptide capture for shotgun proteomics: global assessment of chemoselective fractionation.

Authors:  De Lin; Jing Li; Robbert J C Slebos; Daniel C Liebler
Journal:  J Proteome Res       Date:  2010-10-01       Impact factor: 4.466

9.  Comparison of extensive protein fractionation and repetitive LC-MS/MS analyses on depth of analysis for complex proteomes.

Authors:  Huan Wang; Tony Chang-Wong; Hsin-Yao Tang; David W Speicher
Journal:  J Proteome Res       Date:  2010-02-05       Impact factor: 4.466

10.  Equivalence of protein inventories obtained from formalin-fixed paraffin-embedded and frozen tissue in multidimensional liquid chromatography-tandem mass spectrometry shotgun proteomic analysis.

Authors:  Robert W Sprung; Jonathan W C Brock; Jarred P Tanksley; Ming Li; Mary Kay Washington; Robbert J C Slebos; Daniel C Liebler
Journal:  Mol Cell Proteomics       Date:  2009-05-24       Impact factor: 5.911

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