TNF-α Differentially Regulates Cell Cycle Genes in Promyelocytic and Granulocytic HL-60/S4 Cells.
Elsie C JacobsonLekha JainMark Hedley VickersAda L OlinsDonald E OlinsJo K PerryJustin Martin O'SullivanPublished in: G3 (Bethesda, Md.) (2019)
Tumor necrosis factor alpha (TNF-α) is a potent cytokine involved in systemic inflammation and immune modulation. Signaling responses that involve TNF-α are context dependent and capable of stimulating pathways promoting both cell death and survival. TNF-α treatment has been investigated as part of a combined therapy for acute myeloid leukemia due to its modifying effects on all-trans retinoic acid (ATRA) mediated differentiation into granulocytes. To investigate the interaction between cellular differentiation and TNF-α, we performed RNA-sequencing on two forms of the human HL-60/S4 promyelocytic leukemia cell line treated with TNF-α. The ATRA-differentiated granulocytic form of HL-60/S4 cells had an enhanced transcriptional response to TNF-α treatment compared to the undifferentiated promyelocytes. The observed TNF-α responses included differential expression of cell cycle gene sets, which were generally upregulated in TNF-α treated promyelocytes, and downregulated in TNF-α treated granulocytes. This is consistent with TNF-α induced cell cycle repression in granulocytes and cell cycle progression in promyelocytes. Moreover, we found evidence that TNF-α treatment of granulocytes shifts the transcriptome toward that of a macrophage. We conclude that TNF-α treatment promotes a divergent transcriptional program in promyelocytes and granulocytes. TNF-α promotes cell cycle associated gene expression in promyelocytes. In contrast, TNF-α stimulated granulocytes have reduced cell cycle gene expression, and a macrophage-like transcriptional program.
Keyphrases
- cell cycle
- rheumatoid arthritis
- gene expression
- cell proliferation
- acute myeloid leukemia
- cell death
- genome wide
- single cell
- signaling pathway
- induced apoptosis
- endothelial cells
- bone marrow
- combination therapy
- computed tomography
- cell cycle arrest
- copy number
- drug induced
- high resolution
- pi k akt
- heat shock
- oxidative stress
- anti inflammatory
- allogeneic hematopoietic stem cell transplantation