Cargando…

MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points

Although the MK3 gene was originally found deleted in some cancers, it is highly expressed in others. The relevance of MK3 for oncogenesis is currently not clear. We recently reported that MK3 controls ERK activity via a negative feedback mechanism. This prompted us to investigate a potential role f...

Descripción completa

Detalles Bibliográficos
Autores principales: Prickaerts, Peggy, Niessen, Hanneke E. C., Dahlmans, Vivian E. H., Spaapen, Frank, Salvaing, Juliette, Vanhove, Jolien, Geijselaers, Claudia, Bartels, Stefanie J. J., Partouns, Iris, Neumann, Dietbert, Speel, Ernst-Jan, Takihara, Yoshihiro, Wouters, Bradly G., Voncken, Jan Willem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4390245/
https://www.ncbi.nlm.nih.gov/pubmed/25853770
http://dx.doi.org/10.1371/journal.pone.0118840
_version_ 1782365664165494784
author Prickaerts, Peggy
Niessen, Hanneke E. C.
Dahlmans, Vivian E. H.
Spaapen, Frank
Salvaing, Juliette
Vanhove, Jolien
Geijselaers, Claudia
Bartels, Stefanie J. J.
Partouns, Iris
Neumann, Dietbert
Speel, Ernst-Jan
Takihara, Yoshihiro
Wouters, Bradly G.
Voncken, Jan Willem
author_facet Prickaerts, Peggy
Niessen, Hanneke E. C.
Dahlmans, Vivian E. H.
Spaapen, Frank
Salvaing, Juliette
Vanhove, Jolien
Geijselaers, Claudia
Bartels, Stefanie J. J.
Partouns, Iris
Neumann, Dietbert
Speel, Ernst-Jan
Takihara, Yoshihiro
Wouters, Bradly G.
Voncken, Jan Willem
author_sort Prickaerts, Peggy
collection PubMed
description Although the MK3 gene was originally found deleted in some cancers, it is highly expressed in others. The relevance of MK3 for oncogenesis is currently not clear. We recently reported that MK3 controls ERK activity via a negative feedback mechanism. This prompted us to investigate a potential role for MK3 in cell proliferation. We here show that overexpression of MK3 induces a proliferative arrest in normal diploid human fibroblasts, characterized by enhanced expression of replication stress- and senescence-associated markers. Surprisingly, MK3 depletion evokes similar senescence characteristics in the fibroblast model. We previously identified MK3 as a binding partner of Polycomb Repressive Complex 1 (PRC1) proteins. In the current study we show that MK3 overexpression results in reduced cellular EZH2 levels and concomitant loss of epigenetic H3K27me3-marking and PRC1/chromatin-occupation at the CDKN2A/INK4A locus. In agreement with this, the PRC1 oncoprotein BMI1, but not the PCR2 protein EZH2, bypasses MK3-induced senescence in fibroblasts and suppresses P16(INK4A) expression. In contrast, BMI1 does not rescue the MK3 loss-of-function phenotype, suggesting the involvement of multiple different checkpoints in gain and loss of MK3 function. Notably, MK3 ablation enhances proliferation in two different cancer cells. Finally, the fibroblast model was used to evaluate the effect of potential tumorigenic MK3 driver-mutations on cell proliferation and M/SAPK signaling imbalance. Taken together, our findings support a role for MK3 in control of proliferation and replicative life-span, in part through concerted action with BMI1, and suggest that the effect of MK3 modulation or mutation on M/SAPK signaling and, ultimately, proliferation, is cell context-dependent.
format Online
Article
Text
id pubmed-4390245
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43902452015-04-21 MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points Prickaerts, Peggy Niessen, Hanneke E. C. Dahlmans, Vivian E. H. Spaapen, Frank Salvaing, Juliette Vanhove, Jolien Geijselaers, Claudia Bartels, Stefanie J. J. Partouns, Iris Neumann, Dietbert Speel, Ernst-Jan Takihara, Yoshihiro Wouters, Bradly G. Voncken, Jan Willem PLoS One Research Article Although the MK3 gene was originally found deleted in some cancers, it is highly expressed in others. The relevance of MK3 for oncogenesis is currently not clear. We recently reported that MK3 controls ERK activity via a negative feedback mechanism. This prompted us to investigate a potential role for MK3 in cell proliferation. We here show that overexpression of MK3 induces a proliferative arrest in normal diploid human fibroblasts, characterized by enhanced expression of replication stress- and senescence-associated markers. Surprisingly, MK3 depletion evokes similar senescence characteristics in the fibroblast model. We previously identified MK3 as a binding partner of Polycomb Repressive Complex 1 (PRC1) proteins. In the current study we show that MK3 overexpression results in reduced cellular EZH2 levels and concomitant loss of epigenetic H3K27me3-marking and PRC1/chromatin-occupation at the CDKN2A/INK4A locus. In agreement with this, the PRC1 oncoprotein BMI1, but not the PCR2 protein EZH2, bypasses MK3-induced senescence in fibroblasts and suppresses P16(INK4A) expression. In contrast, BMI1 does not rescue the MK3 loss-of-function phenotype, suggesting the involvement of multiple different checkpoints in gain and loss of MK3 function. Notably, MK3 ablation enhances proliferation in two different cancer cells. Finally, the fibroblast model was used to evaluate the effect of potential tumorigenic MK3 driver-mutations on cell proliferation and M/SAPK signaling imbalance. Taken together, our findings support a role for MK3 in control of proliferation and replicative life-span, in part through concerted action with BMI1, and suggest that the effect of MK3 modulation or mutation on M/SAPK signaling and, ultimately, proliferation, is cell context-dependent. Public Library of Science 2015-04-08 /pmc/articles/PMC4390245/ /pubmed/25853770 http://dx.doi.org/10.1371/journal.pone.0118840 Text en © 2015 Prickaerts 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Prickaerts, Peggy
Niessen, Hanneke E. C.
Dahlmans, Vivian E. H.
Spaapen, Frank
Salvaing, Juliette
Vanhove, Jolien
Geijselaers, Claudia
Bartels, Stefanie J. J.
Partouns, Iris
Neumann, Dietbert
Speel, Ernst-Jan
Takihara, Yoshihiro
Wouters, Bradly G.
Voncken, Jan Willem
MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title_full MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title_fullStr MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title_full_unstemmed MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title_short MK3 Modulation Affects BMI1-Dependent and Independent Cell Cycle Check-Points
title_sort mk3 modulation affects bmi1-dependent and independent cell cycle check-points
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4390245/
https://www.ncbi.nlm.nih.gov/pubmed/25853770
http://dx.doi.org/10.1371/journal.pone.0118840
work_keys_str_mv AT prickaertspeggy mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT niessenhannekeec mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT dahlmansvivianeh mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT spaapenfrank mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT salvaingjuliette mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT vanhovejolien mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT geijselaersclaudia mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT bartelsstefaniejj mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT partounsiris mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT neumanndietbert mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT speelernstjan mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT takiharayoshihiro mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT woutersbradlyg mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints
AT vonckenjanwillem mk3modulationaffectsbmi1dependentandindependentcellcyclecheckpoints