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Updated: Jan 3, 2026

Chemical Inactivation of the E3 Ubiquitin Ligase Cereblon by Pomalidomide-based Homo-PROTACs
Published on: May 15, 2019
Targeting bromodomain-containing protein 4 (BRD4) inhibits MYC expression in colorectal cancer cells
Abstract:
The transcriptional regulator BRD4 has been shown to be important for the expression of several oncogenes including MYC. Inhibiting of BRD4 has broad antiproliferative activity in different cancer cell types. The small molecule JQ1 blocks the interaction of BRD4 with acetylated histones leading to transcriptional modulation. Depleting BRD4 via engineered bifunctional small molecules named PROTACs (proteolysis targeting chimeras) represents the next-generation approach to JQ1-mediated BRD4 inhibition. PROTACs trigger BRD4 for proteasomale degradation by recruiting E3 ligases. The aim of this study was therefore to validate the importance of BRD4 as a relevant target in colorectal cancer (CRC) cells and to compare the efficacy of BRD4 inhibition with BRD4 degradation on downregulating MYC expression. JQ1 induced a downregulation of both MYC mRNA and MYC protein associated with an antiproliferative phenotype in CRC cells. dBET1 and MZ1 induced degradation of BRD4 followed by a reduction in MYC expression and CRC cell proliferation. In SW480 cells, where dBET1 failed, we found significantly lower levels of the E3 ligase cereblon, which is essential for dBET1-induced BRD4 degradation. To gain mechanistic insight into the unresponsiveness to dBET1, we generated dBET1-resistant LS174t cells and found a strong downregulation of cereblon protein. These findings suggest that inhibition of BRD4 by JQ1 and degradation of BRD4 by dBET1 and MZ1 are powerful tools for reducing MYC expression and CRC cell proliferation. In addition, downregulation of cereblon may be an important mechanism for developing dBET1 resistance, which can be evaded by incubating dBET1-resistant cells with JQ1 or MZ1.
Insights
Bromodomain 4 (BRD4) inhibition and degradation effectively reduce MYC expression and colorectal cancer cell proliferation. Resistance to BRD4 degradation may involve reduced cereblon levels, but can be overcome with alternative inhibitors.
Area of Science:
- Molecular Biology
- Cancer Research
- Drug Discovery
Background:
- The transcriptional regulator BRD4 is crucial for oncogene expression, including MYC.
- BRD4 inhibition shows broad antiproliferative activity in cancer cells.
- JQ1 inhibits BRD4 by blocking its interaction with acetylated histones.
- Proteolysis targeting chimeras (PROTACs) offer next-generation BRD4 inhibition via targeted degradation.
Purpose of the Study:
- To validate BRD4 as a target in colorectal cancer (CRC).
- To compare the efficacy of BRD4 inhibition versus degradation on MYC expression.
- To investigate mechanisms of resistance to BRD4-targeting drugs.
Main Methods:
- Treatment of CRC cells with JQ1 (BRD4 inhibitor) and PROTACs (dBET1, MZ1) for BRD4 degradation.
- Assessment of MYC mRNA and protein levels.
- Evaluation of cell proliferation.
- Analysis of E3 ligase cereblon levels in resistant cell lines.
Main Results:
- JQ1 downregulated MYC and inhibited CRC cell proliferation.
- dBET1 and MZ1 induced BRD4 degradation, reducing MYC and proliferation.
- Lower cereblon levels correlated with unresponsiveness to dBET1 in SW480 cells.
- Generated dBET1-resistant cells showed downregulated cereblon.
Conclusions:
- BRD4 inhibition and degradation are effective strategies against CRC by reducing MYC.
- Cereblon downregulation is a potential mechanism for resistance to BRD4-degrading PROTACs.
- Resistance to BRD4 degradation can be overcome using JQ1 or MZ1.
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