The Epigenetic Modifiers HDAC2 and HDAC7 Inversely Associate with Cancer Stemness and Immunity in Solid Tumors
Kacper Maciejewski1, Marek Giers1, Urszula Oleksiewicz2,3
1Undergraduate Research Group "Biobase", Poznan University of Medical Sciences, 61-701 Poznan, Poland.
Abstract:
Dysregulation of histone deacetylases (HDACs) is closely associated with cancer development and progression. Here, we comprehensively analyzed the association between all HDAC family members and several clinicopathological and molecular traits of solid tumors across 22 distinct tumor types, focusing primarily on cancer stemness and immunity. To this end, we used publicly available TCGA data and several bioinformatic tools (i.e., GEPIA2, TISIDB, GSCA, Enrichr, GSEA). Our analyses revealed that class I and class II HDAC proteins are associated with distinct cancer phenotypes. The transcriptomic profiling indicated that class I HDAC members, including HDAC2, are positively associated with cancer stemness, while class IIA HDAC proteins, represented by HDAC7, show a negative correlation to cancer stem cell-like phenotypes in solid tumors. In contrast to tumors with high amounts of HDAC7 proteins, the transcriptome signatures of HDAC2-overexpressing cancers are significantly enriched with biological terms previously determined as stemness-associated genes. Moreover, high HDAC2-expressing tumors are depleted with immune-related processes, and HDAC2 expression correlates with tumor immunosuppressive microenvironments. On the contrary, HDAC7 upregulation is significantly associated with enhanced immune responses, followed by enriched infiltration of CD4+ and CD8+ T cells. This is the first comprehensive report demonstrating robust and versatile associations between specific HDAC family members, cancer dedifferentiation, and anti-tumor immune statuses in solid tumors.
Insights
Histone deacetylases (HDACs) impact cancer. HDAC2 promotes cancer stemness and suppresses immunity, while HDAC7 inhibits stemness and enhances anti-tumor immune responses in solid tumors.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Histone deacetylases (HDACs) are implicated in cancer development.
- Understanding HDAC family roles in cancer stemness and immunity is crucial.
Purpose of the Study:
- To comprehensively analyze associations between HDACs and cancer traits.
- To investigate the link between HDACs, cancer stemness, and tumor immunity.
Main Methods:
- Utilized TCGA data and bioinformatic tools (GEPIA2, TISIDB, GSCA, Enrichr, GSEA).
- Analyzed transcriptomic profiles for correlations with clinicopathological and molecular features.
Main Results:
- Class I HDACs (e.g., HDAC2) correlate with increased cancer stemness.
- Class IIA HDACs (e.g., HDAC7) correlate with decreased cancer stemness.
- HDAC2 overexpression is linked to immunosuppressive tumor microenvironments.
- HDAC7 upregulation is associated with enhanced anti-tumor immunity and T cell infiltration.
Conclusions:
- Specific HDAC members differentially regulate cancer stemness and immune evasion.
- HDAC2 and HDAC7 represent distinct molecular players in solid tumor progression and immune modulation.
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