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Caspase-3 controls AML1-ETO-driven leukemogenesis via autophagy modulation in a ULK1-dependent manner
- Source :
- Blood. 129(20)
- Publication Year :
- 2016
-
Abstract
- AML1-ETO (AE), a fusion oncoprotein generated by t(8;21), can trigger acute myeloid leukemia (AML) in collaboration with mutations including c-Kit, ASXL1/2, FLT3, N-RAS, and K-RAS. Caspase-3, a key executor among its family, plays multiple roles in cellular processes, including hematopoietic development and leukemia progression. Caspase-3 was revealed to directly cleave AE in vitro, suggesting that AE may accumulate in a Caspase-3-compromised background and thereby accelerate leukemogenesis. Therefore, we developed a Caspase-3 knockout genetic mouse model of AML and found that loss of Caspase-3 actually delayed AML1-ETO9a (AE9a)-driven leukemogenesis, indicating that Caspase-3 may play distinct roles in the initiation and/or progression of AML. We report here that loss of Caspase-3 triggers a conserved, adaptive mechanism, namely autophagy (or macroautophagy), which acts to limit AE9a-driven leukemia. Furthermore, we identify ULK1 as a novel substrate of Caspase-3 and show that upregulation of ULK1 drives autophagy initiation in leukemia cells and that inhibition of ULK1 can rescue the phenotype induced by Caspase-3 deletion in vitro and in vivo. Collectively, these data highlight Caspase-3 as an important regulator of autophagy in AML and demonstrate that the balance and selectivity between its substrates can dictate the pace of disease.
- Subjects :
- 0301 basic medicine
Oncogene Proteins, Fusion
Carcinogenesis
Immunology
Regulator
Caspase 3
Antigens, CD34
Biology
Biochemistry
Substrate Specificity
03 medical and health sciences
Fetus
Downregulation and upregulation
hemic and lymphatic diseases
medicine
Autophagy
Animals
Autophagy-Related Protein-1 Homolog
Humans
Cell Self Renewal
Mice, Knockout
Leukemia
Myeloid Neoplasia
Myeloid leukemia
Cell Biology
Hematology
medicine.disease
Cell biology
Liver Transplantation
Mice, Inbred C57BL
Haematopoiesis
Disease Models, Animal
030104 developmental biology
Phenotype
Gene Knockdown Techniques
Neoplastic Stem Cells
Gene Deletion
Subjects
Details
- ISSN :
- 15280020
- Volume :
- 129
- Issue :
- 20
- Database :
- OpenAIRE
- Journal :
- Blood
- Accession number :
- edsair.doi.dedup.....4b0cf90284d19e1da17da9e50fab1b47