Journal of Proteome Research · 2011 · 308 citations · 38 references
Peptide IdentificationPeptide EngineeringMolecular BiologyLtq-orbitrap VelosProtein FoldingTandem Mass SpectrometryProteomicsBiochemistryComputational Mass SpectrometryElectron Transfer DissociationIon MobilityNatural SciencesPeptide LibraryMass SpectrometryProtein Mass SpectrometryPeptide SynthesisProtein EngineeringMedicineMolecular FragmentationDrug DiscoveryIon Trap
Over the past decade peptide sequencing by collision induced dissociation (CID) has become the method of choice in mass spectrometry-based proteomics. The development of alternative fragmentation techniques such as electron transfer dissociation (ETD) has extended the possibilities within tandem mass spectrometry. Recent advances in instrumentation allow peptide fragment ions to be detected with high speed and sensitivity (e.g., in a 2D or 3D ion trap) or at high resolution and high mass accuracy (e.g., an Orbitrap or a ToF). Here, we describe a comprehensive experimental comparison of using ETD, ion-trap CID, and beam type CID (HCD) in combination with either linear ion trap or Orbitrap readout for the large-scale analysis of tryptic peptides. We investigate which combination of fragmentation technique and mass analyzer provides the best performance for the analysis of distinct peptide populations such as N-acetylated, phosphorylated, and tryptic peptides with up to two missed cleavages. We found that HCD provides more peptide identifications than CID and ETD for doubly charged peptides. In terms of Mascot score, ETD FT outperforms the other techniques for peptides with charge states higher than 2. Our data shows that there is a trade-off between spectral quality and speed when using the Orbitrap for fragment ion detection. We conclude that a decision-tree regulated combination of higher-energy collisional dissociation (HCD) and ETD can improve the average Mascot score.
38
Semi-supervised learning for peptide identification from shotgun proteomics datasets
Lukas Käll, Jesse D. Canterbury, Jason Weston et al. · Nature Methods · 2007 · 2.5K citations
Peptide and protein sequence analysis by electron transfer dissociation mass spectrometry
John E. P. Syka, Joshua J. Coon, Melanie Schroeder et al. · Proceedings of the National Academy of Sciences · 2004 · 2.3K citations · Full text
Protein Sequence Analysis, Bioorganic Chemistry, Protein Analysis +16
Higher-energy C-trap dissociation for peptide modification analysis
Jesper V. Olsen, Boris Maček, Oliver Lange et al. · Nature Methods · 2007 · 999 citations
Peptide Library, Peptide Modification Analysis, Biochemistry +1