PLoS ONE · 2014 · 61 citations · 38 references
Differential Jq1 SensitivityImmunologyCancer BiologyTumor BiologyTranscriptional RegulationCell RegulationCancer Cell BiologyMyc ExpressionMyc TranscriptionCell SignalingMolecular OncologyCancer ResearchCancer CellsCancer GeneticsGene ExpressionCell BiologyCancer GenomicsTumor SuppressorSystems BiologyMedicine
High level MYC expression is associated with almost all human cancers. JQ1, a chemical compound that inhibits MYC expression is therapeutically effective in preclinical animal models in midline carcinoma, and Burkitt's lymphoma (BL). Here we show that JQ1 does not inhibit MYC expression to a similar extent in all tumor cells. The BL cells showed a ∼90% decrease in MYC transcription upon treatment with JQ1, however, no corresponding reduction was seen in several non-BL cells. Molecularly, these differences appear due to requirements of Brd4, the most active version of the Positive Transcription Elongation Factor B (P-TEFb) within the Super Elongation Complex (SEC), and transcription factors such as Gdown1, and MED26 and also other unknown cell specific factors. Our study demonstrates that the regulation of high levels of MYC expression in different cancer cells is driven by unique regulatory mechanisms and that such exclusive regulatory signatures in each cancer cells could be employed for targeted therapeutics.
38
Selective inhibition of BET bromodomains
P. Filippakopoulos, Jun Qi, S. Picaud et al. · Nature · 2010 · 4.2K citations · Full text
BET Bromodomain Inhibition as a Therapeutic Strategy to Target c-Myc
Jake Delmore, Ghayas C. Issa, Madeleine E. Lemieux et al. · Cell · 2011 · 2.8K citations · Full text
Suppression of inflammation by a synthetic histone mimic
Edwige Nicodème, Kate L. Jeffrey, Uwe Schaefer et al. · Nature · 2010 · 1.6K citations · Full text
Transcriptional Amplification in Tumor Cells with Elevated c-Myc
Charles Y. Lin, Jakob Lovén, Peter B. Rahl et al. · Cell · 2012 · 1.5K citations · Full text