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HDAC6 Degradation Inhibits the Growth of High-Grade Serous Ovarian Cancer Cells
Ahlam Ali1, Fengyu Zhang2, Aaron Maguire2
1Patrick G Johnston Centre for Cancer Research, Queen's University, Belfast BT97BL, UK.
Abstract:
Histone deacetylase 6 (HDAC6) is a unique histone deacetylating enzyme that resides in the cell cytoplasm and is linked to the modulation of several key cancer related responses, including cell proliferation and migration. The promising anti-cancer response of the first-generation HDAC6 catalytic inhibitors continues to be assessed in clinical trials, although its role in high grade serous ovarian cancer is unclear. This study investigated HDAC6 tumor expression by immunohistochemistry in high-grade serous ovarian cancer (HGSOC) tissue samples and a meta-analysis of HDAC6 gene expression in ovarian cancer from publicly available data. The pharmacological activity of HDAC6 inhibition was assessed in a patient-derived model of HGSOC. HDAC6 was found to be highly expressed in HGSOC tissue samples and in the patient-derived HGSOC cell lines where higher HDAC6 protein and gene expression was associated with a decreased risk of death (hazard ratio (HR) 0.38, (95% confidence interval (CI), 0.16-0.88; p = 0.02); HR = 0.88 (95% CI, 0.78-0.99; p = 0.04)). Similarly, the multivariate analysis of HDAC6 protein expression, adjusting for stage, grade, and cytoreduction/cytoreductive surgery was associated with a decreased risk of death (HR = 0.19 (95% CI, 0.06-0.55); p = 0.002). Knock-down of HDAC6 gene expression with siRNA and protein expression with a HDAC6 targeting protein degrader decreased HGSOC cell proliferation, migration, and viability. Conversely, the selective inhibition of HDAC6 with the catalytic domain inhibitor, Ricolinostat (ACY-1215), inhibited HDAC6 deacetylation of α-tubulin, resulting in a sustained accumulation of acetylated α-tubulin up to 24 h in HGSOC cells, did not produce a robust inhibition of HDAC6 protein function. Inhibition of HGSOC cell proliferation by ACY-1215 was only achieved with significantly higher and non-selective doses of ACY-1215. In summary, we demonstrated, for the first time, that HDAC6 over-expression in HGSOC and all ovarian cancers is a favorable prognostic marker. We provide evidence to suggest that inhibition of HDAC6 catalytic activity with first generation HDAC6 inhibitors has limited efficacy as a monotherapy in HGSOC.
Insights
High expression of Histone deacetylase 6 (HDAC6) in high-grade serous ovarian cancer (HGSOC) indicates a better prognosis. First-generation HDAC6 inhibitors show limited efficacy as a monotherapy for HGSOC.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Histone deacetylase 6 (HDAC6) is a cytoplasmic enzyme involved in cancer progression, but its role in high-grade serous ovarian cancer (HGSOC) is not well understood.
- Existing first-generation HDAC6 inhibitors are under clinical investigation for cancer treatment.
Purpose of the Study:
- To investigate the expression and prognostic significance of HDAC6 in HGSOC.
- To evaluate the efficacy of HDAC6 inhibition in a patient-derived HGSOC model.
Main Methods:
- Immunohistochemistry was used to assess HDAC6 tumor expression in HGSOC tissues.
- A meta-analysis of publicly available gene expression data for HDAC6 in ovarian cancer was performed.
- HDAC6 was inhibited using siRNA, a protein degrader, and the catalytic inhibitor Ricolinostat (ACY-1215) in patient-derived HGSOC cell lines.
Main Results:
- HDAC6 was highly expressed in HGSOC tissues and cell lines.
- Higher HDAC6 expression correlated with a decreased risk of death in ovarian cancer patients (HR=0.38, p=0.02; HR=0.88, p=0.04).
- Knockdown of HDAC6 reduced HGSOC cell proliferation, migration, and viability. Ricolinostat (ACY-1215) showed limited efficacy in inhibiting HDAC6 activity and HGSOC cell proliferation at non-selective doses.
Conclusions:
- HDAC6 overexpression is a favorable prognostic marker in HGSOC and ovarian cancer overall.
- Targeting HDAC6 catalytic activity with first-generation inhibitors may have limited therapeutic potential as a monotherapy in HGSOC.
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