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Published on: January 7, 2019
Ionizing radiation-inducible miR-27b suppresses leukemia proliferation via targeting cyclin A2
Bo Wang1, Dongping Li1, Anna Kovalchuk1
1Department of Biological Sciences, University of Lethbridge, Lethbridge, Alberta, Canada.
Purpose:
Ionizing radiation is a common carcinogen that is important for the development of leukemia. However, the underlying epigenetic mechanisms remain largely unknown. The goal of the study was to explore microRNAome alterations induced by ionizing radiation (IR) in murine thymus, and to determine the role of IR-inducible microRNA (miRNA/miR) in the development of leukemia.
Methods And Materials:
We used the well-established C57BL/6 mouse model and miRNA microarray profiling to identify miRNAs that are differentially expressed in murine thymus in response to irradiation. TIB152 human leukemia cell line was used to determine the role of estrogen receptor-α (ERα) in miR-27b transcription. The biological effects of ectopic miR-27b on leukemogenesis were measured by western immunoblotting, cell viability, apoptosis, and cell cycle analyses.
Results:
Here, we have shown that IR triggers the differential expression of miR-27b in murine thymus tissue in a dose-, time- and sex-dependent manner. miR-27b was significantly down-regulated in leukemia cell lines CCL119 and TIB152. Interestingly, ERα was overexpressed in those 2 cell lines, and it was inversely correlated with miR-27b expression. Therefore, we used TIB152 as a model system to determine the role of ERα in miR-27b expression and the contribution of miR-27b to leukemogenesis. β-Estradiol caused a rapid and transient reduction in miR-27b expression reversed by either ERα-neutralizing antibody or ERK1/2 inhibitor. Ectopic expression of miR-27b remarkably suppressed TIB152 cell proliferation, at least in part, by inducing S-phase arrest. In addition, it attenuated the expression of cyclin A2, although it had no effect on the levels of PCNA, PPARγ, CDK2, p21, p27, p-p53, and cleaved caspase-3.
Conclusion:
Our data reveal that β-estradiol/ERα signaling may contribute to the down-regulation of miR-27b in acute leukemia cell lines through the ERK1/2 pathway, and that miR-27b may function as a tumor suppressor that inhibits cell proliferation by targeting cyclin A2.
Insights
Ionizing radiation (IR) alters microRNA (miRNA) expression, down-regulating miR-27b in leukemia. This tumor suppressor miRNA inhibits proliferation by targeting cyclin A2, with its reduction linked to beta-estradiol/ERα signaling.
Area of Science:
- Epigenetics
- Molecular Biology
- Cancer Research
Background:
- Ionizing radiation (IR) is a known carcinogen linked to leukemia development.
- The epigenetic mechanisms, particularly microRNAome alterations, underlying IR-induced leukemogenesis are not well understood.
Purpose of the Study:
- To investigate microRNAome changes in murine thymus following IR exposure.
- To elucidate the role of IR-inducible microRNAs (miRNAs) in leukemia development.
Main Methods:
- Utilized a C57BL/6 mouse model and miRNA microarray profiling to identify differentially expressed miRNAs in irradiated murine thymus.
- Employed the TIB152 human leukemia cell line to study the role of estrogen receptor-α (ERα) in miR-27b transcription and its biological effects on leukemogenesis.
Main Results:
- IR induced dose-, time-, and sex-dependent differential expression of miR-27b in murine thymus.
- miR-27b was significantly downregulated in leukemia cell lines (CCL119, TIB152), inversely correlated with ERα overexpression.
- Ectopic miR-27b expression suppressed leukemia cell proliferation by inducing S-phase arrest and attenuating cyclin A2 expression.
Conclusions:
- β-estradiol/ERα signaling, potentially via the ERK1/2 pathway, contributes to miR-27b downregulation in acute leukemia.
- miR-27b acts as a tumor suppressor, inhibiting leukemia cell proliferation through targeting cyclin A2.
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