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RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance

Ovarian cancer is the most deadly gynecological cancer and unlike most other neoplasms, survival rates for ovarian cancer have not significantly improved in recent decades. We show that RAD6, an ubiquitin conjugating enzyme is significantly overexpressed in ovarian tumors and its expression increase...

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Autores principales: Somasagara, Ranganatha R., Spencer, Sebastian M., Tripathi, Kaushlendra, Clark, David W., Mani, Chinnadurai, da Silva, Luciana Madeira, Scalici, Jennifer, Kothayer, Hend, Westwell, Andrew D., Rocconi, Rodney P., Palle, Komaraiah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5709226/
https://www.ncbi.nlm.nih.gov/pubmed/28806395
http://dx.doi.org/10.1038/onc.2017.279
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author Somasagara, Ranganatha R.
Spencer, Sebastian M.
Tripathi, Kaushlendra
Clark, David W.
Mani, Chinnadurai
da Silva, Luciana Madeira
Scalici, Jennifer
Kothayer, Hend
Westwell, Andrew D.
Rocconi, Rodney P.
Palle, Komaraiah
author_facet Somasagara, Ranganatha R.
Spencer, Sebastian M.
Tripathi, Kaushlendra
Clark, David W.
Mani, Chinnadurai
da Silva, Luciana Madeira
Scalici, Jennifer
Kothayer, Hend
Westwell, Andrew D.
Rocconi, Rodney P.
Palle, Komaraiah
author_sort Somasagara, Ranganatha R.
collection PubMed
description Ovarian cancer is the most deadly gynecological cancer and unlike most other neoplasms, survival rates for ovarian cancer have not significantly improved in recent decades. We show that RAD6, an ubiquitin conjugating enzyme is significantly overexpressed in ovarian tumors and its expression increases in response to carboplatin chemotherapy. RAD6 expression correlated strongly with acquired chemoresistance and malignant behavior of OC cells, expression of stem cell genes and poor prognosis of OC patients suggesting an important role for RAD6 in ovarian tumor progression. Upregulated RAD6 enhances DNA damage tolerance and repair efficiency of OC cells and promotes their survival. Increased RAD6 levels cause H2B ubiquitination-mediated epigenetic changes that stimulate transcription of stem cell genes, including ALDH1A1 and SOX2, leading to a cancer stem cell phenotype, which is implicated in disease recurrence and metastasis. Downregulation of RAD6 or its inhibition using a small molecule inhibitor attenuated DNA repair signaling and expression of CSC markers and sensitized chemoresistant OC cells to carboplatin. Together, these results suggest that RAD6 could be a therapeutic target to prevent and treat acquired chemoresistance and disease recurrence in OC and enhance the efficacy of standard chemotherapy.
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spelling pubmed-57092262018-02-14 RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance Somasagara, Ranganatha R. Spencer, Sebastian M. Tripathi, Kaushlendra Clark, David W. Mani, Chinnadurai da Silva, Luciana Madeira Scalici, Jennifer Kothayer, Hend Westwell, Andrew D. Rocconi, Rodney P. Palle, Komaraiah Oncogene Article Ovarian cancer is the most deadly gynecological cancer and unlike most other neoplasms, survival rates for ovarian cancer have not significantly improved in recent decades. We show that RAD6, an ubiquitin conjugating enzyme is significantly overexpressed in ovarian tumors and its expression increases in response to carboplatin chemotherapy. RAD6 expression correlated strongly with acquired chemoresistance and malignant behavior of OC cells, expression of stem cell genes and poor prognosis of OC patients suggesting an important role for RAD6 in ovarian tumor progression. Upregulated RAD6 enhances DNA damage tolerance and repair efficiency of OC cells and promotes their survival. Increased RAD6 levels cause H2B ubiquitination-mediated epigenetic changes that stimulate transcription of stem cell genes, including ALDH1A1 and SOX2, leading to a cancer stem cell phenotype, which is implicated in disease recurrence and metastasis. Downregulation of RAD6 or its inhibition using a small molecule inhibitor attenuated DNA repair signaling and expression of CSC markers and sensitized chemoresistant OC cells to carboplatin. Together, these results suggest that RAD6 could be a therapeutic target to prevent and treat acquired chemoresistance and disease recurrence in OC and enhance the efficacy of standard chemotherapy. 2017-08-14 2017-11-30 /pmc/articles/PMC5709226/ /pubmed/28806395 http://dx.doi.org/10.1038/onc.2017.279 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Somasagara, Ranganatha R.
Spencer, Sebastian M.
Tripathi, Kaushlendra
Clark, David W.
Mani, Chinnadurai
da Silva, Luciana Madeira
Scalici, Jennifer
Kothayer, Hend
Westwell, Andrew D.
Rocconi, Rodney P.
Palle, Komaraiah
RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title_full RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title_fullStr RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title_full_unstemmed RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title_short RAD6 promotes DNA repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
title_sort rad6 promotes dna repair and stem cell signaling in ovarian cancer and is a promising therapeutic target to prevent and treat acquired chemoresistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5709226/
https://www.ncbi.nlm.nih.gov/pubmed/28806395
http://dx.doi.org/10.1038/onc.2017.279
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