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Smap1 deficiency perturbs receptor trafficking and predisposes mice to myelodysplasia
Shunsuke Kon1, Naoko Minegishi, Kenji Tanabe
1Department of Molecular Immunology, Institute of Development, Aging and Cancer, Tohoku University, Sendai, Japan.
Abstract:
The formation of clathrin-coated vesicles is essential for intracellular membrane trafficking between subcellular compartments and is triggered by the ARF family of small GTPases. We previously identified SMAP1 as an ARF6 GTPase-activating protein that functions in clathrin-dependent endocytosis. Because abnormalities in clathrin-dependent trafficking are often associated with oncogenesis, we targeted Smap1 in mice to examine its physiological and pathological significance. Smap1-deficent mice exhibited healthy growth, but their erythroblasts showed enhanced transferrin endocytosis. In mast cells cultured in SCF, Smap1 deficiency did not affect the internalization of c-KIT but impaired the sorting of internalized c-KIT from multivesicular bodies to lysosomes, resulting in intracellular accumulation of undegraded c-KIT that was accompanied by enhanced activation of ERK and increased cell growth. Interestingly, approximately 50% of aged Smap1-deficient mice developed anemia associated with morphologically dysplastic cells of erythroid-myeloid lineage, which are hematological abnormalities similar to myelodysplastic syndrome (MDS) in humans. Furthermore, some Smap1-deficient mice developed acute myeloid leukemia (AML) of various subtypes. Collectively, to our knowledge these results provide the first evidence in a mouse model that the deregulation of clathrin-dependent membrane trafficking may be involved in the development of MDS and subsequent AML.
Insights
Targeting SMAP1 in mice revealed its role in intracellular trafficking. SMAP1 deficiency led to hematological abnormalities, including anemia and leukemia, suggesting a link between membrane trafficking and cancer development.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Clathrin-coated vesicle formation is crucial for intracellular membrane trafficking, regulated by ARF GTPases.
- SMAP1, an ARF6 GTPase-activating protein, is involved in clathrin-dependent endocytosis.
- Disruptions in clathrin-dependent trafficking are linked to oncogenesis.
Purpose of the Study:
- To investigate the physiological and pathological roles of SMAP1 by creating Smap1-deficient mice.
- To explore the connection between SMAP1 function and the development of hematological malignancies.
Main Methods:
- Generation and analysis of Smap1-deficient mice.
- Examination of erythroblast and mast cell function, including endocytosis and protein sorting.
- Hematological analysis of aged Smap1-deficient mice to identify abnormalities.
Main Results:
- Smap1 deficiency enhanced transferrin endocytosis in erythroblasts.
- Impaired lysosomal sorting of internalized c-KIT in mast cells led to ERK activation and increased cell growth.
- Aged Smap1-deficient mice developed anemia resembling myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML).
Conclusions:
- SMAP1 plays a significant role in regulating intracellular membrane trafficking.
- Deregulation of clathrin-dependent membrane trafficking, due to Smap1 deficiency, may contribute to MDS and AML development.
- This study provides the first mouse model evidence linking clathrin-dependent trafficking defects to MDS and AML.
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