Epigenetic remodeling via HDAC6 inhibition amplifies anti-tumoral immune responses in myeloid leukemia cells
Schliehe-Diecks, J.; Tu, J.-W.; Stachura, P.; Schaal, K.; Kemkes, M.; Vasileiou, E.; Ruechel, N.; Brandes, D.; Vogt, M.; Lenz, T.; Nair, A.; Scheu, S.; Dominguez, P.; Pastorczak, A.; Nebral, K.; Stuehler, K.; Fischer, U.; Pandyra, A.; Borkhardt, A.; Bhatia, S.
Show abstract
Histone deacetylase 6 (HDAC6) has emerged as a promising therapeutic target in cancer due to its immunomodulatory effects. While its prognostic significance remains debated, we demonstrate that HDAC6 loss significantly impairs myeloid leukemia progression in vivo, despite having no functional impact on leukemia cell proliferation in vitro. Global proteome and secretome profiling of HDAC6-knockout (KO) cells revealed upregulation of several immune-related modulators, including RNase T2, a tumor suppressor known to modulate the tumor microenvironment. Notably, RNase T2 upregulation upon HDAC6 loss was restricted to myeloid but not B-ALL cells. Moreover, pharmacological inhibition of HDAC6 recapitulated this phenotype, leading to RNase T2 upregulation in myeloid leukemia cells. ATAC-seq revealed increased chromatin accessibility of RNase T2 following HDAC6 loss, highlighting a functionally epigenetic regulatory contribution. Further functional assays conducted in an immunocompetent setting both ex vivo and in vivo demonstrated that HDAC6 inhibition sensitized murine myeloid leukemia cells to broad CD8+ T cell activation as evidenced by increased TNF and CD107a expression. Consistently, in a syngeneic model, HDAC6 inhibition restricted growth myeloid leukemia cells. Moreover, an extended drug screening analysis identified Cytarabine and Clofarabine as significantly synergizing with HDAC6 inhibitor (Ricolinostat) in myeloid leukemia cell lines and in patient derived xenograft (PDX) cells, while showing limited synergy in lymphoid leukemia cell lines, PDX or healthy control cells. These findings suggest that HDAC6 represents a promising therapeutic target in myeloid lineage derived leukemia cells by simultaneously enhancing immune activation and increasing chemosensitivity.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A JAK/STAT-Mediated Inflammatory Signaling Cascade Drives Oncogenesis In AF10-Rearranged AML 97%
- Leukemia escapes immunity by imposing a Type-1 regulatory program on neoantigen-specific CD4+ T cells. 96%
- BRG1/BRM inhibitor targets AML stem cells and exerts superior preclinical efficacy combined with BET or Menin inhibitor 96%
Similar papers in this journal
- Genome-wide CRISPR Screens Identify Ferroptosis as a Novel Therapeutic Vulnerability in Acute Lymphoblastic Leukemia 95%
- ANKRD26 is a new regulator of type I cytokine receptor signaling in normal and pathological hematopoiesis 94%
- Quantification of measurable residual disease using duplex sequencing in adults with acute myeloid leukemia 94%
Similar papers in this journal
- Acute myeloid leukemia stratifies as two clinically relevant sphingolipidomic subtypes 96%
- Modeling IKZF1 lesions in B-ALL reveals distinct chemosensitivity patterns and potential therapeutic vulnerabilities 96%
- ATP citrate lyase is an essential player of the metabolic rewiring induced by PTEN loss during T-ALL development. 95%
Similar papers in this journal
- Adrenomedullin-CALCRL Axis Controls Relapse-Initiating Drug Tolerant Acute Myeloid Leukemia Cells 97%
- Leukemia stemness and co-occurring mutations drive resistance to IDH inhibitors in acute myeloid leukemia 96%
- CDKN1A is a target for phagocytosis-mediated cellular immunotherapy in acute leukemia 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.