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CBP/p300: Critical Co-Activators for Nuclear Steroid Hormone Receptors and Emerging Therapeutic Targets in Prostate
Aaron R Waddell1, Haojie Huang2, Daiqing Liao1
1UF Health Cancer Center, Department of Anatomy and Cell Biology, University Florida College of Medicine, 2033 Mowry Road, Gainesville, FL 32610, USA.
Abstract:
The CREB-binding protein (CBP) and p300 are two paralogous lysine acetyltransferases (KATs) that were discovered in the 1980s-1990s. Since their discovery, CBP/p300 have emerged as important regulatory proteins due to their ability to acetylate histone and non-histone proteins to modulate transcription. Work in the last 20 years has firmly established CBP/p300 as critical regulators for nuclear hormone signaling pathways, which drive tumor growth in several cancer types. Indeed, CBP/p300 are critical co-activators for the androgen receptor (AR) and estrogen receptor (ER) signaling in prostate and breast cancer, respectively. The AR and ER are stimulated by sex hormones and function as transcription factors to regulate genes involved in cell cycle progression, metabolism, and other cellular functions that contribute to oncogenesis. Recent structural studies of the AR/p300 and ER/p300 complexes have provided critical insights into the mechanism by which p300 interacts with and activates AR- and ER-mediated transcription. Breast and prostate cancer rank the first and forth respectively in cancer diagnoses worldwide and effective treatments are urgently needed. Recent efforts have identified specific and potent CBP/p300 inhibitors that target the acetyltransferase activity and the acetytllysine-binding bromodomain (BD) of CBP/p300. These compounds inhibit AR signaling and tumor growth in prostate cancer. CBP/p300 inhibitors may also be applicable for treating breast and other hormone-dependent cancers. Here we provide an in-depth account of the critical roles of CBP/p300 in regulating the AR and ER signaling pathways and discuss the potential of CBP/p300 inhibitors for treating prostate and breast cancer.
Insights
CREB-binding protein (CBP) and p300 are key regulators of hormone signaling in breast and prostate cancers. New CBP/p300 inhibitors show promise for treating these hormone-dependent cancers.
Area of Science:
- Molecular Biology
- Cancer Biology
- Epigenetics
Background:
- CREB-binding protein (CBP) and p300 are paralogous lysine acetyltransferases (KATs).
- CBP/p300 regulate transcription by acetylating histone and non-histone proteins.
- They are critical co-activators for androgen receptor (AR) and estrogen receptor (ER) signaling pathways.
Purpose of the Study:
- To elucidate the critical roles of CBP/p300 in AR and ER signaling pathways.
- To discuss the therapeutic potential of CBP/p300 inhibitors in hormone-dependent cancers.
Main Methods:
- Review of existing literature on CBP/p300 function in nuclear hormone signaling.
- Analysis of structural studies on AR/p300 and ER/p300 complexes.
- Discussion of recent developments in CBP/p300 inhibitor research.
Main Results:
- CBP/p300 are essential for AR and ER signaling, driving tumor growth in prostate and breast cancers.
- Structural insights reveal mechanisms of p300 interaction and activation of AR and ER.
- CBP/p300 inhibitors targeting acetyltransferase activity or bromodomains show efficacy in preclinical models.
Conclusions:
- CBP/p300 play pivotal roles in AR and ER signaling pathways crucial for prostate and breast cancer progression.
- Targeting CBP/p300 with specific inhibitors presents a promising therapeutic strategy for hormone-dependent cancers.
- Further investigation into CBP/p300 inhibitors could lead to novel treatments for breast and prostate cancer.
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