The high mass accuracy and resolution of modern mass spectrometers provides new opportunities to employ theoretical peptide distributions in large-scale proteomic studies. We used theoretical distributions to study noise filtering and mass measurement errors and to examine mass-based differentiation of phosphorylated and nonphosphorylated peptides. Only the monoisotopic mass of the experimental precursor ion was necessary for this analysis. We found that peak deviations can be used to characterize the modification states of peptides in a sample. When applied to large-scale proteomic data sets, the peak deviation distribution can be used to filter chemical/electronic noise for singly charged species. Using peak deviation distributions, it is...
The mass spectrometric analysis of protein phosphorylation is still far from being routine, and the ...
Peptide mass fingerprinting (PMF) is among the principle methods of contemporary proteomic analysis....
Identification and elimination of noise peaks in mass spectra from large proteomics data streams sim...
The high mass accuracy and resolution of modern mass spectrometers provides new opportunities to emp...
The proteome is a dynamic group of proteins, interacting with and modifying each other in response t...
Improvements in the mass accuracy and resolution of mass spectrometers have greatly aided mass spect...
During the last decade, there has been great progress in high-throughput (HTP) phosphoproteomics and...
Charging of analytes is a prerequisite for performing mass spectrometry analysis. In proteomics, ele...
A major goal in proteomics is the comprehensive and accurate description of a proteome. This task in...
Accurate mass values as obtainable by Fourier transform ion cyclotron resonance mass spectrometry (F...
We present a peptide library and data resource of > 100,000 synthetic, unmodified peptides and their...
The rapid development of shotgun proteomics is paving the way for extensive proteome profiling, whil...
We present a peptide library and data resource of >100,000 synthetic, unmodified peptides and their ...
Proteins are responsible for facilitating and regulating nearly all cellular processes, and the coll...
The reversible phosphorylation of proteins plays a major role in many vital cellular processes by mo...
The mass spectrometric analysis of protein phosphorylation is still far from being routine, and the ...
Peptide mass fingerprinting (PMF) is among the principle methods of contemporary proteomic analysis....
Identification and elimination of noise peaks in mass spectra from large proteomics data streams sim...
The high mass accuracy and resolution of modern mass spectrometers provides new opportunities to emp...
The proteome is a dynamic group of proteins, interacting with and modifying each other in response t...
Improvements in the mass accuracy and resolution of mass spectrometers have greatly aided mass spect...
During the last decade, there has been great progress in high-throughput (HTP) phosphoproteomics and...
Charging of analytes is a prerequisite for performing mass spectrometry analysis. In proteomics, ele...
A major goal in proteomics is the comprehensive and accurate description of a proteome. This task in...
Accurate mass values as obtainable by Fourier transform ion cyclotron resonance mass spectrometry (F...
We present a peptide library and data resource of > 100,000 synthetic, unmodified peptides and their...
The rapid development of shotgun proteomics is paving the way for extensive proteome profiling, whil...
We present a peptide library and data resource of >100,000 synthetic, unmodified peptides and their ...
Proteins are responsible for facilitating and regulating nearly all cellular processes, and the coll...
The reversible phosphorylation of proteins plays a major role in many vital cellular processes by mo...
The mass spectrometric analysis of protein phosphorylation is still far from being routine, and the ...
Peptide mass fingerprinting (PMF) is among the principle methods of contemporary proteomic analysis....
Identification and elimination of noise peaks in mass spectra from large proteomics data streams sim...