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Hypoxia-induced Changes in SUMO Conjugation Affect Transcriptional Regulation under Low Oxygen
dc.creator | Chachami G., Stankovic-Valentin N., Karagiota A., Basagianni A., Plessmann U., Urlaub H., Melchior F., Simos G. | en |
dc.date.accessioned | 2023-01-31T07:42:06Z | |
dc.date.available | 2023-01-31T07:42:06Z | |
dc.date.issued | 2019 | |
dc.identifier | 10.1074/mcp.RA119.001401 | |
dc.identifier.issn | 15359476 | |
dc.identifier.uri | http://hdl.handle.net/11615/72352 | |
dc.description.abstract | Hypoxia occurs in pathological conditions, such as cancer, as a result of the imbalance between oxygen supply and consumption by proliferating cells. HIFs are critical molecular mediators of the physiological response to hypoxia but also regulate multiple steps of carcinogenesis including tumor progression and metastasis. Recent data support that sumoylation, the covalent attachment of the Small Ubiquitin-related MOdifier (SUMO) to proteins, is involved in the activation of the hypoxic response and the ensuing signaling cascade. To gain insights into differences of the SUMO1 and SUMO2/3 proteome of HeLa cells under normoxia and cells grown for 48 h under hypoxic conditions, we employed endogenous SUMO-immunoprecipitation in combination with quantitative mass spectrometry (SILAC). The group of proteins whose abundance was increased both in the total proteome and in the SUMO IPs from hypoxic conditions was enriched in enzymes linked to the hypoxic response. In contrast, proteins whose SUMOylation status changed without concomitant change in abundance were predominantly transcriptions factors or transcription regulators. Particularly interesting was transcription factor TFAP2A (Activating enhancer binding Protein 2 alpha), whose sumoylation decreased on hypoxia. TFAP2A is known to interact with HIF-1 and we provide evidence that deSUMOylation of TFAP2A enhances the transcriptional activity of HIF-1 under hypoxic conditions. Overall, these results support the notion that SUMO-regulated signaling pathways contribute at many distinct levels to the cellular response to low oxygen. © 2019 Chachami et al. Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc. | en |
dc.language.iso | en | en |
dc.source | Molecular and Cellular Proteomics | en |
dc.source.uri | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85066745977&doi=10.1074%2fmcp.RA119.001401&partnerID=40&md5=4176ecfdf50b453c8b27c61099c2ca9e | |
dc.subject | 6 phosphofructokinase isoenzyme P | en |
dc.subject | activating enhancer binding protein 2 alpha | en |
dc.subject | alpha enolase | en |
dc.subject | aspartate transfer RNA ligase | en |
dc.subject | fructose bisphosphate aldolase a | en |
dc.subject | fructose bisphosphate aldolase c | en |
dc.subject | galectin 3 | en |
dc.subject | glucose 6 phosphate isomerase | en |
dc.subject | glycolytic enzyme | en |
dc.subject | hypoxia inducible factor 1 | en |
dc.subject | lactate dehydrogenase a chain | en |
dc.subject | lipocortin 4 | en |
dc.subject | nuclear mitotic apparatus protein 1 | en |
dc.subject | oxygen | en |
dc.subject | peroxiredoxin 2 | en |
dc.subject | phosphoglycerate kinase | en |
dc.subject | protein zer 1 homolog | en |
dc.subject | proteome | en |
dc.subject | pyruvate kinase | en |
dc.subject | pyruvate kinase M1 | en |
dc.subject | pyruvate kinase M2 | en |
dc.subject | sp100 protein | en |
dc.subject | SUMO 1 protein | en |
dc.subject | SUMO 2 protein | en |
dc.subject | SUMO 3 protein | en |
dc.subject | SUMO protein | en |
dc.subject | transcription factor | en |
dc.subject | transferrin receptor protein 1 | en |
dc.subject | triosephosphate isomerase | en |
dc.subject | tubulin beta 6 chain | en |
dc.subject | unclassified drug | en |
dc.subject | basic helix loop helix transcription factor | en |
dc.subject | endothelial PAS domain-containing protein 1 | en |
dc.subject | hypoxia inducible factor 1alpha | en |
dc.subject | lysine | en |
dc.subject | oxygen | en |
dc.subject | protein binding | en |
dc.subject | SUMO protein | en |
dc.subject | TFAP2A protein, human | en |
dc.subject | transcription factor AP 2 | en |
dc.subject | Article | en |
dc.subject | cell growth | en |
dc.subject | conjugation | en |
dc.subject | controlled study | en |
dc.subject | female | en |
dc.subject | HeLa cell line | en |
dc.subject | human | en |
dc.subject | human cell | en |
dc.subject | hypoxia | en |
dc.subject | hypoxic cell | en |
dc.subject | immunoprecipitation | en |
dc.subject | mass spectrometry | en |
dc.subject | priority journal | en |
dc.subject | protein analysis | en |
dc.subject | protein expression level | en |
dc.subject | protein protein interaction | en |
dc.subject | proteomics | en |
dc.subject | quantitative analysis | en |
dc.subject | signal transduction | en |
dc.subject | stable isotope labeling of amino acids in cell culture technique | en |
dc.subject | sumoylation | en |
dc.subject | transcription regulation | en |
dc.subject | tumor hypoxia | en |
dc.subject | amino acid sequence | en |
dc.subject | cell hypoxia | en |
dc.subject | chemistry | en |
dc.subject | drug effect | en |
dc.subject | enzyme specificity | en |
dc.subject | gene expression regulation | en |
dc.subject | genetic transcription | en |
dc.subject | genetics | en |
dc.subject | metabolism | en |
dc.subject | sumoylation | en |
dc.subject | Amino Acid Sequence | en |
dc.subject | Basic Helix-Loop-Helix Transcription Factors | en |
dc.subject | Cell Hypoxia | en |
dc.subject | Gene Expression Regulation | en |
dc.subject | HeLa Cells | en |
dc.subject | Humans | en |
dc.subject | Hypoxia-Inducible Factor 1, alpha Subunit | en |
dc.subject | Lysine | en |
dc.subject | Oxygen | en |
dc.subject | Protein Binding | en |
dc.subject | Small Ubiquitin-Related Modifier Proteins | en |
dc.subject | Substrate Specificity | en |
dc.subject | Sumoylation | en |
dc.subject | Transcription Factor AP-2 | en |
dc.subject | Transcription, Genetic | en |
dc.subject | American Society for Biochemistry and Molecular Biology Inc. | en |
dc.title | Hypoxia-induced Changes in SUMO Conjugation Affect Transcriptional Regulation under Low Oxygen | en |
dc.type | journalArticle | en |
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