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Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes

The epigenetic modifier EZH2 is part of the polycomb repressive complex that suppresses gene expression via histone methylation. Activating mutations in EZH2 are found in a subset of melanoma that contributes to disease progression by inactivating tumor suppressor genes. In this study we have target...

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Autores principales: Tiffen, Jessamy C., Gunatilake, Dilini, Gallagher, Stuart J., Gowrishankar, Kavitha, Heinemann, Anja, Cullinane, Carleen, Dutton-Regester, Ken, Pupo, Gulietta M., Strbenac, Dario, Yang, Jean Y., Madore, Jason, Mann, Graham J., Hayward, Nicholas K., McArthur, Grant A., Filipp, Fabian V., Hersey, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694971/
https://www.ncbi.nlm.nih.gov/pubmed/26304929
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author Tiffen, Jessamy C.
Gunatilake, Dilini
Gallagher, Stuart J.
Gowrishankar, Kavitha
Heinemann, Anja
Cullinane, Carleen
Dutton-Regester, Ken
Pupo, Gulietta M.
Strbenac, Dario
Yang, Jean Y.
Madore, Jason
Mann, Graham J.
Hayward, Nicholas K.
McArthur, Grant A.
Filipp, Fabian V.
Hersey, Peter
author_facet Tiffen, Jessamy C.
Gunatilake, Dilini
Gallagher, Stuart J.
Gowrishankar, Kavitha
Heinemann, Anja
Cullinane, Carleen
Dutton-Regester, Ken
Pupo, Gulietta M.
Strbenac, Dario
Yang, Jean Y.
Madore, Jason
Mann, Graham J.
Hayward, Nicholas K.
McArthur, Grant A.
Filipp, Fabian V.
Hersey, Peter
author_sort Tiffen, Jessamy C.
collection PubMed
description The epigenetic modifier EZH2 is part of the polycomb repressive complex that suppresses gene expression via histone methylation. Activating mutations in EZH2 are found in a subset of melanoma that contributes to disease progression by inactivating tumor suppressor genes. In this study we have targeted EZH2 with a specific inhibitor (GSK126) or depleted EZH2 protein by stable shRNA knockdown. We show that inhibition of EZH2 has potent effects on the growth of both wild-type and EZH2 mutant human melanoma in vitro particularly in cell lines harboring the EZH2(Y646) activating mutation. This was associated with cell cycle arrest, reduced proliferative capacity in both 2D and 3D culture systems, and induction of apoptosis. The latter was caspase independent and mediated by the release of apoptosis inducing factor (AIFM1) from mitochondria. Gene expression arrays showed that several well characterized tumor suppressor genes were reactivated by EZH2 inhibition. This included activating transcription factor 3 (ATF3) that was validated as an EZH2 target gene by ChIP-qPCR. These results emphasize a critical role for EZH2 in the proliferation and viability of melanoma and highlight the potential for targeted therapy against EZH2 in treatment of patients with melanoma.
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spelling pubmed-46949712016-01-20 Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes Tiffen, Jessamy C. Gunatilake, Dilini Gallagher, Stuart J. Gowrishankar, Kavitha Heinemann, Anja Cullinane, Carleen Dutton-Regester, Ken Pupo, Gulietta M. Strbenac, Dario Yang, Jean Y. Madore, Jason Mann, Graham J. Hayward, Nicholas K. McArthur, Grant A. Filipp, Fabian V. Hersey, Peter Oncotarget Research Paper The epigenetic modifier EZH2 is part of the polycomb repressive complex that suppresses gene expression via histone methylation. Activating mutations in EZH2 are found in a subset of melanoma that contributes to disease progression by inactivating tumor suppressor genes. In this study we have targeted EZH2 with a specific inhibitor (GSK126) or depleted EZH2 protein by stable shRNA knockdown. We show that inhibition of EZH2 has potent effects on the growth of both wild-type and EZH2 mutant human melanoma in vitro particularly in cell lines harboring the EZH2(Y646) activating mutation. This was associated with cell cycle arrest, reduced proliferative capacity in both 2D and 3D culture systems, and induction of apoptosis. The latter was caspase independent and mediated by the release of apoptosis inducing factor (AIFM1) from mitochondria. Gene expression arrays showed that several well characterized tumor suppressor genes were reactivated by EZH2 inhibition. This included activating transcription factor 3 (ATF3) that was validated as an EZH2 target gene by ChIP-qPCR. These results emphasize a critical role for EZH2 in the proliferation and viability of melanoma and highlight the potential for targeted therapy against EZH2 in treatment of patients with melanoma. Impact Journals LLC 2015-08-12 /pmc/articles/PMC4694971/ /pubmed/26304929 Text en Copyright: © 2015 Tiffen et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Tiffen, Jessamy C.
Gunatilake, Dilini
Gallagher, Stuart J.
Gowrishankar, Kavitha
Heinemann, Anja
Cullinane, Carleen
Dutton-Regester, Ken
Pupo, Gulietta M.
Strbenac, Dario
Yang, Jean Y.
Madore, Jason
Mann, Graham J.
Hayward, Nicholas K.
McArthur, Grant A.
Filipp, Fabian V.
Hersey, Peter
Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title_full Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title_fullStr Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title_full_unstemmed Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title_short Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
title_sort targeting activating mutations of ezh2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694971/
https://www.ncbi.nlm.nih.gov/pubmed/26304929
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