The targeted analysis of proteins in complex biological samples is best achieved using selected reaction monitoring (SRM). To maximize the sensitivity of this approach, sample fractionation or enrichment is still required, particularly to detect less abundant proteins in clinically relevant biofluids. Here, we report the development of multidimensional protein identification technology (MudPIT)-SRM, taking advantage of the robust online strong cation exchange chromatography for tryptic peptide fractionation and combining it with the multiplexed, quantitative attributes of SRM. The classical MudPIT method has been modified with an in-line strategy to introduce reference peptides onto the analytical column to enable quantitation at each salt ...
Proteome profiling of crude serum is a challenging task due to the wide dynamic range of protein con...
A resurgence of interest in the human plasma proteome has occurred in recent years because it holds ...
Abstract: Given the complexity of the mammalian pro-teome, high-resolution separation technologies a...
The targeted analysis of proteins in complex biological samples is best achieved using selected reac...
ABSTRACT: Selected reaction monitoring (SRM) is a mass spectrometry method with documented ability t...
Selected reaction monitoring (SRM) is a mass spectrometry method with documented ability to quantify...
Comprehensive proteomic profiling of biological specimens usually requires multidimensional chromato...
Protein expression analysis is one of the most powerful tools to further the understanding of biolog...
Systems biology relies on data sets in which the same group of proteins is consistently identified a...
Quantitative LC-MS/MS assays were designed for tryptic peptides representing 53 high and medium abun...
The current proof-of-principle study was aimed toward development of a novel multidimensional protei...
Large-scale proteomics often employs two orthogonal separation methods to fractionate complex peptid...
The plasma proteome offers a wealth of opportunity to develop protein-based assays for diagnostic, p...
In order to generate proteomics data that are suitable to validate protein identification in complex...
Selected reaction monitoring (SRM), also called multiple reaction monitoring, has become an invaluab...
Proteome profiling of crude serum is a challenging task due to the wide dynamic range of protein con...
A resurgence of interest in the human plasma proteome has occurred in recent years because it holds ...
Abstract: Given the complexity of the mammalian pro-teome, high-resolution separation technologies a...
The targeted analysis of proteins in complex biological samples is best achieved using selected reac...
ABSTRACT: Selected reaction monitoring (SRM) is a mass spectrometry method with documented ability t...
Selected reaction monitoring (SRM) is a mass spectrometry method with documented ability to quantify...
Comprehensive proteomic profiling of biological specimens usually requires multidimensional chromato...
Protein expression analysis is one of the most powerful tools to further the understanding of biolog...
Systems biology relies on data sets in which the same group of proteins is consistently identified a...
Quantitative LC-MS/MS assays were designed for tryptic peptides representing 53 high and medium abun...
The current proof-of-principle study was aimed toward development of a novel multidimensional protei...
Large-scale proteomics often employs two orthogonal separation methods to fractionate complex peptid...
The plasma proteome offers a wealth of opportunity to develop protein-based assays for diagnostic, p...
In order to generate proteomics data that are suitable to validate protein identification in complex...
Selected reaction monitoring (SRM), also called multiple reaction monitoring, has become an invaluab...
Proteome profiling of crude serum is a challenging task due to the wide dynamic range of protein con...
A resurgence of interest in the human plasma proteome has occurred in recent years because it holds ...
Abstract: Given the complexity of the mammalian pro-teome, high-resolution separation technologies a...