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SET-PP2A complex as a new therapeutic target in KMT2A (MLL) rearranged AML
Antonella Di Mambro1, Yoana Arroyo-Berdugo1, Tiziana Fioretti2
1School of Life and Health Sciences, University of Roehampton, London, UK.
Abstract:
KMT2A-rearranged (KMT2A-R) is an aggressive and chemo-refractory acute leukemia which mostly affects children. Transcriptomics-based characterization and chemical interrogation identified kinases as key drivers of survival and drug resistance in KMT2A-R leukemia. In contrast, the contribution and regulation of phosphatases is unknown. In this study we uncover the essential role and underlying mechanisms of SET, the endogenous inhibitor of Ser/Thr phosphatase PP2A, in KMT2A-R-leukemia. Investigation of SET expression in acute myeloid leukemia (AML) samples demonstrated that SET is overexpressed, and elevated expression of SET is correlated with poor prognosis and with the expression of MEIS and HOXA genes in AML patients. Silencing SET specifically abolished the clonogenic ability of KMT2A-R leukemic cells and the transcription of KMT2A targets genes HOXA9 and HOXA10. Subsequent mechanistic investigations showed that SET interacts with both KMT2A wild type and fusion proteins, and it is recruited to the HOXA10 promoter. Pharmacological inhibition of SET by FTY720 disrupted SET-PP2A interaction leading to cell cycle arrest and increased sensitivity to chemotherapy in KMT2A-R-leukemic models. Phospho-proteomic analyses revealed that FTY720 reduced the activity of kinases regulated by PP2A, including ERK1, GSK3β, AURB and PLK1 and led to suppression of MYC, supporting the hypothesis of a feedback loop among PP2A, AURB, PLK1, MYC, and SET. Our findings illustrate that SET is a novel player in KMT2A-R leukemia and they provide evidence that SET antagonism could serve as a novel strategy to treat this aggressive leukemia.
Insights
SET, an inhibitor of phosphatase PP2A, is overexpressed in KMT2A-rearranged acute myeloid leukemia (AML). Inhibiting SET with FTY720 halts leukemia cell growth and enhances chemotherapy sensitivity, offering a new treatment strategy.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- KMT2A-rearranged (KMT2A-R) leukemia is aggressive and chemo-refractory, predominantly affecting children.
- Kinases are known drivers of survival and drug resistance in KMT2A-R leukemia, but the role of phosphatases remains unclear.
Purpose of the Study:
- To investigate the role and regulatory mechanisms of SET, the endogenous inhibitor of Ser/Thr phosphatase PP2A, in KMT2A-R leukemia.
- To explore SET antagonism as a potential therapeutic strategy for KMT2A-R leukemia.
Main Methods:
- Analysis of SET expression in acute myeloid leukemia (AML) samples.
- SET gene silencing and pharmacological inhibition using FTY720.
- Mechanistic studies involving protein-protein interactions, promoter recruitment, and phospho-proteomic analysis.
Main Results:
- SET is overexpressed in AML and correlates with poor prognosis and MEIS/HOXA gene expression.
- SET silencing abolished KMT2A-R cell clonogenicity and HOXA9/HOXA10 transcription.
- FTY720 disrupted SET-PP2A interaction, induced cell cycle arrest, enhanced chemotherapy sensitivity, and reduced PP2A-regulated kinase activity and MYC levels.
Conclusions:
- SET plays an essential role in KMT2A-R leukemia by interacting with KMT2A proteins and regulating target gene transcription.
- SET antagonism, via FTY720, represents a promising novel therapeutic strategy for treating aggressive KMT2A-R leukemia.
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