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Simultaneous Measurement of HDAC1 and HDAC6 Activity in HeLa Cells Using UHPLC-MS
Published on: August 10, 2017
HDAC1 acts as a tumor suppressor in ALK-positive anaplastic large cell lymphoma: implications for HDAC inhibitor
Maša Zrimšek1,2, Kristina Draganić1,2, Anna Malzer1
1Department of Pathology, Medical University of Vienna, Vienna, Austria.
Abstract:
Histone deacetylases (HDACs) are frequently deregulated in cancer, and several HDAC inhibitors (HDACi) have gained approval for treating peripheral T cell lymphomas. Here, we investigated the effects of pharmacological or genetic HDAC inhibition on NPM::ALK positive anaplastic large cell lymphoma (ALCL) development to assess the potential use of HDACi for the treatment of this disease. Short-term systemic pharmacological inhibition of HDACs using the HDACi Entinostat in a premalignant ALCL mouse model postponed or even abolished lymphoma development, despite high expression of the NPM::ALK fusion oncogene. To further disentangle the effects of systemic HDAC inhibition from thymocyte intrinsic effects, conditional genetic deletions of HDAC1 and HDAC2 enzymes were employed. In sharp contrast, T cell-specific deletion of Hdac1 or Hdac2 in the ALCL mouse model significantly accelerated NPM::ALK-driven lymphomagenesis, with Hdac1 loss having a more pronounced effect. Integration of gene expression and chromatin accessibility data revealed that Hdac1 deletion selectively perturbed cell type-specific transcriptional programs, crucial for T cell differentiation and signaling. Moreover, multiple oncogenic signaling pathways, including PDGFRB signaling, were highly upregulated. Our findings underscore the tumor-suppressive function of HDAC1 and HDAC2 in T cells during ALCL development. Nevertheless, systemic pharmacological inhibition of HDACs could still potentially improve current therapeutic outcomes.
Insights
Histone deacetylase inhibitors (HDACi) show promise for anaplastic large cell lymphoma (ALCL). While systemic HDAC inhibition delayed ALCL, genetic deletion accelerated it, revealing HDAC1/2
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Histone deacetylases (HDACs) are implicated in cancer, with approved HDAC inhibitors (HDACi) for lymphomas.
- Anaplastic large cell lymphoma (ALCL) driven by NPM::ALK oncogene presents a therapeutic challenge.
Purpose of the Study:
- To evaluate the therapeutic potential of HDAC inhibition in NPM::ALK-driven ALCL.
- To differentiate systemic versus cell-intrinsic effects of HDAC inhibition on ALCL development.
Main Methods:
- Utilized a premalignant ALCL mouse model with pharmacological HDAC inhibition (Entinostat).
- Employed conditional genetic deletion of Hdac1 and Hdac2 in T cells.
- Integrated gene expression and chromatin accessibility profiling.
Main Results:
- Systemic Entinostat treatment postponed or prevented ALCL development.
- T cell-specific deletion of Hdac1 or Hdac2 accelerated NPM::ALK-driven lymphomagenesis, with Hdac1 loss being more potent.
- Hdac1 deletion disrupted T cell differentiation programs and upregulated oncogenic signaling pathways, including PDGFRB.
Conclusions:
- HDAC1 and HDAC2 function as tumor suppressors in T cells during ALCL pathogenesis.
- Systemic HDAC inhibition may offer therapeutic benefits for ALCL despite context-dependent roles of specific HDACs.
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