PROTAC BRD4 Degrader-14 is a von Hippel-Lindau-recruiting BRD4 degrader that connects a BRD4 bromodomain ligand with a VHL ligand. Public product summaries describe activity against both principal BRD4 bromodomains and report potent BRD4 degradation in prostate cancer cell models, while not providing a complete high-resolution ternary-complex binding-site description. The BRD4-recognition element engages bromodomain acetyl-lysine reader pockets, whereas the VHL ligand recruits the VHL ubiquitin-ligase complex. Through the linker, the molecule positions BRD4 for proximity-induced ubiquitination and proteasomal destruction. This compound is useful for studying BRD4 dependency, VHL-mediated BET degradation, bromodomain-selective engagement, transcriptional suppression after target depletion, and comparative analysis of related BRD4 degraders that differ in linker geometry or ligase-recruiting configuration. It can also support structure–activity studies focused on epigenetic reader degradation.
* For research and manufacturing use only. Not for human or clinical use.
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Target: Targets BET bromodomain proteins, especially BRD4, BRD3, and BRD2 for experimental targeted protein degradation studies.
Binding Site: Binds the BET bromodomain acetyl-lysine pocket and recruited E3 ligase ligand site to support productive ternary complex formation.
Mechanism of Action: PROTAC BRD4 Degrader-14 is designed for use in PROTAC or targeted protein degradation experiments directed toward BET bromodomain proteins, especially BRD4, BRD3, and BRD2. The bifunctional molecule links a target-recognition element to cereblon, promoting proximity between the protein of interest and ubiquitination machinery. Productive ternary-complex formation can drive polyubiquitination and proteasome-dependent target depletion, allowing researchers to compare pharmacological inhibition with protein removal. It is suitable for evaluating degradation potency, kinetics, pathway selectivity, and downstream signaling consequences in engineered or disease-relevant cellular models.
Applications• BRD4 PROTAC-Mediated Degradation: PROTAC BRD4 Degrader-14 is designed for efficient proteasomal degradation of the bromodomain-containing protein BRD4, a key transcriptional regulator. This application is pivotal for studying BRD4's role in transcriptional regulation and epigenetic modifications, offering insights into potential therapeutic targets for diseases involving dysregulated gene expression.
• Chromatin Remodeling Studies: By facilitating the targeted degradation of BRD4, this PROTAC allows researchers to explore the dynamic role of BRD4 in chromatin remodeling. It helps delineate the mechanistic pathways of chromatin accessibility and transcriptional activation, crucial for understanding gene expression control in various cellular contexts.
• Cancer Research and Epigenetics: PROTAC BRD4 Degrader-14 serves as a powerful tool in cancer research, particularly in investigating the epigenetic landscape of cancer cells. By degrading BRD4, researchers can dissect its contribution to oncogenic transcriptional programs, potentially unveiling novel intervention points for cancer therapy.
• Drug Resistance Mechanism Exploration: This PROTAC product aids in studying drug resistance mechanisms by selectively degrading BRD4, a protein often implicated in resistance pathways. It enables the identification of compensatory survival pathways, providing a deeper understanding of resistance in cancer treatment and aiding in the development of more effective therapeutic strategies.
* Our calculator is based on the following equation:
Concentration (start) x Volume (start) = Concentration (final) x Volume (final)
It is commonly abbreviated as: C1V1 = C2V2
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