Prediction of Chromatographic Retention and Protein Identification in Liquid Chromatography/Mass Spectrometry
Magnus Palmblad, Margareta Ramström, Karin E. Markides, P. Håkansson, Jonas Bergquist
Abstract
Magnus Palmblad, Margareta Ramström, Karin E. Markides, P. Håkansson, Jonas Bergquist
Abstract
Liquid chromatography coupled on- or off-line with mass spectrometry is rapidly advancing as a tool in proteomics capable of dealing with the inherent complexity in biology and complementing conventional approaches based on two-dimensional gel electrophoresis. Proteins can be identified by proteolytic digestion and peptide mass fingerprinting or by searching databases using short-sequence tags generated by tandem mass spectrometry. This paper shows that information on the chromatographic behavior of peptides can assist protein identification by peptide mass fingerprinting in liquid chromatography/mass spectrometry. This additional information is significant and already available at no extra experimental cost.
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Liquid chromatography coupled on- or off-line with mass spectrometry is rapidly advancing as a tool in proteomics capable of dealing with the inherent complexity in biology and complementing conventional approaches based on two-dimensional gel electrophoresis. Proteins can be identified by proteolytic digestion and peptide mass fingerprinting or by searching databases using short-sequence tags generated by tandem mass spectrometry. This paper shows that information on the chromatographic behavior of peptides can assist protein identification by peptide mass fingerprinting in liquid chromatography/mass spectrometry. This additional information is significant and already available at no extra experimental cost.
Key concepts: Chemistry, Bottom-up proteomics, Chromatography, Mass spectrometry, Proteomics, Tandem mass tag, Isobaric labeling, Tandem mass spectrometry