Abstract
The MYC transcription factor is a master regulator of diverse cellular functions and has been long considered a compelling therapeutic target because of its role in a range of human malignancies. However, pharmacologic inhibition of MYC function has proven challenging because of both the diverse mechanisms driving its aberrant expression and the challenge of disrupting protein-DNA interactions. Here, we demonstrate the rapid and potent abrogation of MYC gene transcription by representative small molecule inhibitors of the BET family of chromatin adaptors. MYC transcriptional suppression was observed in the context of the natural, chromosomally translocated, and amplified gene locus. Inhibition of BET bromodomain-promoter interactions and subsequent reduction of MYC transcript and protein levels resulted in G(1) arrest and extensive apoptosis in a variety of leukemia and lymphoma cell lines. Exogenous expression of MYC from an artificial promoter that is resistant to BET regulation significantly protected cells from cell cycle arrest and growth suppression by BET inhibitors. MYC suppression was accompanied by deregulation of the MYC transcriptome, including potent reactivation of the p21 tumor suppressor. Treatment with a BET inhibitor resulted in significant antitumor activity in xenograft models of Burkitt's lymphoma and acute myeloid leukemia. These findings demonstrate that pharmacologic inhibition of MYC is achievable through targeting BET bromodomains. Such inhibitors may have clinical utility given the widespread pathogenetic role of MYC in cancer.
MeSH Terms
Animals
Apoptosis/genetics,physiology
Azepines/pharmacology
Blotting, Western
Burkitt Lymphoma/drug therapy
Cell Cycle/physiology
Cell Line, Tumor
Cell Proliferation/drug effects
Chromatin Immunoprecipitation
DNA-Binding Proteins/antagonists & inhibitors,genetics,metabolism
Dose-Response Relationship, Drug
Flow Cytometry
Gene Expression Profiling
Gene Expression Regulation, Neoplastic/drug effects,physiology
Humans
Leukemia, Myeloid, Acute/drug therapy
Mice
Mice, Inbred NOD
Mice, SCID
Polymerase Chain Reaction
Protein Structure, Tertiary/genetics
RNA, Small Interfering/genetics
Transcription Factors/antagonists & inhibitors,genetics,metabolism
Triazoles/pharmacology
Chemicals
(+)-JQ1 compound
Azepines
DNA-Binding Proteins
MYCBP protein, human
RNA, Small Interfering
Transcription Factors
Triazoles
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Mertz Jennifer A
Constellation Pharmaceuticals, Inc, Cambridge, MA 02142, USA.
Conery Andrew R
Bryant Barbara M
Sandy Peter
Balasubramanian Srividya
Mele Deanna A
Bergeron Louise
Sims Robert J
References (22)
22 references, click to expand
-
MYC in oncogenesis and as a target for cancer therapies.
Adv Cancer Res. 2010;107:163-224
PMID: 20399964
-
The Myc oncoprotein as a therapeutic target for human cancer.
Semin Cancer Biol. 2006 Aug;16(4):318-30
PMID: 16934487
-
Translocations involving c-myc and c-myc function.
Oncogene. 2001 Sep 10;20(40):5595-610
PMID: 11607812
-
IRF4 addiction in multiple myeloma.
Nature. 2008 Jul 10;454(7201):226-31
PMID: 18568025
-
Oncogene addiction.
Cancer Res. 2008 May 1;68(9):3077-80; discussion 3080
PMID: 18451130
-
Is NF-kappaB a good target for cancer therapy? Hopes and pitfalls.
Nat Rev Drug Discov. 2009 Jan;8(1):33-40
PMID: 19116625
-
A novel Raji-Burkitt's lymphoma model for preclinical and mechanistic evaluation of CD52-targeted immunotherapeutic agents.
Clin Cancer Res. 2008 Jan 15;14(2):569-78
PMID: 18223233
-
Suppression of inflammation by a synthetic histone mimic.
Nature. 2010 Dec 23;468(7327):1119-23
PMID: 21068722
-
The double bromodomain-containing chromatin adaptor Brd4 and transcriptional regulation.
J Biol Chem. 2007 May 4;282(18):13141-5
PMID: 17329240
-
MYC regulation of a "poor-prognosis" metastatic cancer cell state.
Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3698-703
PMID: 20133671
-
The double bromodomain proteins Brd2 and Brd3 couple histone acetylation to transcription.
Mol Cell. 2008 Apr 11;30(1):51-60
PMID: 18406326
-
Brd4 recruits P-TEFb to chromosomes at late mitosis to promote G1 gene expression and cell cycle progression.
Mol Cell Biol. 2008 Feb;28(3):967-76
PMID: 18039861
-
NUT midline carcinoma.
Cancer Genet Cytogenet. 2010 Nov;203(1):16-20
PMID: 20951314
-
Myc's broad reach.
Genes Dev. 2008 Oct 15;22(20):2755-66
PMID: 18923074
-
PGC-1alpha-responsive genes involved in oxidative phosphorylation are coordinately downregulated in human diabetes.
Nat Genet. 2003 Jul;34(3):267-73
PMID: 12808457
-
Elongation by RNA polymerase II: the short and long of it.
Genes Dev. 2004 Oct 15;18(20):2437-68
PMID: 15489290
-
Gene set enrichment analysis: a knowledge-based approach for interpreting genome-wide expression profiles.
Proc Natl Acad Sci U S A. 2005 Oct 25;102(43):15545-50
PMID: 16199517
-
Selective inhibition of BET bromodomains.
Nature. 2010 Dec 23;468(7327):1067-73
PMID: 20871596
-
Myc suppression of the p21(Cip1) Cdk inhibitor influences the outcome of the p53 response to DNA damage.
Nature. 2002 Oct 17;419(6908):729-34
PMID: 12384701
-
Brd4 marks select genes on mitotic chromatin and directs postmitotic transcription.
Mol Biol Cell. 2009 Dec;20(23):4899-909
PMID: 19812244
-
Characterization of MYC translocations in multiple myeloma cell lines.
J Natl Cancer Inst Monogr. 2008;(39):25-31
PMID: 18647998
-
Negative regulation of the mammalian UV response by Myc through association with Miz-1.
Mol Cell. 2002 Sep;10(3):509-21
PMID: 12408820