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SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage

We previously showed that p21(Cip1) transits through the nucleolus on its way from the nucleus to the cytoplasm and that DNA damage inhibits this transit and induces the formation of p21(Cip1)-containing intranucleolar bodies (INoBs). Here, we demonstrate that these INoBs also contain SUMO-1 and UBC...

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Autores principales: Brun, Sonia, Abella, Neus, Berciano, Maria T., Tapia, Olga, Jaumot, Montserrat, Freire, Raimundo, Lafarga, Miguel, Agell, Neus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5459497/
https://www.ncbi.nlm.nih.gov/pubmed/28582471
http://dx.doi.org/10.1371/journal.pone.0178925
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author Brun, Sonia
Abella, Neus
Berciano, Maria T.
Tapia, Olga
Jaumot, Montserrat
Freire, Raimundo
Lafarga, Miguel
Agell, Neus
author_facet Brun, Sonia
Abella, Neus
Berciano, Maria T.
Tapia, Olga
Jaumot, Montserrat
Freire, Raimundo
Lafarga, Miguel
Agell, Neus
author_sort Brun, Sonia
collection PubMed
description We previously showed that p21(Cip1) transits through the nucleolus on its way from the nucleus to the cytoplasm and that DNA damage inhibits this transit and induces the formation of p21(Cip1)-containing intranucleolar bodies (INoBs). Here, we demonstrate that these INoBs also contain SUMO-1 and UBC9, the E2 SUMO-conjugating enzyme. Furthermore, whereas wild type SUMO-1 localized in INoBs, a SUMO-1 mutant, which is unable to conjugate with proteins, does not, suggesting the presence of SUMOylated proteins at INoBs. Moreover, depletion of the SUMO-conjugating enzyme UBC9 or the sumo hydrolase SENP2 changed p21(Cip1) intracellular distribution. In addition to SUMO-1 and p21(Cip1), cell cycle regulators and DNA damage checkpoint proteins, including Cdk2, Cyclin E, PCNA, p53 and Mdm2, and PML were also detected in INoBs. Importantly, depletion of UBC9 or p21Cip1 impacted INoB biogenesis and the nucleolar accumulation of the cell cycle regulators and DNA damage checkpoint proteins following DNA damage. The impact of p21Cip1 and SUMO-1 on the accumulation of proteins in INoBs extends also to CRM1, a nuclear exportin that is also important for protein translocation from the cytoplasm to the nucleolus. Thus, SUMO and p21(Cip1) regulate the transit of proteins through the nucleolus, and that disruption of nucleolar export by DNA damage induces SUMO and p21(Cip1) to act as hub proteins to form a multiprotein complex in the nucleolus.
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spelling pubmed-54594972017-06-15 SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage Brun, Sonia Abella, Neus Berciano, Maria T. Tapia, Olga Jaumot, Montserrat Freire, Raimundo Lafarga, Miguel Agell, Neus PLoS One Research Article We previously showed that p21(Cip1) transits through the nucleolus on its way from the nucleus to the cytoplasm and that DNA damage inhibits this transit and induces the formation of p21(Cip1)-containing intranucleolar bodies (INoBs). Here, we demonstrate that these INoBs also contain SUMO-1 and UBC9, the E2 SUMO-conjugating enzyme. Furthermore, whereas wild type SUMO-1 localized in INoBs, a SUMO-1 mutant, which is unable to conjugate with proteins, does not, suggesting the presence of SUMOylated proteins at INoBs. Moreover, depletion of the SUMO-conjugating enzyme UBC9 or the sumo hydrolase SENP2 changed p21(Cip1) intracellular distribution. In addition to SUMO-1 and p21(Cip1), cell cycle regulators and DNA damage checkpoint proteins, including Cdk2, Cyclin E, PCNA, p53 and Mdm2, and PML were also detected in INoBs. Importantly, depletion of UBC9 or p21Cip1 impacted INoB biogenesis and the nucleolar accumulation of the cell cycle regulators and DNA damage checkpoint proteins following DNA damage. The impact of p21Cip1 and SUMO-1 on the accumulation of proteins in INoBs extends also to CRM1, a nuclear exportin that is also important for protein translocation from the cytoplasm to the nucleolus. Thus, SUMO and p21(Cip1) regulate the transit of proteins through the nucleolus, and that disruption of nucleolar export by DNA damage induces SUMO and p21(Cip1) to act as hub proteins to form a multiprotein complex in the nucleolus. Public Library of Science 2017-06-05 /pmc/articles/PMC5459497/ /pubmed/28582471 http://dx.doi.org/10.1371/journal.pone.0178925 Text en © 2017 Brun et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Brun, Sonia
Abella, Neus
Berciano, Maria T.
Tapia, Olga
Jaumot, Montserrat
Freire, Raimundo
Lafarga, Miguel
Agell, Neus
SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title_full SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title_fullStr SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title_full_unstemmed SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title_short SUMO regulates p21(Cip1) intracellular distribution and with p21(Cip1) facilitates multiprotein complex formation in the nucleolus upon DNA damage
title_sort sumo regulates p21(cip1) intracellular distribution and with p21(cip1) facilitates multiprotein complex formation in the nucleolus upon dna damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5459497/
https://www.ncbi.nlm.nih.gov/pubmed/28582471
http://dx.doi.org/10.1371/journal.pone.0178925
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