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A novel miR-375-HOXB3-CDCA3/DNMT3B regulatory circuitry contributes to leukemogenesis in acute myeloid leukemia
Laixi Bi1, Bin Zhou2, Haiying Li2
1Department of Hematology, The First Affiliated Hospital of Wenzhou Medical University, Nanbaixiang, Ouhai District, Wenzhou, Zhejiang Province, 325000, China.
Background:
Acute myeloid leukemia (AML) is a heterogeneous group of hematopoietic malignancies due to sophisticated genetic mutations and epigenetic dysregulation. MicroRNAs (miRNAs), a class of small non-coding RNAs, are important regulators of gene expression in all biological processes, including leukemogenesis. Recently, miR-375 has been reported to be a suppressive miRNA in multiple types of cancers, but its underlying anti-leukemia activity in AML is largely unknown.
Methods:
Quantitative reverse transcriptase PCR (qRT-PCR) was used to measure the expression of miR-375 and HOXB3 in leukemic cells and normal controls. Targets of miR-375 were confirmed by western blot and luciferase assay. Phenotypic effects of miR-375 overexpression and HOXB3 knockdown were assessed using viability (trypan blue exclusion assay), colony formation/replating, as well as tumor xenograft assays in vivo.
Results:
The expression of miR-375 was substantially decreased in leukemic cell lines and primary AML blasts compared with normal controls, because DNA hypermethylation of precursor-miR-375 (pre-miR-375) promoter was discovered in leukemic cells but not in normal controls. Lower expression of miR-375 predicted poor outcome in AML patients. Furthermore, forced expression of miR-375 not only decreased proliferation and colony formation in leukemic cells but also reduced xenograft tumor size and prolonged the survival time in a leukemia xenograft mouse model. Mechanistically, overexpression of miR-375 reduced HOXB3 expression and repressed the activity of a luciferase reporter through binding 3'-untranslated regions (3'-UTR) of HOXB3 mRNA. Overexpression of HOXB3 partially blocked miR-375-induced arrest of proliferation and reduction of colony number, suggesting that HOXB3 plays an important role in miR-375-induced anti-leukemia activity. Knockdown of HOXB3 by short hairpin RNAs reduced the expression of cell division cycle associated 3 (CDCA3), which decreased cell proliferation. Furthermore, HOXB3 induced DNA methyltransferase 3B (DNMT3B) expression to bind in the pre-miR-375 promoter and enhanced DNA hypermethylation of pre-miR-375, leading to the lower expression of miR-375.
Conclusions:
Collectively, we have identified a miR-375-HOXB3-CDCA3/DNMT3B regulatory circuitry which contributes to leukemogenesis and suggests a therapeutic strategy of restoring miR-375 expression in AML.
Insights
MicroRNA-375 (miR-375) is significantly downregulated in acute myeloid leukemia (AML) due to DNA hypermethylation. Restoring miR-375 shows anti-leukemia effects by targeting HOXB3, offering a potential therapeutic strategy for AML.
Area of Science:
- Molecular Biology
- Oncology
- Epigenetics
Background:
- Acute myeloid leukemia (AML) is a complex blood cancer driven by genetic and epigenetic changes.
- MicroRNAs (miRNAs) are key gene regulators implicated in cancer development.
- The role of miR-375 in AML pathogenesis was previously unclear.
Purpose of the Study:
- To investigate the function and regulatory mechanisms of miR-375 in acute myeloid leukemia.
- To explore the potential of miR-375 as a therapeutic target for AML.
Main Methods:
- Quantitative reverse transcriptase PCR (qRT-PCR) to measure miR-375 and HOXB3 expression.
- Western blot and luciferase assays to confirm miR-375 targets.
- In vitro and in vivo assays (viability, colony formation, xenografts) to assess miR-375 and HOXB3 effects.
Main Results:
- miR-375 expression is decreased in AML cells due to promoter hypermethylation.
- Lower miR-375 levels correlate with poor prognosis in AML patients.
- Overexpressing miR-375 inhibits leukemia cell proliferation, colony formation, and reduces tumor growth in vivo.
- miR-375 targets HOXB3, and HOXB3 overexpression partially reverses miR-375's anti-leukemia effects.
- HOXB3 promotes leukemogenesis by upregulating DNMT3B, leading to miR-375 hypermethylation.
Conclusions:
- A regulatory circuit involving miR-375, HOXB3, CDCA3, and DNMT3B is identified in AML.
- Restoring miR-375 expression presents a promising therapeutic strategy for acute myeloid leukemia.
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