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Updated: Jun 30, 2026

Identifying Bone Marrow Microenvironmental Populations in Myelodysplastic Syndrome and Acute Myeloid Leukemia
Published on: November 10, 2023
Defective Notch activation in microenvironment leads to myeloproliferative disease
Young-Woong Kim1, Bon-Kyoung Koo, Hyun-Woo Jeong
1Department of Life Science, Pohang University of Science and Technology, Pohang, Kyungbuk, South Korea.
Insights
Defective Notch signaling between microenvironmental cells causes myeloproliferative disease (MPD). Inactivating Mind bomb-1 (Mib1) in mice led to MPD, highlighting Notch activation
Area of Science:
- Hematology
- Cell Biology
- Molecular Biology
Background:
- Nonhematopoietic cells are crucial for hematopoiesis, but their intercellular communication remains poorly understood.
- Notch signaling is vital for cell-cell communication and development.
Purpose of the Study:
- To investigate the role of Mind bomb-1 (Mib1) and Notch signaling in nonhematopoietic cells for hematopoiesis.
- To elucidate the mechanisms underlying myeloproliferative disease (MPD) development.
Main Methods:
- Utilized the Cre-loxP system in mice to create Mib1 conditional knockout (CKO) models.
- Performed bone marrow transplantation experiments.
- Introduced constitutively active Notch1 intracellular domain into Mib1-null mice.
Main Results:
- Mib1 CKO mice developed MPD characterized by immature granulocyte accumulation, hepatosplenomegaly, anemia, and premature death.
- Transplantation of wild-type bone marrow into a Mib1-null microenvironment induced de novo MPD.
- Active Notch1 expression in Mib1-null microenvironments suppressed MPD progression.
Conclusions:
- Normal hematopoiesis requires Notch activation mediated by ligand-receptor interactions between microenvironmental cells.
- Defective Notch signaling in the nonhematopoietic microenvironment is a key driver of MPD.
- This study reveals critical insights into the microenvironmental factors contributing to hematopoietic disorders.
Abstract:
Despite the great importance of nonhematopoietic cells constituting the microenvironment for normal hematopoiesis, the cellular interactions between nonhematopoietic cells themselves are largely unknown. Using the Cre-loxP system in mice to inactivate Mind bomb-1 (Mib1), an essential component for Notch ligand endocytosis, here we show that the development of an MPD is dependent on defective Notch activation in the microenvironment. Our 2 independent Mib1 conditional knockout (CKO) mouse lines each developed a myeloproliferative disease (MPD), with gradual accumulations of immature granulocytes. The mutant mice showed hepatosplenomegaly, anemia, granulocytosis, and leukocyte infiltration in multiple organs and finally died at approximately 20 weeks of age. We were surprised to find that the transplantation of wild-type bone marrow cells into the Mib1-null microenvironment resulted in a de novo MPD. Moreover, by introducing the constitutively active intracellular domain of Notch1 in the Mib1-null background, we show that active Notch1 expression in the Mib1-null microenvironment significantly suppressed the disease progression, suggesting that the MPD development in the Mib1 CKO mice is due to defective Notch activation in the nonhematopoietic cells. These findings demonstrate that normal hematopoiesis absolutely requires Notch activation through the Notch ligand-receptor interaction between microenvironmental cells themselves and shed light on the microenvironment that fosters hematopoietic disorders.
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