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Updated: May 29, 2026

Engineering Oncogenic Heterozygous Gain-of-Function Mutations in Human Hematopoietic Stem and Progenitor Cells
Published on: March 10, 2023
Methionine aminopeptidase 2 is required for HSC initiation and proliferation
Alvin C H Ma1, Tsz K Fung, Rachel H C Lin
1Department of Medicine, LKS Faculty of Medicine, Queen Mary Hospital, Pok Fu Lam Road, Hong Kong.
Abstract:
In a chemical screening, we tested the antiangiogenic effects of fumagillin derivatives and identified fumagillin as an inhibitor of definitive hematopoiesis in zebrafish embryos. Fumagillin is known to target methionine aminopeptidase II (MetAP2), an enzyme whose function in hematopoiesis is unknown. We investigated the role of MetAP2 in hematopoiesis by using zebrafish embryo and human umbilical cord blood models. Zebrafish metap2 was expressed ubiquitously during early embryogenesis and later in the somitic region, the caudal hematopoietic tissue, and pronephric duct. metap2 was inhibited by morpholino and fumagillin treatment, resulting in increased mpo expression at 18 hours postfertilization and reduced c-myb expression along the ventral wall of dorsal aorta at 36 hours postfertilization. It also disrupted intersegmental vessels in Tg(fli1:gfp) embryos without affecting development of major axial vasculatures. Inhibition of MetAP2 in CB CD34(+) cells by fumagillin had no effect on overall clonogenic activity but significantly reduced their engraftment into immunodeficient nonobese diabetes/severe combined immunodeficiency mice. metap2 knock-down in zebrafish and inhibition by fumagillin in zebrafish and human CB CD34(+) cells inhibited Calmodulin Kinase II activity and induced ERK phosphorylation. This study demonstrated a hitherto-undescribed role of MetAP2 in definitive hematopoiesis and a possible link to noncanonical Wnt and ERK signaling.
Insights
Fumagillin inhibits definitive hematopoiesis by targeting methionine aminopeptidase II (MetAP2). This study reveals MetAP2
Area of Science:
- Hematology
- Developmental Biology
- Biochemistry
Background:
- Fumagillin derivatives were screened for antiangiogenic effects.
- Fumagillin targets methionine aminopeptidase II (MetAP2), an enzyme with an unknown role in hematopoiesis.
Purpose of the Study:
- To investigate the role of MetAP2 in definitive hematopoiesis using zebrafish and human cell models.
Main Methods:
- Zebrafish embryo and human umbilical cord blood (CB) CD34(+) cell models were used.
- MetAP2 was inhibited using morpholino and fumagillin.
- Gene expression (mpo, c-myb) and vascular development were analyzed in zebrafish.
- Engraftment of CB CD34(+) cells in immunodeficient mice was assessed.
Main Results:
- MetAP2 inhibition in zebrafish embryos increased MPO expression and reduced c-MYB expression, disrupting intersegmental vessels.
- Fumagillin treatment of human CB CD34(+) cells reduced their engraftment potential in mice.
- MetAP2 inhibition affected Calmodulin Kinase II activity and induced ERK phosphorylation.
Conclusions:
- MetAP2 plays a crucial, previously undescribed role in definitive hematopoiesis.
- A potential link between MetAP2, noncanonical Wnt, and ERK signaling in hematopoiesis is suggested.
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