Mapping the SUMOylated landscape
- PMID: 26185901
- PMCID: PMC4869838
- DOI: 10.1111/febs.13378
Mapping the SUMOylated landscape
Abstract
SUMOylation is a post-translational modification that regulates a multitude of cellular processes, including replication, cell-cycle progression, protein transport and the DNA damage response. Similar to ubiquitin, SUMO (small ubiquitin-like modifier) is covalently attached to target proteins in a reversible process via an enzymatic cascade. SUMOylation is essential for nearly all eukaryotic organisms, and deregulation of the SUMO system is associated with human diseases such as cancer and neurodegenerative diseases. Therefore, it is of great interest to understand the regulation and dynamics of this post-translational modification. Within the last decade, mass spectrometry analyses of SUMO proteomes have overcome several obstacles, greatly expanding the number of known SUMO target proteins. In this review, we briefly outline the basic concepts of the SUMO system, and discuss the potential of proteomic approaches to decipher SUMOylation patterns in order to understand the role of SUMO in health and disease.
Keywords: SUMO; cross-talk; group modification; mass spectrometry; post-translational modification; proteomics; site-specific; small ubiquitin-like modifier; ubiquitin.
© The Authors. FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies.
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References
-
- Jackson SP & Durocher D (2013) Regulation of DNA damage responses by ubiquitin and SUMO. Mol Cell 49, 795–807. - PubMed
-
- Melchior F, Schergaut M & Pichler A (2003) SUMO: ligases, isopeptidases and nuclear pores. Trends Biochem Sci 28, 612–618. - PubMed
-
- Evdokimov E, Sharma P, Lockett SJ, Lualdi M & Kuehn MR (2008) Loss of SUMO1 in mice affects RanGAP1 localization and formation of PML nuclear bodies, but is not lethal as it can be compensated by SUMO2 or SUMO3. J Cell Sci 121, 4106–4113. - PubMed
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