Targeted Identification of SUMOylation Sites in Human Proteins Using Affinity Enrichment and Paralog-specific Reporter Ions*
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Summary
This MS approach uncovered low abundance SUMOylated peptides and 37 SUMO3-modified Lys residues in target proteins, most of which were previously unknown, suggesting a complex crosstalk between these two modifications.
- Type
- article
- Published
- 2013-06-07
- Cited by
- 49
- References
- 37
- OpenAlex
- https://openalex.org/W23750026
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25300520
Keywords
Computer science
References
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- Comprehensive Protein Interactome Analysis of a Key RNA Helicase: Detection of Novel Stress Granule Proteins
- Mapping the SUMOylated landscape
- A new vertebrate SUMO enzyme family reveals insights into SUMO-chain assembly
- Mass Spectral Enhanced Detection of Ubls Using SWATH Acquisition: MEDUSA—Simultaneous Quantification of SUMO and Ubiquitin-Derived Isopeptides
- The potential of fractional diagonal chromatography strategies for the enrichment of post-translational modifications
- Large-scale analysis of lysine SUMOylation by SUMO remnant immunoaffinity profiling
- Posttranslational modifications of lysine and evolving role in heart pathologies—Recent developments
- Proteomics Strategies to Identify SUMO Targets and Acceptor Sites: A Survey of RNA-Binding Proteins SUMOylation
- SUMO proteomics to decipher the SUMO-modified proteome regulated by various diseases
- SUMO Rules: Regulatory Concepts and Their Implication in Neurologic Functions
- Uncovering Global SUMOylation Signaling Networks in a Site-Specific Manner
- SUMO and Parkinson’s Disease
- Mapping of SUMO sites and analysis of SUMOylation changes induced by external stimuli
- Identification and Characterization of HTLV-1 HBZ Post-Translational Modifications
- Rapid identification of ubiquitination and SUMOylation target sites by microfluidic peptide array
- In vitro assay to determine SUMOylation sites on protein substrates
- Functional Proteomics Study Reveals SUMOylation of TFII-I is Involved in Liver Cancer Cell Proliferation.
- The landscape of viral proteomics and its potential to impact human health
- SUMO-Modification of the La Protein Facilitates Binding to mRNA In Vitro and in Cells
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