Publication:
The Sumo proteome of proliferating and neuronal-differentiating cells reveals Utf1 among key Sumo targets involved in neurogenesis

dc.contributor.authorCorrea-Vázquez, Juan F.
dc.contributor.authorJuárez-Vicente, Francisco
dc.contributor.authorGarcía-Gutiérrez, Pablo
dc.contributor.authorBarysch, Sina V.
dc.contributor.authorMelchior, Frauke
dc.contributor.authorGarcía-Domínguez, Mario
dc.contributor.authoraffiliation[Correa-Vázquez,JF; Juárez-Vicente,F; García-Gutiérrez,P; García-Domínguez,M] Andalusian Centre for Molecular Biology and Regenerative Medicine-CABIMER, CSIC-Universidad de Sevilla-Universidad Pablo de Olavide, Seville, Spain. [Barysch,SV; Melchior,F] Zentrum für Molekulare Biologie der Universität Heidelberg (ZMBH), Heidelberg University, DKFZ-ZMBH Alliance, Heidelberg, Germany.
dc.contributor.funderThis work was supported by grants BFU2015-64721-P and PGC2018-094232-B-I00 from the Ministry of Science, Innovation and Universities (MICIU), Spain, to M.G.-D., and also received funding from the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)—Project Number 278001972-TRR 186 to F.M.
dc.date.accessioned2022-09-02T12:48:45Z
dc.date.available2022-09-02T12:48:45Z
dc.date.issued2021-03-22
dc.description.abstractPost-translational modification by covalent attachment of the Small ubiquitin-like modifier (Sumo) polypeptide regulates a multitude of processes in vertebrates. Despite demonstrated roles of Sumo in the development and function of the nervous system, the identification of key factors displaying a sumoylation-dependent activity during neurogenesis remains elusive. Through a SILAC (stable isotope labeling by/with amino acids in cell culture)-based proteomic approach, we have identified the Sumo proteome of the model cell line P19 under proliferation and neuronal differentiation conditions. More than 300 proteins were identified as putative Sumo targets differentially associated with one or the other condition. A group of proteins of interest were validated and investigated in functional studies. Among these, Utf1 was revealed as a new Sumo target. Gain-of-function experiments demonstrated marked differences between the effects on neurogenesis of overexpressing wild-type and sumoylation mutant versions of the selected proteins. While sumoylation of Prox1, Sall4a, Trim24, and Utf1 was associated with a positive effect on neurogenesis in P19 cells, sumoylation of Kctd15 was associated with a negative effect. Prox1, Sall4a, and Kctd15 were further analyzed in the vertebrate neural tube of living embryos, with similar results. Finally, a detailed analysis of Utf1 showed the sumoylation dependence of Utf1 function in controlling the expression of bivalent genes. Interestingly, this effect seems to rely on two mechanisms: sumoylation modulates binding of Utf1 to the chromatin and mediates recruitment of the messenger RNA-decapping enzyme Dcp1a through a conserved SIM (Sumo-interacting motif). Altogether, our results indicate that the combined sumoylation status of key proteins determines the proper progress of neurogenesis.es_ES
dc.description.versionYeses_ES
dc.identifier.citationCorrea-Vázquez JF, Juárez-Vicente F, García-Gutiérrez P, Barysch SV, Melchior F, García-Domínguez M. The Sumo proteome of proliferating and neuronal-differentiating cells reveals Utf1 among key Sumo targets involved in neurogenesis. Cell Death Dis. 2021 Mar 22;12(4):305es_ES
dc.identifier.doi10.1038/s41419-021-03590-2es_ES
dc.identifier.essn2041-4889
dc.identifier.pmcPMC7985304
dc.identifier.pmid33753728es_ES
dc.identifier.urihttp://hdl.handle.net/10668/3990
dc.journal.titleCell death & disease
dc.language.isoen
dc.page.number14 p.
dc.publisherNature Publishing Groupes_ES
dc.relation.publisherversionhttps://www.nature.com/articles/s41419-021-03590-2es_ES
dc.rightsAtribución 4.0 Internacional*
dc.rights.accessRightsAcceso abiertoes_ES
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectProteomees_ES
dc.subjectProteomaes_ES
dc.subjectNeural tubees_ES
dc.subjectTubo neurales_ES
dc.subjectNeurogenesises_ES
dc.subjectNeurogénesises_ES
dc.subjectRNAes_ES
dc.subjectARNes_ES
dc.subjectAminoácidos, péptidos y proteínases_ES
dc.subjectAmino acids, peptides, and proteinses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Differentiationes_ES
dc.subject.meshMedical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humanses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Differentiation::Neurogenesises_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Nuclear Proteinses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Genetic Phenomena::Genetic Processes::Gene Expression Regulation::Protein Modification, Translational::Protein Processing, Post-Translationales_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Proteomees_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Ubiquitins::Small Ubiquitin-Related Modifier Proteinses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Genetic Phenomena::Genetic Processes::Gene Expression Regulation::Protein Modification, Translational::Protein Processing, Post-Translational::Ubiquitination::Sumoylationes_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Transcription Factors::Trans-Activatorses_ES
dc.subject.meshMedical Subject Headings::Organisms::Eukaryota::Animalses_ES
dc.subject.meshMedical Subject Headings::Disciplines and Occupations::Natural Science Disciplines::Chemistry::Biochemistry::Proteomicses_ES
dc.subject.meshMedical Subject Headings::Anatomy::Embryonic Structures::Neural Tubees_ES
dc.subject.meshMedical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Isotope Labelinges_ES
dc.subject.meshMedical Subject Headings::Anatomy::Cells::Cells, Cultured::Cell Linees_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Nucleic Acids, Nucleotides, and Nucleosides::Nucleic Acids::RNA::RNA, Messengeres_ES
dc.subject.meshMedical Subject Headings::Anatomy::Nervous Systemes_ES
dc.subject.meshMedical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Culture Techniques::Cell Culture Techniqueses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Cell Physiological Phenomena::Cell Physiological Processes::Cell Growth Processes::Cell Proliferationes_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Peptideses_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Amino Acidses_ES
dc.subject.meshMedical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrateses_ES
dc.titleThe Sumo proteome of proliferating and neuronal-differentiating cells reveals Utf1 among key Sumo targets involved in neurogenesises_ES
dc.typeresearch article
dc.type.hasVersionVoR
dspace.entity.typePublication

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