As a component of post-genome science, the field of proteomics has assumed great prominence in recent years. Whereas quantitative analyses dealt at first with relative quantification, a greater emphasis is now placed on absolute quantification and consideration of proteome dynamics. Coverage of the topic of quantitative proteomics requires consideration both of the analytical fundamentals of quantitative mass spectrometry and the specific demands of proteome analysis. This exemplary book is essential reading for analytical and biological spectroscopists working in proteomic research.
As a component of post-genome science, the field of proteomics has assumed great prominence in recent years. Whereas quantitative analyses dealt at first with relative quantification, a greater emphasis is now placed on absolute quantification and consideration of proteome dynamics. Coverage of the topic of quantitative proteomics requires consideration both of the analytical fundamentals of quantitative mass spectrometry and the specific demands of proteome analysis. This exemplary book is essential reading for analytical and biological spectroscopists working in proteomic research.
Practical Considerations and Current Limitations in Quantitative Mass Spectrometry-Based Proteomics; Targeted Proteomics Based on High Resolution Accurate Mass Spectrometry Measurement; Making Sense Out of the Proteome: The Utility of iTRAQ and TMT; Getting Absolute: Determining Absolute Protein Quantities via Selected Reaction Monitoring Mass Spectrometry; Proteomics Standards with Controllable Trueness - Absolute Quantification of Peptides, Phosphopeptides and Proteins Using ICP- and ESI-MS Label-Free Strategies for Protein Quantification; Overview and Implementation of Mass Spectrometry-Based Label-Free Quantitative Proteomics; MS1 Label-Free Quantification Using Ion Intensity Chromatograms in Skyline (Research and Clinical Applications); Label-Free Quantification of Proteins Using Data-Independent Acquisition; Spatial Proteomics: Practical Considerations for Data Acquisition and Analysis in Protein Subcellular Localisation Studies; Quantitative Analyses of Phosphotyrosine Cellular Signalling in Disease; Next Generation Proteomics: PTMs in Space and Time; Experimental and Analytical Approaches to Quantification of Protein Turnover on a Proteome-Wide Scale; Protein Quantification by MRM for Biomarker Validation; MRM-based Protein Quantification with Labelled Standards for Biomarker Discovery, Verification, and Validation in Human Plasma; Mass Spectrometry-Based Quantification of Proteins and Peptides in Food; Subject Index
Practical Considerations and Current Limitations in Quantitative Mass Spectrometry-Based Proteomics; Targeted Proteomics Based on High Resolution Accurate Mass Spectrometry Measurement; Making Sense Out of the Proteome: The Utility of iTRAQ and TMT; Getting Absolute: Determining Absolute Protein Quantities via Selected Reaction Monitoring Mass Spectrometry; Proteomics Standards with Controllable Trueness - Absolute Quantification of Peptides, Phosphopeptides and Proteins Using ICP- and ESI-MS Label-Free Strategies for Protein Quantification; Overview and Implementation of Mass Spectrometry-Based Label-Free Quantitative Proteomics; MS1 Label-Free Quantification Using Ion Intensity Chromatograms in Skyline (Research and Clinical Applications); Label-Free Quantification of Proteins Using Data-Independent Acquisition; Spatial Proteomics: Practical Considerations for Data Acquisition and Analysis in Protein Subcellular Localisation Studies; Quantitative Analyses of Phosphotyrosine Cellular Signalling in Disease; Next Generation Proteomics: PTMs in Space and Time; Experimental and Analytical Approaches to Quantification of Protein Turnover on a Proteome-Wide Scale; Protein Quantification by MRM for Biomarker Validation; MRM-based Protein Quantification with Labelled Standards for Biomarker Discovery, Verification, and Validation in Human Plasma; Mass Spectrometry-Based Quantification of Proteins and Peptides in Food; Subject Index
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