Cargando…

RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging

Receptor-associated coactivator 3 (RAC3) is a nuclear receptor coactivator usually overexpressed in tumors that exerts oncogenic functions in the cytoplasm and the nucleus. Although as part of its oncogenic actions it was previously identified as an inhibitor of apoptosis and autophagy, its expressi...

Descripción completa

Detalles Bibliográficos
Autores principales: Fernández Larrosa, P N, Ruíz Grecco, M, Mengual Gómez, D, Alvarado, C V, Panelo, L C, Rubio, M F, Alonso, D F, Gómez, D E, Costas, M A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4632280/
https://www.ncbi.nlm.nih.gov/pubmed/26469953
http://dx.doi.org/10.1038/cddis.2015.218
_version_ 1782398993606639616
author Fernández Larrosa, P N
Ruíz Grecco, M
Mengual Gómez, D
Alvarado, C V
Panelo, L C
Rubio, M F
Alonso, D F
Gómez, D E
Costas, M A
author_facet Fernández Larrosa, P N
Ruíz Grecco, M
Mengual Gómez, D
Alvarado, C V
Panelo, L C
Rubio, M F
Alonso, D F
Gómez, D E
Costas, M A
author_sort Fernández Larrosa, P N
collection PubMed
description Receptor-associated coactivator 3 (RAC3) is a nuclear receptor coactivator usually overexpressed in tumors that exerts oncogenic functions in the cytoplasm and the nucleus. Although as part of its oncogenic actions it was previously identified as an inhibitor of apoptosis and autophagy, its expression is required in order to preserve the pluripotency and embryonic stem cell self-renewal. In this work we investigated its role in cellular senescence. We found that RAC3 overexpression in the nontumoral HEK293 cells inhibits the premature senescence induced by hydrogen peroxide or rapamycin. The mechanism involves not only the inhibition of autophagy early induced by these stimuli in the pathway to senescence, but also the increase in levels and nuclear localization of both the cell cycle suppressors p53/p21 and the longevity promoters FOXO1A, FOXO3A and SIRT1. Furthermore, we found that RAC3 overexpression is required in order to maintain the telomerase activity. In tumoral HeLa cells its activity was inhibited by depletion of RAC3 inducing replicative senescence. Moreover, we demonstrated that in vivo, levels of RAC3 are downregulated in the liver from aged as compared with young rats, whereas the levels of p21 are increased, correlating with the expected senescent cell contents in aged tissues. A similar downregulation of RAC3 was observed in the premature and replicative senescence of human fetal WI-38 cells and premature senescence of hepatocyte HepG2 cell line. Taken together, all these results demonstrate that RAC3 is an inhibitor of senescence whose downregulation in aged individuals could be probably a tumor suppressor mechanism, avoiding the clonal expansion of risky old cells having damaged DNA.
format Online
Article
Text
id pubmed-4632280
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46322802015-11-16 RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging Fernández Larrosa, P N Ruíz Grecco, M Mengual Gómez, D Alvarado, C V Panelo, L C Rubio, M F Alonso, D F Gómez, D E Costas, M A Cell Death Dis Original Article Receptor-associated coactivator 3 (RAC3) is a nuclear receptor coactivator usually overexpressed in tumors that exerts oncogenic functions in the cytoplasm and the nucleus. Although as part of its oncogenic actions it was previously identified as an inhibitor of apoptosis and autophagy, its expression is required in order to preserve the pluripotency and embryonic stem cell self-renewal. In this work we investigated its role in cellular senescence. We found that RAC3 overexpression in the nontumoral HEK293 cells inhibits the premature senescence induced by hydrogen peroxide or rapamycin. The mechanism involves not only the inhibition of autophagy early induced by these stimuli in the pathway to senescence, but also the increase in levels and nuclear localization of both the cell cycle suppressors p53/p21 and the longevity promoters FOXO1A, FOXO3A and SIRT1. Furthermore, we found that RAC3 overexpression is required in order to maintain the telomerase activity. In tumoral HeLa cells its activity was inhibited by depletion of RAC3 inducing replicative senescence. Moreover, we demonstrated that in vivo, levels of RAC3 are downregulated in the liver from aged as compared with young rats, whereas the levels of p21 are increased, correlating with the expected senescent cell contents in aged tissues. A similar downregulation of RAC3 was observed in the premature and replicative senescence of human fetal WI-38 cells and premature senescence of hepatocyte HepG2 cell line. Taken together, all these results demonstrate that RAC3 is an inhibitor of senescence whose downregulation in aged individuals could be probably a tumor suppressor mechanism, avoiding the clonal expansion of risky old cells having damaged DNA. Nature Publishing Group 2015-10 2015-10-15 /pmc/articles/PMC4632280/ /pubmed/26469953 http://dx.doi.org/10.1038/cddis.2015.218 Text en Copyright © 2015 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Fernández Larrosa, P N
Ruíz Grecco, M
Mengual Gómez, D
Alvarado, C V
Panelo, L C
Rubio, M F
Alonso, D F
Gómez, D E
Costas, M A
RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title_full RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title_fullStr RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title_full_unstemmed RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title_short RAC3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
title_sort rac3 more than a nuclear receptor coactivator: a key inhibitor of senescence that is downregulated in aging
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4632280/
https://www.ncbi.nlm.nih.gov/pubmed/26469953
http://dx.doi.org/10.1038/cddis.2015.218
work_keys_str_mv AT fernandezlarrosapn rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT ruizgreccom rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT mengualgomezd rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT alvaradocv rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT panelolc rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT rubiomf rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT alonsodf rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT gomezde rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging
AT costasma rac3morethananuclearreceptorcoactivatorakeyinhibitorofsenescencethatisdownregulatedinaging