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Serine biosynthesis is a metabolic vulnerability in FLT3-ITD-driven acute myeloid leukaemia [MV411_OCI-AML3_DMSO_AC220_24hr]
PubMed Similar studies Analyze with GEO2RSRA Run Selector
Serine biosynthesis is a metabolic vulnerability in FLT3-ITD-driven acute myeloid leukaemia
PubMed Similar studies
Serine biosynthesis is a metabolic vulnerability in FLT3-ITD-driven acute myeloid leukaemia [iFLT3-ITD-Depletion_In VIVO]
PubMed Similar studies SRA Run Selector
Serine biosynthesis is a metabolic vulnerability in FLT3-ITD-driven acute myeloid leukaemia [iFLT3-ITD-Depletion_In VITRO]
Serine biosynthesis is a metabolic vulnerability in FLT3-ITD-driven acute myeloid leukaemia [MV411_OCI-AML3_ATF4_RNAP2_CHIP]
GATM-Mediated Creatine Biosynthesis Enables Maintenance of FLT3-ITD-Mutant Acute Myeloid Leukemia
FLT3 inhibition upregulates HDAC8 via FOXO to inactivate p53 and promote maintenance of FLT3-ITD+ acute myeloid leukemia
Glutaminolysis is a metabolic dependency in FLT3 ITD Acute Myeloid Leukemia unmasked by FLT3 Tyrosine Kinase Inhibition
PubMed Full text in PMC Similar studies Analyze with GEO2RSRA Run Selector
Role of NFATc1 in patients with FLT3-ITD AML
PubMed Similar studies Analyze with GEO2R
CircMYBL2 Regulates FLT3-ITD FLT3AML Translation in AML
Combinatorial inhibition of Notch and FLT3 exerts synergistic cytotoxic effects in FLT3/ITD+ acute myeloid leukemia
Fetal and neonatal hematopoietic progenitors are functionally and transcriptionally resistant to Flt3-ITD mutations.
PubMed Full text in PMC Similar studies Analyze with GEO2R
Therapy-induced hypoxia contributes to AML drug-resistance through BMX Kinase upregulation
Expression data from KSL and GMP cells of FLT3/ITD and FLT3/ITD-SmoM2 mice
FLT3/ITD-SmoM2 acute myeloid leukemia model: sorted bone marrow cells
PubMed Full text in PMC Similar studies GEO Profiles Analyze DataSet
Expression profile of hematopoietic stem and progenitor cell (HSPC) compartment of FLT3-ITD and FLT3-ITD miR-155-/- mice
PubMed Full text in PMC Similar studies SRA Run Selector
C/EBPα confers dependence to fatty acid anabolic pathways and vulnerability to lipid oxidative stress-induced ferroptosis in FLT3-mutant leukemia [scRNA-seq]
C/EBPα confers dependence to fatty acid anabolic pathways and vulnerability to lipid oxidative stress-induced ferroptosis in FLT3-mutant leukemia [batch1-3]
C/EBPα confers dependence to fatty acid anabolic pathways and vulnerability to lipid oxidative stress-induced ferroptosis in FLT3-mutant leukemia [ATAC-seq]
C/EBPα confers dependence to fatty acid anabolic pathways and vulnerability to lipid oxidative stress-induced ferroptosis in FLT3-mutant leukemia
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