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Evaluation of the Small-molecule BRD4 Degrader CFT-2718 in Small-cell Lung Cancer and Pancreatic Cancer Models
Danlin Sun1,2, Anna S Nikonova1, Peishan Zhang1,2
1Program in Molecular Therapeutics, Fox Chase Cancer Center, Philadelphia, Pennsylvania.
Abstract:
Targeted, catalytic degradation of oncoproteins using heterobifunctional small molecules is an attractive modality, particularly for hematologic malignancies, which are often initiated by aberrant transcription factors and are challenging to drug with inhibitors. BRD4, a member of the bromodomain and extraterminal family, is a core transcriptional and epigenetic regulator that recruits the P-TEFb complex, which includes Cdk9 and cyclin T, to RNA polymerase II (pol II). Together, BRD4 and CDK9 phosphorylate serine 2 (pSer2) of heptad repeats in the C-terminal domain of RPB1, the large subunit of pol II, promote transcriptional elongation. Small-molecule degraders of BRD4 have shown encouraging efficacy in preclinical models for several tumor types but less efficacy in other cancers including small-cell lung cancer (SCLC) and pancreatic cancer. Here, we evaluated CFT-2718, a new BRD4-targeting degrader with enhanced catalytic activity and in vivo properties. In vivo, CFT-2718 has significantly greater efficacy than the CDK9 inhibitor dinaciclib in reducing growth of the LX-36 SCLC patient-derived xenograft (PDX) model and performed comparably to dinaciclib in limiting growth of the PNX-001 pancreatic PDX model. In vitro, CFT-2718 reduced cell viability in four SCLC and two pancreatic cancer models. In SCLC models, this activity significantly exceeded that of dinaciclib; furthermore, CFT-2718 selectively increased the expression of cleaved PARP, an indicator of apoptosis. CFT-2718 caused rapid BRD4 degradation and reduced levels of total and pSer2 RPB1 protein. These and other findings suggest that BRD-mediated transcriptional suppression merits further exploration in the setting of SCLC.
Insights
A new BRD4 degrader, CFT-2718, shows promise in treating small-cell lung cancer (SCLC) and pancreatic cancer by effectively degrading BRD4 and suppressing tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Targeted protein degradation is a promising cancer therapy approach.
- BRD4 is a key regulator of transcription implicated in various cancers.
- Existing BRD4 degraders show variable efficacy in different cancer types, including small-cell lung cancer (SCLC) and pancreatic cancer.
Purpose of the Study:
- To evaluate the efficacy of CFT-2718, a novel BRD4 degrader with enhanced properties, in preclinical models of SCLC and pancreatic cancer.
Main Methods:
- In vivo efficacy studies using patient-derived xenograft (PDX) models of SCLC and pancreatic cancer.
- In vitro cell viability assays in SCLC and pancreatic cancer cell lines.
- Assessment of molecular markers including BRD4 degradation, apoptosis (cleaved PARP), and RNA polymerase II (pol II) phosphorylation (pSer2 RPB1).
Main Results:
- CFT-2718 demonstrated superior efficacy compared to dinaciclib in reducing SCLC tumor growth in a PDX model.
- CFT-2718 showed comparable efficacy to dinaciclib in a pancreatic cancer PDX model.
- In vitro, CFT-2718 reduced cell viability in SCLC and pancreatic cancer models, with significantly greater activity in SCLC models.
- CFT-2718 induced rapid BRD4 degradation, increased apoptosis, and reduced pSer2 RPB1 levels.
Conclusions:
- CFT-2718 exhibits potent anti-cancer activity, particularly in SCLC models.
- BRD4 degradation is a viable strategy for targeting SCLC and potentially pancreatic cancer.
- Further investigation of BRD4-mediated transcriptional suppression in SCLC is warranted.

