Literature DB >> 11270867

Automated LC-LC-MS-MS platform using binary ion-exchange and gradient reversed-phase chromatography for improved proteomic analyses.

M T Davis1, J Beierle, E T Bures, M D McGinley, J Mort, J H Robinson, C S Spahr, W Yu, R Luethy, S D Patterson.   

Abstract

A simple multidimensional liquid chromatography system utilizing an isocratic pump and a HPLC system is described for the comprehensive proteomic analysis of complex peptide digest mixtures by coupled LC-LC-MS-MS techniques. A binary ion-exchange separation was achieved through the use of a strong cation-exchange column followed by a reversed-phase column for data-dependent LC-MS-MS analysis of the unbound analytes, and following salt elution (and concomitant column reequilibration), the bound analytes. Off-line validation of the platform showed near quantitative recovery of fractionated peptides and essentially complete ion-exchange partitioning. In comparative analyses of a highly complex peptide digest mixture a >40% increase in the number of peptide and protein identifications was achieved using this multidimensional platform compared to an unfractionated control.

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Year:  2001        PMID: 11270867     DOI: 10.1016/s0378-4347(00)00547-8

Source DB:  PubMed          Journal:  J Chromatogr B Biomed Sci Appl        ISSN: 1387-2273


  13 in total

1.  Multidimensional nano-HPLC for analysis of protein complexes.

Authors:  Yvonne Wagner; Albert Sickmann; Helmut E Meyer; Günther Daum
Journal:  J Am Soc Mass Spectrom       Date:  2003-09       Impact factor: 3.109

2.  Exploiting the complementary nature of LC/MALDI/MS/MS and LC/ESI/MS/MS for increased proteome coverage.

Authors:  Wanda M Bodnar; R Kevin Blackburn; Jo M Krise; M Arthur Moseley
Journal:  J Am Soc Mass Spectrom       Date:  2003-09       Impact factor: 3.109

3.  Improved 2D nano-LC/MS for proteomics applications: a comparative analysis using yeast proteome.

Authors:  E Nägele; M Vollmer; P Hörth
Journal:  J Biomol Tech       Date:  2004-06

4.  Extracellular proteome of human hepatoma cell, HepG2 analyzed using two-dimensional liquid chromatography coupled with tandem mass spectrometry.

Authors:  Ryo Yamashita; Yuko Fujiwara; Kohei Ikari; Keiko Hamada; Asuka Otomo; Kazuki Yasuda; Mitsuhiko Noda; Yasushi Kaburagi
Journal:  Mol Cell Biochem       Date:  2006-11-16       Impact factor: 3.396

5.  Mitochondrial proteomic analysis reveals deficiencies in oxygen utilization in medullary thick ascending limb of Henle in the Dahl salt-sensitive rat.

Authors:  Nadezhda N Zheleznova; Chun Yang; Robert P Ryan; Brian D Halligan; Mingyu Liang; Andrew S Greene; Allen W Cowley
Journal:  Physiol Genomics       Date:  2012-07-17       Impact factor: 3.107

6.  Fully automated multifunctional ultrahigh pressure liquid chromatography system for advanced proteome analyses.

Authors:  Jung Hwa Lee; Seok-Won Hyung; Dong-Gi Mun; Hee-Jung Jung; Hokeun Kim; Hangyeore Lee; Su-Jin Kim; Kyong Soo Park; Ronald J Moore; Richard D Smith; Sang-Won Lee
Journal:  J Proteome Res       Date:  2012-07-05       Impact factor: 4.466

7.  Electron transfer ion/ion reactions in a three-dimensional quadrupole ion trap: reactions of doubly and triply protonated peptides with SO2*-.

Authors:  Sharon J Pitteri; Paul A Chrisman; Jason M Hogan; Scott A McLuckey
Journal:  Anal Chem       Date:  2005-03-15       Impact factor: 6.986

8.  Differential proteome analysis: two-dimensional nano-LC/MS of E. coli proteome grown on different carbon sources.

Authors:  Martin Vollmer; Edgar Nägele; Patric Hörth
Journal:  J Biomol Tech       Date:  2003-06

9.  Hydrophilic strong anion exchange (hSAX) chromatography for highly orthogonal peptide separation of complex proteomes.

Authors:  Maria Stella Ritorto; Ken Cook; Kshitiz Tyagi; Patrick G A Pedrioli; Matthias Trost
Journal:  J Proteome Res       Date:  2013-01-07       Impact factor: 4.466

10.  Recent advances in proteomics and cancer biomarker discovery.

Authors:  Gary Guishan Xiao; Robert R Recker; Hong-Wen Deng
Journal:  Clin Med Oncol       Date:  2008-02-09
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