RRC ID 90078
Author Ma S, Liu X, Qin Y, Wang Y, Feng Y, Cheng B, Wang L.
Title Identification of RBM3 as a novel regulator of human fetal hemoglobin expression.
Journal Int Immunopharmacol
Abstract Sickle cell disease (SCD) and β-thalassemia are autosomal recessive genetic disorders caused by abnormal synthesis of β-globin chains. Reversing the transition of fetal-to-adult hemoglobin after birth shows great potential in the treatment of these disorders. Here, we identified an RNA-binding protein, RBM3, as a novel HbF (HbF, α2γ2) suppressor. Specifically, downregulation of RBM3 in the erythroid progenitor cell line HUDEP-2 robustly induced γ-globin expression at both the mRNA and protein levels, with a slight impact on β-globin levels. Conversely, overexpression of RBM3 in HUDEP-2 cells led to a marked reduction in γ-globin expression. According to the previous study, we introduced specific inhibitors targeting FAK and Src to block RBM3 protein synthesis. Surprisingly, treatment with the FAK inhibitor resulted in a significant increase in γ-globin expression, whereas the Src inhibitor had little effect. Mechanistically, RBM3 depletion accelerated the degradation of BCL11A protein at the post-transcriptional level, without affecting its mRNA stability. Moreover, RBM3 silencing restricted the overall translation efficiency while selectively lifting the ratio of γ-globin mRNA in polysomes. Importantly, downregulation of RBM3 did not impair erythropoiesis progression, suggesting a safe and effective therapeutic strategy for SCD and β-thalassemia. Our findings identify RBM3 as a negative regulator of HbF expression and reveal it as a novel molecular target for modulating the fetal-to-adult hemoglobin switch, holding great promise for the treatment of SCD and β-thalassemia.
Volume 170
Pages 116107
Published 2026-2-1
DOI 10.1016/j.intimp.2025.116107
PII S1567-5769(25)02096-X
PMID 41455370
MeSH Anemia, Sickle Cell* / genetics Carrier Proteins / genetics Carrier Proteins / metabolism Cell Line Erythroid Precursor Cells* / physiology Erythropoiesis Fetal Hemoglobin* / genetics Fetal Hemoglobin* / metabolism Focal Adhesion Kinase 1 / antagonists & inhibitors Focal Adhesion Kinase 1 / metabolism Gene Expression Regulation Humans RNA, Messenger / genetics RNA, Messenger / metabolism RNA, Small Interfering / genetics RNA-Binding Proteins* / genetics RNA-Binding Proteins* / metabolism Repressor Proteins beta-Thalassemia* / genetics gamma-Globins / genetics gamma-Globins / metabolism src-Family Kinases / antagonists & inhibitors src-Family Kinases / metabolism
Resource
Human and Animal Cells HUDEP-2(RCB4557)