Targeting sphingosine kinase 1 induces MCL1-dependent cell death in acute myeloid leukemia.
Jason A PowellAlexander C LewisWenying ZhuJohn ToubiaMelissa R PitmanCraig T Wallington-BeddoePaul A B MorettiDiana IarossiSaumya E SamaraweeraNik CummingsHayley S RamshawDaniel ThomasAndrew H WeiAngel F LopezRichard J D'AndreaIan D LewisStuart M PitsonPublished in: Blood (2016)
Acute myeloid leukemia (AML) is an aggressive malignancy where despite improvements in conventional chemotherapy and bone marrow transplantation, overall survival remains poor. Sphingosine kinase 1 (SPHK1) generates the bioactive lipid sphingosine 1-phosphate (S1P) and has established roles in tumor initiation, progression, and chemotherapy resistance in a wide range of cancers. The role and targeting of SPHK1 in primary AML, however, has not been previously investigated. Here we show that SPHK1 is overexpressed and constitutively activated in primary AML patient blasts but not in normal mononuclear cells. Subsequent targeting of SPHK1 induced caspase-dependent cell death in AML cell lines, primary AML patient blasts, and isolated AML patient leukemic progenitor/stem cells, with negligible effects on normal bone marrow CD34+ progenitors from healthy donors. Furthermore, administration of SPHK1 inhibitors to orthotopic AML patient-derived xenografts reduced tumor burden and prolonged overall survival without affecting murine hematopoiesis. SPHK1 inhibition was associated with reduced survival signaling from S1P receptor 2, resulting in selective downregulation of the prosurvival protein MCL1. Subsequent analysis showed that the combination of BH3 mimetics with either SPHK1 inhibition or S1P receptor 2 antagonism triggered synergistic AML cell death. These results support the notion that SPHK1 is a bona fide therapeutic target for the treatment of AML.
Keyphrases
- acute myeloid leukemia
- cell death
- allogeneic hematopoietic stem cell transplantation
- bone marrow
- stem cells
- cell cycle arrest
- cancer therapy
- mesenchymal stem cells
- induced apoptosis
- squamous cell carcinoma
- cell proliferation
- signaling pathway
- tyrosine kinase
- free survival
- small molecule
- pi k akt
- oxidative stress
- young adults
- cell therapy
- diabetic rats
- smoking cessation
- risk factors
- fatty acid