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Published on: January 14, 2016
Transcriptional repression by HDAC3 mediates T cell exclusion from Kras mutant lung tumors
Caroline K McGuire1, Ambryn S Meehan1, Evan Couser1
1Department of Biochemistry and Molecular Genetics, Northwestern University, Chicago, IL 60611.
Abstract:
Histone Deacetylase 3 (HDAC3) function in vivo is nuanced and directed in a tissue-specific fashion. The importance of HDAC3 in Kras mutant lung tumors has recently been identified, but HDAC3 function in this context remains to be fully elucidated. Here, we identified HDAC3 as a lung tumor cell-intrinsic transcriptional regulator of the tumor immune microenvironment. In Kras mutant lung cancer cells, we found that HDAC3 is a direct transcriptional repressor of a cassette of secreted chemokines, including Cxcl10. Genetic and pharmacological inhibition of HDAC3 robustly up-regulated this gene set in human and mouse Kras, LKB1 (KL) and Kras, p53 (KP) mutant lung cancer cells through an NF-κB/p65-dependent mechanism. Using genetically engineered mouse models, we found that HDAC3 inactivation in vivo induced expression of this gene set selectively in lung tumors and resulted in enhanced T cell recruitment at least in part via Cxcl10. Furthermore, we found that inhibition of HDAC3 in the presence of Kras pathway inhibitors dissociated Cxcl10 expression from that of immunosuppressive chemokines and that combination treatment of entinostat with trametinib enhanced T cell recruitment into lung tumors in vivo. Finally, we showed that T cells contribute to in vivo tumor growth control in the presence of entinostat and trametinib combination treatment. Together, our findings reveal that HDAC3 is a druggable endogenous repressor of T cell recruitment into Kras mutant lung tumors.
Insights
Histone Deacetylase 3 (HDAC3) represses chemokine expression in Kras mutant lung tumors. Inhibiting HDAC3 boosts T cell recruitment, offering a new therapeutic strategy for lung cancer.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Histone Deacetylase 3 (HDAC3) plays a complex, tissue-specific role in vivo.
- HDAC3's function in Kras mutant lung tumors is not fully understood.
- HDAC3 regulates the tumor immune microenvironment.
Purpose of the Study:
- To elucidate HDAC3's role in Kras mutant lung cancer.
- To identify HDAC3 as a transcriptional regulator of the tumor immune microenvironment.
- To investigate HDAC3 inhibition as a therapeutic strategy.
Main Methods:
- Genetic and pharmacological inhibition of HDAC3.
- Analysis of chemokine gene expression (e.g., Cxcl10).
- Use of genetically engineered mouse models and combination treatments (entinostat and trametinib).
Main Results:
- HDAC3 directly represses chemokine expression, including Cxcl10, in Kras mutant lung cancer cells via NF-κB/p65.
- HDAC3 inactivation selectively upregulates these chemokines in lung tumors, enhancing T cell recruitment.
- Combination therapy with entinostat and trametinib increases T cell infiltration and contributes to tumor growth control.
Conclusions:
- HDAC3 is a druggable repressor of T cell recruitment in Kras mutant lung tumors.
- Targeting HDAC3 can modulate the tumor immune microenvironment.
- Combination therapy shows promise for enhancing anti-tumor immunity.
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