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Application of displacement chromatography for the proteome analysis of a human plasma protein fraction
Authors:Robert Ahrends,Bjö  rn Lichtner,Andreas Bertsch,Oliver Kohlbacher,Diana Hildebrand,Maria Trusch,Hartmut Schlü  ter
Affiliation:1. University Medical Center Hamburg-Eppendorf, Department of Clinical Chemistry, Mass Spectrometric Proteomics, Campus Forschung, N27 Room 00.008, Martinistr. 52, 20246 Hamburg, Germany;2. Universität Tübingen, Wilhelm Schickard Institute for Computer Science, Division for Simulation of Biological Systems, Room C318, Sand 14, 72076 Tübingen, Germany
Abstract:It was the aim of this study to compare the performance of displacement chromatography with gradient elution chromatography both applied as the cation-exchange separation step for a proteome analysis in a bottom-up approach using multidimensional chromatography for the separation of tryptic peptides prior to their mass spectrometric analysis. The tryptic digest of the human Cohn fraction IV-4 served as a sample. For both chromatography modes commonly used operating parameters were chosen thus ensuring optimal separation results of equal sample amounts for each mode. All resulting fractions were analyzed with an HPLC-chip–LC–MS system. The eluate of the HPLC-chip column was ionized by electrospray ionization (ESI) and analyzed with an ion-trap mass spectrometer. For guaranteeing high confidence concerning the identity of the peptides, the mass spectrometric data were processed by different bioinformatic tools applying stringent criteria. By the displacement approach the total amount of identified proteins (78) was significantly higher than in the gradient mode (58). The results showed that displacement chromatography is a well suited alternative in comparison to gradient elution separation for analysis of proteomes via the bottom-up approach applying multidimensional chromatography, especially in those cases when larger quantities of proteins are available.
Keywords:Displacement   Proteomics   Human plasma   Liquid chromatography   Electrospray ionization   Mass spectrometry   Sensitivity   Low-abundance   Dynamic range, Two-dimensional liquid chromatography
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