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Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells

Progestins have long been used clinically for the treatment of endometrial cancers, however, the response rates to progestin therapy vary and the molecular mechanisms behind progestin insensitivity are poorly understood. We hypothesized that in PTEN mutated endometrial cancers, hyperactive Akt signa...

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Autores principales: Lee, Irene I., Maniar, Kruti, Lydon, John P., Kim, J. Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5031502/
https://www.ncbi.nlm.nih.gov/pubmed/26996671
http://dx.doi.org/10.1038/onc.2016.56
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author Lee, Irene I.
Maniar, Kruti
Lydon, John P.
Kim, J. Julie
author_facet Lee, Irene I.
Maniar, Kruti
Lydon, John P.
Kim, J. Julie
author_sort Lee, Irene I.
collection PubMed
description Progestins have long been used clinically for the treatment of endometrial cancers, however, the response rates to progestin therapy vary and the molecular mechanisms behind progestin insensitivity are poorly understood. We hypothesized that in PTEN mutated endometrial cancers, hyperactive Akt signaling downregulates Progesterone Receptor B (PRB) transcriptional activity, leading to overall impaired progestin responses. We report that inhibition of Akt with the Akt inhibitor, MK-2206 (MK), in conjunction with progestin (R5020) treatment, is sufficient to upregulate a subset of PRB target genes in Ishikawa cells stably expressing PRB (PRB-Ishikawa). Through gene ontology analysis of Akt-regulated PRB target genes, angiogenesis was found to be the principle process regulated by Akt-PRB. To further interrogate the mechanism by which Akt modulates PRB transcriptional activity, ChIP-Mass Spectrometry was performed to identify potential cofactors that differentially interact with PRB in the presence of the R5020 and MK+R5020. 14-3-3σ was identified as a protein enriched in the MK+R5020 dataset, and it was demonstrated that 14-3-3σ is required for the upregulation in PRB target gene expression following inhibition of Akt. In order to determine the ramifications of MK+R5020 treatment on angiogenesis, in vitro assays were performed and combinatorial MK+R5020 treatment significantly decreased endothelial cell invasion and tube formation more than MK or R5020 treatment alone. Furthermore, we found that combinatorial MK-2206+Progesterone treatments decreased angiogenesis and proliferation in the Pten(d/d) conditional mouse model of endometrial cancer. Taken together, these findings suggest that a combinatorial therapeutic approach utilizing Akt inhibitors with progestins may improve the efficacy of progestin therapy for the treatment of endometrial cancer.
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spelling pubmed-50315022016-09-30 Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells Lee, Irene I. Maniar, Kruti Lydon, John P. Kim, J. Julie Oncogene Article Progestins have long been used clinically for the treatment of endometrial cancers, however, the response rates to progestin therapy vary and the molecular mechanisms behind progestin insensitivity are poorly understood. We hypothesized that in PTEN mutated endometrial cancers, hyperactive Akt signaling downregulates Progesterone Receptor B (PRB) transcriptional activity, leading to overall impaired progestin responses. We report that inhibition of Akt with the Akt inhibitor, MK-2206 (MK), in conjunction with progestin (R5020) treatment, is sufficient to upregulate a subset of PRB target genes in Ishikawa cells stably expressing PRB (PRB-Ishikawa). Through gene ontology analysis of Akt-regulated PRB target genes, angiogenesis was found to be the principle process regulated by Akt-PRB. To further interrogate the mechanism by which Akt modulates PRB transcriptional activity, ChIP-Mass Spectrometry was performed to identify potential cofactors that differentially interact with PRB in the presence of the R5020 and MK+R5020. 14-3-3σ was identified as a protein enriched in the MK+R5020 dataset, and it was demonstrated that 14-3-3σ is required for the upregulation in PRB target gene expression following inhibition of Akt. In order to determine the ramifications of MK+R5020 treatment on angiogenesis, in vitro assays were performed and combinatorial MK+R5020 treatment significantly decreased endothelial cell invasion and tube formation more than MK or R5020 treatment alone. Furthermore, we found that combinatorial MK-2206+Progesterone treatments decreased angiogenesis and proliferation in the Pten(d/d) conditional mouse model of endometrial cancer. Taken together, these findings suggest that a combinatorial therapeutic approach utilizing Akt inhibitors with progestins may improve the efficacy of progestin therapy for the treatment of endometrial cancer. 2016-03-21 2016-09-29 /pmc/articles/PMC5031502/ /pubmed/26996671 http://dx.doi.org/10.1038/onc.2016.56 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
Lee, Irene I.
Maniar, Kruti
Lydon, John P.
Kim, J. Julie
Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title_full Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title_fullStr Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title_full_unstemmed Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title_short Akt regulates Progesterone Receptor B dependent transcription and angiogenesis in endometrial cancer cells
title_sort akt regulates progesterone receptor b dependent transcription and angiogenesis in endometrial cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5031502/
https://www.ncbi.nlm.nih.gov/pubmed/26996671
http://dx.doi.org/10.1038/onc.2016.56
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