Acute myeloid leukemia (AML) is a frequently fatal malignancy of bone marrow stem/progenitor cells. Fibrinogen (Fg), the predominant coagulation factor in plasma, has been reported to have a negative correlation with the prognosis of AML patients. However, the underlying mechanisms through which Fg exerts its effects on AML remain unclear. In this study, we developed a Fg-deficient AML mouse model and utilized AML cell lines and primary human AML cells to explore the role of Fg in AML progression both in vivo and in vitro. Our findings demonstrate that Fg significantly accelerates AML progression in a cancer xenograft model, as well as primary cells from untreated patients with AML. Mechanistically, Fg upregulates the expression of miR-486-5p, which directly targets the orphan receptor GPR153. This interaction activates the downstream mTORC2/AKT signaling pathway, driving AML cell proliferation and migration. Our results highlight a critical molecular mechanism by which Fg contributes to AML progression, offering potential molecular targets for therapeutic intervention.
Yang et al. (Thu,) studied this question.