Therapeutic Targeting of miR-29b/HDAC4 Epigenetic Loop in Multiple Myeloma
Nicola Amodio1, Maria Angelica Stamato2, Anna Maria Gullà2
1Department of Experimental and Clinical Medicine, Magna Graecia University and Translational Medical Oncology Unit, Salvatore Venuta University Campus, Catanzaro, Italy. tassone@unicz.it amodio@unicz.it.
Abstract:
Epigenetic abnormalities are common in hematologic malignancies, including multiple myeloma, and their effects can be efficiently counteracted by a class of tumor suppressor miRNAs, named epi-miRNAs. Given the oncogenic role of histone deacetylases (HDAC) in multiple myeloma, we investigated whether their activity could be antagonized by miR-29b, a well-established epi-miRNA. We demonstrated here that miR-29b specifically targets HDAC4 and highlighted that both molecules are involved in a functional loop. In fact, silencing of HDAC4 by shRNAs inhibited multiple myeloma cell survival and migration and triggered apoptosis and autophagy, along with the induction of miR-29b expression by promoter hyperacetylation, leading to the downregulation of prosurvival miR-29b targets (SP1, MCL-1). Moreover, treatment with the pan-HDAC inhibitor SAHA upregulated miR-29b, overcoming the negative control exerted by HDAC4. Importantly, overexpression or inhibition of miR-29b, respectively, potentiated or antagonized SAHA activity on multiple myeloma cells, as also shown in vivo by a strong synergism between miR-29b synthetic mimics and SAHA in a murine xenograft model of human multiple myeloma. Altogether, our results shed light on a novel epigenetic circuitry regulating multiple myeloma cell growth and survival and open new avenues for miR-29b-based epi-therapeutic approaches in the treatment of this malignancy. Mol Cancer Ther; 15(6); 1364-75. ©2016 AACR.
Insights
This study reveals that miR-29b counteracts multiple myeloma by targeting HDAC4. Combining miR-29b with HDAC inhibitors like SAHA shows synergistic effects, offering new therapeutic strategies for this blood cancer.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Epigenetic abnormalities are prevalent in multiple myeloma.
- Epi-miRNAs, such as miR-29b, act as tumor suppressors.
- Histone deacetylases (HDACs) play an oncogenic role in multiple myeloma.
Purpose of the Study:
- To investigate the interaction between miR-29b and HDACs in multiple myeloma.
- To determine if miR-29b antagonizes HDAC activity.
- To explore miR-29b-based therapeutic strategies for multiple myeloma.
Main Methods:
- Investigated miR-29b targeting of HDAC4 using molecular biology techniques.
- Utilized shRNAs to silence HDAC4 and assessed effects on multiple myeloma cells.
- Treated cells with the pan-HDAC inhibitor SAHA and modulated miR-29b expression.
- Evaluated synergistic effects of miR-29b mimics and SAHA in a murine xenograft model.
Main Results:
- miR-29b specifically targets and downregulates HDAC4.
- Silencing HDAC4 inhibited multiple myeloma cell survival, migration, and induced apoptosis/autophagy.
- SAHA treatment upregulated miR-29b, overcoming HDAC4-mediated repression.
- miR-29b and SAHA demonstrated significant in vitro and in vivo synergy.
Conclusions:
- Identified a novel epigenetic regulatory loop involving miR-29b and HDAC4 in multiple myeloma.
- Demonstrated that miR-29b can overcome HDAC4-mediated oncogenic effects.
- Established the therapeutic potential of combining miR-29b with HDAC inhibitors for multiple myeloma treatment.
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