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1.
Leukemia ; 33(1): 52-63, 2019 01.
Article in English | MEDLINE | ID: mdl-29884904

ABSTRACT

NR4As are AML tumor suppressors that are frequently silenced in human acute myeloid leukemia (AML). Despite their potential as novel targets for therapeutic intervention, mechanisms of NR4A silencing and strategies for their reactivation remain poorly defined. Here we show that NR4A silencing in AML occurs through blockade of transcriptional elongation rather than epigenetic promoter silencing. By intersection of NR4A-regulated gene signatures captured upon acute, exogenous expression of NR4As in human AML cells with in silico chemical genomics screening, we identify several FDA-approved drugs including dihydroergotamine (DHE) that reactivate NR4A expression and regulate NR4A-dependent gene signatures. We show that DHE induces NR4A expression via recruitment of the super elongation complex to enable elongation of NR4A promoter paused RNA polymerase II. Finally, DHE exhibits AML selective NR4A-dependent anti-leukemic activity in cytogenetically distinct human AML cells in vitro and delays AML progression in mice revealing its potential as a novel therapeutic agent in AML.


Subject(s)
Dihydroergotamine/pharmacology , Drug Delivery Systems/methods , Gene Expression Regulation, Neoplastic/drug effects , Leukemia, Myeloid, Acute/drug therapy , Nuclear Receptor Subfamily 4, Group A, Member 1/metabolism , Vasoconstrictor Agents/pharmacology , Animals , Apoptosis , Cell Proliferation , Epigenesis, Genetic , Female , Humans , Leukemia, Myeloid, Acute/genetics , Leukemia, Myeloid, Acute/metabolism , Leukemia, Myeloid, Acute/pathology , Mice , Mice, Inbred NOD , Mice, SCID , Nuclear Receptor Subfamily 4, Group A, Member 1/genetics , Transcriptome , Tumor Cells, Cultured , Xenograft Model Antitumor Assays
2.
PLoS One ; 11(3): e0150450, 2016.
Article in English | MEDLINE | ID: mdl-26938745

ABSTRACT

Members of the NR4A subfamily of orphan nuclear receptors regulate cell fate decisions via both genomic and non-genomic mechanisms in a cell and tissue selective manner. NR4As play a key role in maintenance of hematopoietic stem cell homeostasis and are critical tumor suppressors of acute myeloid leukemia (AML). Expression of NR4As is broadly silenced in leukemia initiating cell enriched populations from human patients relative to normal hematopoietic stem/progenitor cells. Rescue of NR4A expression in human AML cells inhibits proliferation and reprograms AML gene signatures via transcriptional mechanisms that remain to be elucidated. By intersecting an acutely regulated NR4A1 dependent transcriptional profile with genome wide NR4A binding distribution, we now identify an NR4A targetome of 685 genes that are directly regulated by NR4A1. We show that NR4As regulate gene transcription primarily through interaction with distal enhancers that are co-enriched for NR4A1 and ETS transcription factor motifs. Using a subset of NR4A activated genes, we demonstrate that the ETS factors ERG and FLI-1 are required for activation of NR4A bound enhancers and NR4A target gene induction. NR4A1 dependent recruitment of ERG and FLI-1 promotes binding of p300 histone acetyltransferase to epigenetically activate NR4A bound enhancers via acetylation at histone H3K27. These findings disclose novel epigenetic mechanisms by which NR4As and ETS factors cooperate to drive NR4A dependent gene transcription in human AML cells.


Subject(s)
Epigenesis, Genetic , Leukemia, Myeloid, Acute/genetics , Nuclear Receptor Subfamily 4, Group A, Member 1/genetics , Proto-Oncogene Protein c-ets-1/genetics , Amino Acid Motifs , Cell Lineage , Cell Proliferation , Chromatin Immunoprecipitation , Chromosome Mapping , Computational Biology , Gene Expression Regulation , Hematopoietic Stem Cells/cytology , Histones/chemistry , Humans , Oligonucleotide Array Sequence Analysis , Plasmids/metabolism , Protein Binding , Proto-Oncogene Protein c-fli-1/genetics , RNA, Messenger/metabolism , RNA, Small Interfering/metabolism , Real-Time Polymerase Chain Reaction , Transcription, Genetic , p300-CBP Transcription Factors/metabolism
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