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Runx1 Orchestrates Sphingolipid Metabolism and Glucocorticoid Resistance in Lymphomagenesis
A Kilbey1, A Terry1, S Wotton1
1Molecular Oncology Laboratory, Institute of Infection, Immunity and Inflammation, University of Glasgow, Glasgow, G61 1QH, United Kingdom.
Abstract:
The three-membered RUNX gene family includes RUNX1, a major mutational target in human leukemias, and displays hallmarks of both tumor suppressors and oncogenes. In mouse models, the Runx genes appear to act as conditional oncogenes, as ectopic expression is growth suppressive in normal cells but drives lymphoma development potently when combined with over-expressed Myc or loss of p53. Clues to underlying mechanisms emerged previously from murine fibroblasts where ectopic expression of any of the Runx genes promotes survival through direct and indirect regulation of key enzymes in sphingolipid metabolism associated with a shift in the "sphingolipid rheostat" from ceramide to sphingosine-1-phosphate (S1P). Testing of this relationship in lymphoma cells was therefore a high priority. We find that ectopic expression of Runx1 in lymphoma cells consistently perturbs the sphingolipid rheostat, whereas an essential physiological role for Runx1 is revealed by reduced S1P levels in normal spleen after partial Cre-mediated excision. Furthermore, we show that ectopic Runx1 expression confers increased resistance of lymphoma cells to glucocorticoid-mediated apoptosis, and elucidate the mechanism of cross-talk between glucocorticoid and sphingolipid metabolism through Sgpp1. Dexamethasone potently induces expression of Sgpp1 in T-lymphoma cells and drives cell death which is reduced by partial knockdown of Sgpp1 with shRNA or direct transcriptional repression of Sgpp1 by ectopic Runx1. Together these data show that Runx1 plays a role in regulating the sphingolipid rheostat in normal development and that perturbation of this cell fate regulator contributes to Runx-driven lymphomagenesis. J. Cell. Biochem. 118: 1432-1441, 2017. © 2016 Wiley Periodicals, Inc.
Insights
RUNX1 gene regulates sphingolipid metabolism, impacting cell fate and promoting lymphoma development by altering the sphingolipid rheostat and conferring resistance to apoptosis.
Area of Science:
- Molecular Biology
- Cancer Biology
- Cell Biology
Background:
- The RUNX gene family, including RUNX1, has dual roles as tumor suppressors and oncogenes.
- RUNX genes act as conditional oncogenes in mouse models, promoting lymphoma with Myc or p53 loss.
- Ectopic RUNX expression in fibroblasts alters sphingolipid metabolism, shifting the rheostat from ceramide to sphingosine-1-phosphate (S1P).
Purpose of the Study:
- To investigate the role of RUNX1 in regulating the sphingolipid rheostat in lymphoma cells.
- To determine RUNX1's physiological function in normal spleen development.
- To elucidate the mechanism of cross-talk between glucocorticoid-induced apoptosis and sphingolipid metabolism in T-lymphoma.
Main Methods:
- Ectopic expression of RUNX1 in lymphoma cells and analysis of sphingolipid metabolism.
- Partial Cre-mediated excision in mouse spleen to assess RUNX1's physiological role.
- Glucocorticoid (dexamethasone) treatment of T-lymphoma cells, assessing apoptosis and Sgpp1 expression.
- shRNA knockdown of Sgpp1 and assessment of RUNX1's transcriptional repression of Sgpp1.
Main Results:
- Ectopic RUNX1 expression in lymphoma cells perturbs the sphingolipid rheostat.
- Reduced S1P levels in normal spleen indicate an essential physiological role for RUNX1.
- Ectopic RUNX1 confers resistance to glucocorticoid-induced apoptosis in lymphoma cells.
- RUNX1 directly represses Sgpp1 transcription, a key enzyme in sphingolipid metabolism and glucocorticoid cross-talk.
Conclusions:
- RUNX1 regulates the sphingolipid rheostat in normal development.
- Perturbation of this sphingolipid rheostat by RUNX1 contributes to lymphomagenesis.
- RUNX1-mediated regulation of Sgpp1 impacts T-lymphoma cell survival and glucocorticoid sensitivity.
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