Discovery of Monovalent Direct Degraders of BRD4 That Act Via the Recruitment of DCAF11.


Journal

Molecular cancer therapeutics
ISSN: 1538-8514
Titre abrégé: Mol Cancer Ther
Pays: United States
ID NLM: 101132535

Informations de publication

Date de publication:
22 Jun 2024
Historique:
accepted: 18 06 2024
received: 26 03 2024
revised: 13 05 2024
medline: 22 6 2024
pubmed: 22 6 2024
entrez: 22 6 2024
Statut: aheadofprint

Résumé

Targeted protein degradation (TPD) using the ubiquitin proteasome system (UPS) is a rapidly growing drug discovery modality to eliminate pathogenic proteins. Strategies for TPD have focused on heterobifunctional degraders that often suffer from poor drug-like properties, and molecular glues that rely on serendipitous discovery. Monovalent "direct" degraders represent an alternative approach, in which small molecules bind to a target protein and induce degradation of that protein through the recruitment of an E3 ligase complex. Using an ultra-high throughput cell-based screening platform, degraders of the bromodomain extra-terminal (BET) protein BRD4 were identified and optimized to yield a lead compound, PLX-3618. In this paper, we demonstrate that PLX-3618 elicited UPS-mediated selective degradation of BRD4, resulting in potent anti-tumor activity in vitro and in vivo. Characterization of the degradation mechanism identified DCAF11 as the E3 ligase required for PLX-3618-mediated degradation of BRD4. Protein-protein interaction studies verified a BRD4:PLX-3618:DCAF11 ternary complex, and mutational studies provided further insights into the DCAF11-mediated degradation mechanism. Collectively, these results demonstrate the discovery and characterization of a novel small molecule that selectively degrades BRD4 through the recruitment of the E3 substrate receptor, DCAF11, and promotes potent anti-tumor activity in vivo.

Identifiants

pubmed: 38907538
pii: 746074
doi: 10.1158/1535-7163.MCT-24-0219
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Gregory S Parker (GS)

Plexium, San Diego, CA, United States.

Julia I Toth (JI)

Plexium, San Diego, CA, United States.

Sarah Fish (S)

Plexium, San Diego, CA, United States.

Gabrielle A Blanco (GA)

Plexium, San Diego, CA, United States.

Taylor Kampert (T)

Plexium, San Diego, CA, United States.

Xiaoming Li (X)

Halozyme Therapeutics, Inc., United States.

Linette Yang (L)

Plexium, San Diego, CA, United States.

Craig R Stumpf (CR)

Plexium, San Diego, CA, United States.

Kenneth Steadman (K)

Plexium, San Diego, CA, United States.

Aleksandar Jamborcic (A)

Plexium, San Diego, CA, United States.

Stephen Chien (S)

Plexium, San Diego, CA, United States.

Elizabeth Daniele (E)

Plexium, San Diego, CA, United States.

Alejandro Dearie (A)

Plexium, San Diego, CA, United States.

Geoffray Leriche (G)

Plexium, San Diego, CA, United States.

Simon Bailey (S)

Plexium, San Diego, CA, United States.

Peggy A Thompson (PA)

Plexium, San Diego, CA, United States.

Classifications MeSH