Targeted Quantitative Analysis of Streptococcus pyogenes Virulence Factors by Multiple Reaction Monitoring*S
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Nichole L. King | P. Bühlmann | R. Aebersold | E. Deutsch | M. Brusniak | L. Björck | B. Domon | V. Lange | J. Malmström | J. Didion | B. Johansson | Juliane Schäfer | Jonathan Rameseder | Chee-Hong Wong | Chee‐Hong Wong
[1] D. Wessel,et al. A method for the quantitative recovery of protein in dilute solution in the presence of detergents and lipids. , 1984, Analytical biochemistry.
[2] J. Yates,et al. An approach to correlate tandem mass spectral data of peptides with amino acid sequences in a protein database , 1994, Journal of the American Society for Mass Spectrometry.
[3] M. Cunningham,et al. Pathogenesis of group A streptococcal infections. , 2000, Clinical microbiology reviews.
[4] Roger E Bumgarner,et al. Integrated genomic and proteomic analyses of a systematically perturbed metabolic network. , 2001, Science.
[5] D. Cue,et al. Acquisition of Regulators of Complement Activation by Streptococcus pyogenes Serotype M1 , 2002, Infection and Immunity.
[6] Alexey I Nesvizhskii,et al. Empirical statistical model to estimate the accuracy of peptide identifications made by MS/MS and database search. , 2002, Analytical chemistry.
[7] R. Aebersold,et al. A statistical model for identifying proteins by tandem mass spectrometry. , 2003, Analytical chemistry.
[8] Ruedi Aebersold,et al. A microcapillary trap cartridge-microcapillary high-performance liquid chromatography electrospray ionization emitter device capable of peptide tandem mass spectrometry at the attomole level on an ion trap mass spectrometer with automated routine operation. , 2003, Rapid communications in mass spectrometry : RCM.
[9] R. Aebersold,et al. Mass spectrometry-based proteomics , 2003, Nature.
[10] Ruedi Aebersold,et al. Constellations in a cellular universe , 2003, Nature.
[11] S. Gygi,et al. Absolute quantification of proteins and phosphoproteins from cell lysates by tandem MS , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[12] Nichole L. King,et al. Integration with the human genome of peptide sequences obtained by high-throughput mass spectrometry , 2004, Genome Biology.
[13] K. Clauser,et al. Use of mass spectrometry to identify protein biomarkers of disease severity in the synovial fluid and serum of patients with rheumatoid arthritis. , 2004, Arthritis and rheumatism.
[14] Dwight R. Johnson,et al. Human immunogenicity studies on group A streptococcal C5a peptidase (SCPA) as a potential vaccine against group A streptococcal infections. , 2004, The Indian journal of medical research.
[15] A. Schmidt,et al. A novel strategy for quantitative proteomics using isotope‐coded protein labels , 2005, Proteomics.
[16] J. Griffiths,et al. Multiple Reaction Monitoring to Identify Sites of Protein Phosphorylation with High Sensitivity *S , 2005, Molecular & Cellular Proteomics.
[17] E. Duchoslav,et al. Multiple reaction monitoring as a method for identifying protein posttranslational modifications. , 2005, Journal of biomolecular techniques : JBT.
[18] J. Carapetis,et al. The global burden of group A streptococcal diseases. , 2005, The Lancet. Infectious diseases.
[19] M. Mann,et al. Mass spectrometry–based proteomics turns quantitative , 2005, Nature chemical biology.
[20] R. Aebersold,et al. A uniform proteomics MS/MS analysis platform utilizing open XML file formats , 2005, Molecular systems biology.
[21] L. Björck,et al. The protein expression of Streptococcus pyogenes is significantly influenced by human plasma. , 2005, Journal of proteome research.
[22] Ruedi Aebersold,et al. Added value for tandem mass spectrometry shotgun proteomics data validation through isoelectric focusing of peptides. , 2005, Journal of proteome research.
[23] Nichole L. King,et al. Human Plasma PeptideAtlas , 2005, Proteomics.
[24] J. Musser,et al. Toward a genome-wide systems biology analysis of host-pathogen interactions in group A Streptococcus. , 2005, The American journal of pathology.
[25] R. Aebersold,et al. Scoring proteomes with proteotypic peptide probes , 2005, Nature Reviews Molecular Cell Biology.
[26] R. Aebersold,et al. Mass Spectrometry and Protein Analysis , 2006, Science.
[27] Alexey I Nesvizhskii,et al. Analysis of the Saccharomyces cerevisiae proteome with PeptideAtlas , 2006, Genome Biology.
[28] Ruedi Aebersold,et al. Challenges and Opportunities in Proteomics Data Analysis* , 2006, Molecular & Cellular Proteomics.
[29] Eric W. Deutsch,et al. The PeptideAtlas project , 2005, Nucleic Acids Res..
[30] William J Jusko,et al. Utility of cleavable isotope-coded affinity-tagged reagents for quantification of low-copy proteins induced by methylprednisolone using liquid chromatography/tandem mass spectrometry. , 2006, Analytical chemistry.
[31] Leigh Anderson,et al. Quantitative Mass Spectrometric Multiple Reaction Monitoring Assays for Major Plasma Proteins* , 2006, Molecular & Cellular Proteomics.
[32] James P. Reilly,et al. A computational approach toward label-free protein quantification using predicted peptide detectability , 2006, ISMB.
[33] Alexey I Nesvizhskii,et al. Optimized peptide separation and identification for mass spectrometry based proteomics via free-flow electrophoresis. , 2006, Journal of proteome research.
[34] E. Marcotte,et al. Absolute protein expression profiling estimates the relative contributions of transcriptional and translational regulation , 2007, Nature Biotechnology.
[35] Daniel B. Martin,et al. Computational prediction of proteotypic peptides for quantitative proteomics , 2007, Nature Biotechnology.
[36] D. Lauffenburger,et al. Multiple reaction monitoring for robust quantitative proteomic analysis of cellular signaling networks , 2007, Proceedings of the National Academy of Sciences.
[37] Nichole L. King,et al. Targeted Quantitative Analysis of Streptococcus pyogenes Virulence Factors by Multiple Reaction Monitoring*S , 2008, Molecular & Cellular Proteomics.