Targeting Transcriptional Coactivators p300/CBP: Small-Molecule Inhibitors or Bifunctional Proximity-Inducing Modalities?

Abstract p300 and its paralog CBP are multifunctional transcriptional coactivators that play central roles in epigenetic regulation by integrating diverse signaling pathways. Dysregulation of p300/CBP is closely linked to cancer and other diseases, rendering them attractive therapeutic targets. Several small-molecule inhibitors of p300/CBP, including CCS1477 and FT-7051, have advanced into clinical trials for cancer treatment. In this perspective, we provide a comprehensive overview of small-molecule inhibitors targeting the bromodomain and catalytic domain of p300/CBP, with particular emphasis on their optimization processes. Furthermore, the landscape of p300/CBP-targeted drug discovery has evolved from conventional inhibitors to sophisticated bifunctional proximity-inducing modalities. We discuss the transformative impact of bifunctional molecules targeting p300/CBP, including PROTACs, AceTAGs, RIPTACs, DALTACs, and TCIPs. Finally, we discuss current limitations and challenges and offer perspectives on future directions. This perspective aims to provide a strategic roadmap for the development of next-generation therapeutics targeting p300/CBP.

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Journal
Journal of Medicinal Chemistry
Published
2026-09-30
DOI
https://doi.org/10.1021/acs.jmedchem.6c01970
Primary Topic
Protein Degradation and Inhibitors
Type
article
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Targeting Transcriptional Coactivators p300/CBP: Small-Molecule Inhibitors or Bifunctional Proximity-Inducing Modalities?

Yingxia Li, Zonglong Chen, Xun Huang
Journal of Medicinal Chemistry
Protein Degradation and Inhibitors
article

Targeting Transcriptional Coactivators p300/CBP: Small-Molecule Inhibitors or Bifunctional Proximity-Inducing Modalities?

Yingxia Li, Zonglong Chen, Xun Huang
article en

Abstract

Abstract p300 and its paralog CBP are multifunctional transcriptional coactivators that play central roles in epigenetic regulation by integrating diverse signaling pathways. Dysregulation of p300/CBP is closely linked to cancer and other diseases, rendering them attractive therapeutic targets. Several small-molecule inhibitors of p300/CBP, including CCS1477 and FT-7051, have advanced into clinical trials for cancer treatment. In this perspective, we provide a comprehensive overview of small-molecule inhibitors targeting the bromodomain and catalytic domain of p300/CBP, with particular emphasis on their optimization processes. Furthermore, the landscape of p300/CBP-targeted drug discovery has evolved from conventional inhibitors to sophisticated bifunctional proximity-inducing modalities. We discuss the transformative impact of bifunctional molecules targeting p300/CBP, including PROTACs, AceTAGs, RIPTACs, DALTACs, and TCIPs. Finally, we discuss current limitations and challenges and offer perspectives on future directions. This perspective aims to provide a strategic roadmap for the development of next-generation therapeutics targeting p300/CBP.

Journal of Medicinal Chemistry
Nanjing University of Chinese Medicine (CN), Shanghai Jiao Tong University (CN), Fudan University (CN), ShanghaiTech University (CN)
Good health and well-being
Openalex Percentile: Top 19%
Protein Degradation and Inhibitors
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Targeting Transcriptional Coactivators p300/CBP: Small-Molecule Inhibitors or Bifunctional Proximity-Inducing Modalities? — Yingxia Li, Zonglong Chen, et al. · Journal of Medicinal Chemistry (2026) | TGRS Research Map | TGRS