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PMID: 25537515 Published · ppublish English Journal Article

Resistance to everolimus driven by epigenetic regulation of MYC in ER+ breast cancers.

Oncotarget ·Vol. 6 ·No. 4 ·2015-02-10 ·Pages 2407-20

Bihani T, Ezell SA, Ladd B, Grosskurth SE, Mazzola AM, Pietras M, Reimer C, Zinda M, Fawell S, D'Cruz CM

Abstract

Acquired resistance to PI3K/mTOR/Akt pathway inhibitors is often associated with compensatory feedback loops involving the activation of oncogenes. Here, we have generated everolimus resistance in ER+ breast cancer cells and in long-term estrogen deprived (LTED) models that mimic progression on anti-estrogens. This allowed us to uncover MYC as a driver of mTOR inhibitor resistance. We demonstrate that both everolimus resistance and acute treatment of everolimus can lead to the upregulation of MYC mRNA, protein expression and, consequently, the enrichment of MYC signatures as revealed by RNA sequencing data. Depletion of MYC resulted in resensitization to everolimus, confirming its functional importance in this setting. Furthermore, ChIP assays demonstrate that MYC upregulation in the everolimus resistant lines is mediated by increased association of the BRD4 transcription factor with the MYC gene. Finally, JQ1, a BRD4 inhibitor combined with everolimus exhibited increased tumor growth inhibition in 3D Matrigel models and an in vivo xenograft model. These data suggest that MYC plays an important role in mediating resistance to everolimus in ER+ and ER+/LTED models. Furthermore, given the regulation ofMYCby BRD4 in this setting, these data have implications for increased therapeutic potential of combining epigenetic agents with mTOR inhibitors to effectively downregulate otherwise difficult to target transcription factors such as MYC.

MeSH Terms
Animals Antineoplastic Agents/pharmacology Azepines/pharmacology Breast Neoplasms/drug therapy,genetics,metabolism Cell Cycle Proteins Cell Line, Tumor Cell Proliferation/drug effects Drug Resistance, Neoplasm/genetics Drug Synergism Epigenesis, Genetic/drug effects Everolimus/pharmacology Female Gene Expression Regulation, Neoplastic/drug effects Humans Immunoblotting MCF-7 Cells Mice, Nude Nuclear Proteins/antagonists & inhibitors,genetics,metabolism Proto-Oncogene Proteins c-myc/genetics,metabolism RNA Interference Receptors, Estrogen/metabolism Reverse Transcriptase Polymerase Chain Reaction Transcription Factors/antagonists & inhibitors,genetics,metabolism Triazoles/pharmacology Tumor Burden/drug effects Xenograft Model Antitumor Assays
Chemicals
(+)-JQ1 compound Antineoplastic Agents Azepines BRD4 protein, human Cell Cycle Proteins Nuclear Proteins Proto-Oncogene Proteins c-myc Receptors, Estrogen Transcription Factors Triazoles Everolimus
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Bihani Teeru
AstraZeneca, R&D Boston, Waltham, MA.
Ezell Scott A
AstraZeneca, R&D Boston, Waltham, MA.
Ladd Brendon
AstraZeneca, R&D Boston, Waltham, MA.
Grosskurth Shaun E
AstraZeneca, R&D Boston, Waltham, MA.
Mazzola Anne Marie
AstraZeneca, R&D Boston, Waltham, MA.
Pietras Mark
AstraZeneca, R&D Boston, Waltham, MA.
Reimer Corinne
AstraZeneca, R&D Boston, Waltham, MA.
Zinda Michael
AstraZeneca, R&D Boston, Waltham, MA.
Fawell Stephen
AstraZeneca, R&D Boston, Waltham, MA.
D'Cruz Celina M
AstraZeneca, R&D Boston, Waltham, MA.
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Article Info
Journal
Oncotarget
Abbr.
Oncotarget
ISSN
1949-2553
Published
2015-02-10
Pages
2407-20
Language
English
Region
United States
NLM ID
101532965
PMCID
PMC4385860
Subset
IM
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