Research Group Matić
Journal Article (51)
2011
Journal Article
4 (178), p. rs4 (2011)
Comparative proteomic analysis identifies a role for SUMO in protein quality control. Sci Signal 2010
Journal Article
37 (3), pp. 396 - 407 (2010)
Regulation of translesion synthesis DNA polymerase eta by monoubiquitination. Mol Cell
Journal Article
6, p. 450 (2010)
Defining the transcriptome and proteome in three functionally different human cell lines. Mol Syst Biol
Journal Article
39 (4), pp. 641 - 52 (2010)
Site-specific identification of SUMO-2 targets in cells reveals an inverted SUMOylation motif and a hydrophobic cluster SUMOylation motif. Mol Cell 2009
Journal Article
497, pp. 19 - 31 (2009)
Identification of SUMO target proteins by quantitative proteomics. Methods Mol Biol
Journal Article
4 (5), pp. 698 - 705 (2009)
A practical guide to the MaxQuant computational platform for SILAC-based quantitative proteomics. Nat Protoc
Journal Article
2 (72), p. ra24 (2009)
System-wide changes to SUMO modifications in response to heat shock. Sci Signal 2008
Journal Article
7 (9), pp. 4050 - 7 (2008)
Phosphorylation of SUMO-1 occurs in vivo and is conserved through evolution. J Proteome Res
Journal Article
7 (1), pp. 132 - 44 (2008)
In vivo identification of human small ubiquitin-like modifier polymerization sites by high accuracy mass spectrometry and an in vitro to in vivo strategy. Mol Cell Proteomics
Journal Article
7 (11), pp. 2107 - 22 (2008)
The ubiquitin-proteasome system is a key component of the SUMO-2/3 cycle. Mol Cell Proteomics 2006
Journal Article
6 (21), pp. 5725 - 34 (2006)
Proteomic-based analysis of nuclear signaling: PLCbeta1 affects the expression of the splicing factor SRp20 in Friend erythroleukemia cells. Proteomics Book Chapter (1)
2023
Book Chapter
2609, pp. 135 - 146 (Ed. Tulin, A. V.). Springer US, New York, NY (2023)
Immunoprecipitation Using Mono-ADP-Ribosylation-Specific Antibodies. In: Poly(ADP-Ribose) Polymerase: Methods in Molecular Biology, Vol.