Target intelligence / Profile preview

Bromodomain and extra-terminal domain proteins 2, 3, and 4 (BRD2/BRD3/BRD4)

Target
BRD2/BRD3/BRD4
Molecular classification
Epigenetic reader, Bromodomain-containing protein, Transcription factor, Chromatin-binding protein
01

Overview

The Bromodomain and Extra-Terminal (BET) family, specifically BRD2, BRD3, and BRD4, consists of essential epigenetic reader proteins that recognize acetylated lysine residues on histone tails and various transcription factors [1, 6]. These proteins function as molecular scaffolds that recruit transcriptional regulatory complexes, most notably the positive transcription elongation factor b (P-TEFb), to chromatin to facilitate RNA polymerase II-mediated gene transcription and elongation [3, 11]. In pathological states such as cancer and chronic inflammation, BET proteins are often dysregulated, leading to the aberrant overexpression of key oncogenes like MYC and BCL2, as well as pro-inflammatory cytokines [2, 4, 10]. Small-molecule BET inhibitors are designed to competitively bind the conserved N-terminal bromodomains (BD1 and BD2), effectively displacing the BET proteins from chromatin and suppressing disease-driving transcriptional programs [7, 12]. While these inhibitors have shown significant therapeutic potential in clinical trials for malignancies like NUT midline carcinoma and acute myeloid leukemia, their development is frequently challenged by dose-limiting toxicities, particularly thrombocytopenia, which arises from the inhibition of BET-dependent megakaryocyte differentiation [9, 10, 13].

Other names
BET family proteinsBromodomain-containing protein 2Bromodomain-containing protein 3Bromodomain-containing protein 4RING3FSHMCAPHUNK1ORFX
02

Mechanism of action

Competitive inhibition of the bromodomain acetyl-lysine binding pocket, preventing the binding of BET proteins to acetylated histones and non-histone proteins, thereby disrupting the recruitment of transcriptional machinery (such as P-TEFb) and suppressing the expression of oncogenes and inflammatory genes.

03

Biological functions

Transcription elongationChromatin remodelingCell cycle regulationInflammatory response regulationGene expression regulationHematopoiesisAdipogenesis
04

Disease associations

CancerAcute myeloid leukemiaNUT midline carcinomaMultiple myelomaGliomaInflammationRheumatoid arthritisCardiovascular diseaseViral infectionDiabetes
05

Safety considerations

ThrombocytopeniaGastrointestinal toxicityFatigueAnemiaNeutropeniaOn-target transcriptional toxicity
06

Interacting drugs

Birabresib (OTX015)

7 more in the full profile.

07

Biomarkers

HEXIM1 upregulationMYC expression levelsNUT rearrangementGATA1 expressionNFE2PF4

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