Publications of J. Cox
All genres
Journal Article (141)
121.
Journal Article
72 (2), ra24, pp. [1] - [12] (2009)
System-Wide Changes to SUMO Modifications in Response to Heat Shock. Science Signaling 122.
Journal Article
2 (72), ra24, pp. [1] - [12] (2009)
System-Wide Changes to SUMO Modifications in Response to Heat Shock. Science Signaling 123.
Journal Article
19 (12), pp. 1813 - 1820 (2008)
How Much Peptide Sequence Information Is Contained in Ion Trap Tandem Mass Spectra? Journal of the American Society for Mass Spectrometry 124.
Journal Article
26 (12), pp. 1367 - 1372 (2008)
MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification. Nature Biotechnology 125.
Journal Article
7 (12), pp. 5314 - 5326 (2008)
Solid Tumor Proteome and Phosphoproteome Analysis by High Resolution Mass Spectrometry. Journal of Proteome Research 126.
Journal Article
7 (11), pp. 2107 - 2122 (2008)
The Ubiquitin-Proteasome System Is a Key Component of the SUMO-2/3 Cycle. Molecular & Cellular Proteomics 127.
Journal Article
455 (7217), pp. 1251 - 1254 (2008)
Comprehensive mass-spectrometry-based proteome quantification of haploid versus diploid yeast. Nature 128.
Journal Article
31 (5), pp. 762 - 772 (2008)
Combined use of RNAi and quantitative proteomics to study gene function in Drosophila. Molecular Cell 129.
Journal Article
7 (8), pp. 1452 - 1459 (2008)
A novel chromatographic method allows on-line reanalysis of the proteome. Molecular & Cellular Proteomics 130.
Journal Article
5 (6), pp. 459 - 460 (2008)
Iodoacetamide-induced artifact mimics ubiquitination in mass spectrometry. Nature Methods 131.
Journal Article
275 (Suppl. Suppl. 1), p. 29 - 29 (2008)
SILAC based quantitative proteomics to determine specific protein-protein and protein-DNA interactions. FEBS Journal 132.
Journal Article
SILAC-labeling and proteome quantitation of mouse embryonic stem cells to a depth of 5111 proteins. Special Issue: 8th International Symposium On Mass Spectrometry In The Life Sciences, pp. 672 - 683 (2008)
133.
Journal Article
7 (4), pp. 672 - 683 (2008)
Stable Isotope Labeling by Amino Acids in Cell Culture (SILAC) and proteome quantitation of mouse embryonic stem cells to a depth of 5,111 proteins. Molecular & Cellular Proteomics 134.
Journal Article
268 (2-3), pp. 158 - 167 (2007)
Nanoelectrospray peptide mapping revisited: Composite survey spectra allow high dynamic range protein characterization without LCMS on an orbitrap mass spectrometer. International Journal of Mass Spectrometry 135.
Journal Article
130 (3), pp. 395 - 398 (2007)
Is proteomics the new genomics? Cell 136.
Journal Article
6 (8 (Supplement)), 1.1, p. 18 - 18 (2007)
Expression proteomics at last; the determination of Proteome wide protein abundance changes by SILAC and high resolution mass Spectrometry. Molecular & Cellular Proteomics 137.
Journal Article
6 (8), pp. 2963 - 2972 (2007)
Analysis of the mouse liver proteome using advanced mass spectrometry. Journal of Proteome Research 138.
Journal Article
8 (2), pp. 121 - 133 (2007)
Predicting experimental properties of proteins from sequence by machine learning techniques. Current Protein & Peptide Science 139.
Journal Article
8 (11), R250 (2007)
PHOSIDA (phosphorylation site database): management, structural and evolutionary investigation, and prediction of phosphosites. Genome Biology 140.
Journal Article
3 (12), e416, pp. 2127 - 2134 (2005)
Securin is not required for chromosomal stability in human cells. PLoS Biology