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Published on: May 14, 2016
The EP300-Targeting Drug CCS1477 Inhibits the Growth and Development of Diffuse Large B-Cell Lymphoma by Promoting
Rujia Si1, Yihan Zhang1, Bowen Hu1,2
1Department of Oncology, The Affiliated Cancer Hospital of Nanjing Medical University, Jiangsu Cancer Hospital, Jiangsu Institute of Cancer Research, Nanjing, China.
Introduction:
Approximately 30% of patients with diffuse large B-cell lymphoma (DLBCL) develop primary resistance or relapse, owing to the high heterogeneity and aggressive nature of the disease. Consequently, novel drugs are urgently needed to improve outcomes in patients who are resistant.
Methods:
This study quantified the anti-proliferative effects of CCS1477 in vitro using the Cell Counting Kit-8 assay, 5-ethynyl-2'-deoxyuridine staining, and lactate dehydrogenase measurement. Flow cytometry and Western blot analyses were performed concurrently to investigate the induction of apoptosis and the activation of mitophagy. The efficacy and safety of CCS1477 were evaluated in in vivo models. To elucidate the mechanism, cell lines with EP300 knockdown and overexpression were established. Functional assays and Western blot analyses revealed that EP300 regulates apoptosis, mitophagy, and c-MYC-mediated drug-resistant phenotypes.
Results:
This study demonstrated that CCS1477, a highly selective EP300/CBP bromodomain inhibitor, significantly suppressed the progression of diffuse large B-cell lymphoma. The study revealed that CCS1477 dosedependently inhibited the proliferation of diffuse large B-cell lymphoma cells and induced apoptosis and mitophagy. Mechanistically, EP300 downregulation promoted apoptosis and activated the PINK1-dependent mitophagy pathway while suppressing c-MYC-mediated drug resistance genes, ultimately inhibiting DLBCL cell proliferation. In animal models, CCS1477 significantly reduced tumor volume and extended doubling time, providing the first evidence of its in vivo antitumor activity against DLBCL.
Discussion:
Through systematic in vitro and in vivo investigations, this study validated the significant therapeutic promise of EP300/CBP inhibitor CCS1477 for diffuse large B-cell lymphoma. However, the mechanistic basis for differential sensitivity across DLBCL subtypes, along with long-term efficacy and potential adverse effects, requires comprehensive investigation. Notably, EP300 has been verified as a novel prognostic biomarker and therapeutic target; this work establishes an innovative epigenetic-targeted strategy for relapsed/refractory diffuse large B-cell lymphoma.
Conclusion:
By selectively targeting EP300, CCS1477 orchestrates a dual pro-death mechanism involving both intrinsic apoptosis execution and PINK1-driven mitochondrial clearance, resulting in significant inhibition of diffuse large B-cell lymphoma pathogenesis.
Insights
A novel EP300/CBP inhibitor, CCS1477, effectively suppresses diffuse large B-cell lymphoma (DLBCL) by inducing apoptosis and mitophagy. This epigenetic-targeted strategy shows promise for treating relapsed or refractory DLBCL.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Diffuse large B-cell lymphoma (DLBCL) presents significant therapeutic challenges due to primary resistance and relapse in approximately 30% of patients.
- The heterogeneity and aggressive nature of DLBCL necessitate the development of novel therapeutic agents.
Purpose of the Study:
- To investigate the anti-proliferative effects and therapeutic potential of CCS1477, a selective EP300/CBP bromodomain inhibitor, in diffuse large B-cell lymphoma.
- To elucidate the underlying mechanisms of action for CCS1477, including its effects on apoptosis, mitophagy, and drug resistance pathways.
Main Methods:
- In vitro anti-proliferative assays (Cell Counting Kit-8, 5-ethynyl-2'-deoxyuridine, lactate dehydrogenase) were employed.
- Flow cytometry and Western blot analyses were used to assess apoptosis and mitophagy.
- In vivo efficacy and safety studies were conducted in relevant animal models.
- EP300 knockdown and overexpression cell lines were utilized to explore mechanistic insights.
Main Results:
- CCS1477 demonstrated dose-dependent inhibition of DLBCL cell proliferation and induced significant apoptosis and mitophagy.
- Mechanistically, EP300 downregulation promoted apoptosis, activated PINK1-dependent mitophagy, and suppressed c-MYC-mediated drug resistance.
- In vivo studies showed that CCS1477 effectively reduced tumor volume and extended tumor doubling time in DLBCL models.
Conclusions:
- CCS1477 exhibits significant therapeutic promise as an EP300/CBP inhibitor for diffuse large B-cell lymphoma.
- EP300 is validated as a novel prognostic biomarker and therapeutic target for DLBCL.
- This study establishes an innovative epigenetic-targeted strategy for relapsed/refractory DLBCL, inducing cell death via apoptosis and mitophagy.
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