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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
A p53-dependent tumor suppressor network is induced by selective miR-125a-5p inhibition in multiple myeloma cells
Marzia Leotta1, Lavinia Biamonte, Lavinia Raimondi
1Department of Experimental and Clinical Medicine, Magna Graecia University, Medical Oncology Unit, T. Campanella Cancer Center, Salvatore Venuta University Campus, Catanzaro, Italy.
Abstract:
The analysis of deregulated microRNAs (miRNAs) is emerging as a novel approach to disclose the regulation of tumor suppressor or tumor promoting pathways in tumor cells. Targeting aberrantly expressed miRNAs is therefore a promising strategy for cancer treatment. By miRNA profiling of primary plasma cells from multiple myeloma (MM) patients, we previously reported increased miR-125a-5p levels associated to specific molecular subgroups. On these premises, we aimed at investigating the biological effects triggered by miR-125a-5p modulation in MM cells. Expression of p53 pathway-related genes was down-regulated in MM cells transfected with miR-125a-5p mimics. Luciferase reporter assays confirmed specific p53 targeting at 3'UTR level by miR-125a-5p mimics. Interestingly, bone marrow stromal cells (BMSCs) affected the miR-125a-5p/p53 axis, since adhesion of MM cells to BMSCs strongly up-regulated miR-125a-5p levels, while reduced p53 expression. Moreover, ectopic miR-125a-5p reduced, while miR-125-5p inhibitors promoted, the expression of tumor suppressor miR-192 and miR-194, transcriptionally regulated by p53. Lentiviral-mediated stable inhibition of miR-125a-5p expression in wild-type p53 MM cells dampened cell growth, increased apoptosis and reduced cell migration. Importantly, inhibition of in vitro MM cell proliferation and migration was also achieved by synthetic miR-125a-5p inhibitors and was potentiated by the co-expression of miR-192 or miR-194. Taken together, our data indicate that miR-125a-5p antagonism results in the activation of p53 pathway in MM cells, underlying the crucial role of this miRNA in the biopathology of MM and providing the molecular rationale for the combinatory use of miR-125a inhibitors and miR-192 or miR-194 mimics for MM treatment.
Insights
Targeting microRNA-125a-5p (miR-125a-5p) in multiple myeloma (MM) reactivates the p53 pathway, inhibiting cancer cell growth and migration. This suggests miR-125a-5p inhibitors combined with miR-192 or miR-194 offer a promising MM treatment strategy.
Area of Science:
- Molecular Biology
- Oncology
- Gene Regulation
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression implicated in cancer development.
- Aberrant expression of miRNAs, like miR-125a-5p, is observed in multiple myeloma (MM).
- Understanding miRNA roles is crucial for developing targeted cancer therapies.
Purpose of the Study:
- To investigate the biological effects of modulating miR-125a-5p in multiple myeloma (MM) cells.
- To elucidate the role of miR-125a-5p in the p53 pathway and its regulation by bone marrow stromal cells (BMSCs).
- To evaluate the therapeutic potential of targeting miR-125a-5p in MM.
Main Methods:
- miRNA profiling of primary plasma cells from MM patients.
- Transfection of MM cells with miR-125a-5p mimics and inhibitors.
- Luciferase reporter assays to confirm p53 targeting.
- Co-culture of MM cells with BMSCs.
- Lentiviral-mediated gene silencing and lentiviral-mediated stable inhibition.
- Assessment of cell growth, apoptosis, and migration.
Main Results:
- miR-125a-5p mimics down-regulated p53 pathway genes and directly targeted p53 3'UTR in MM cells.
- BMSC adhesion up-regulated miR-125a-5p and reduced p53 expression in MM cells.
- miR-125a-5p inhibition suppressed MM cell growth, increased apoptosis, and reduced migration, effects potentiated by miR-192 or miR-194.
- Ectopic miR-125a-5p reduced tumor suppressor miR-192 and miR-194 expression, while inhibitors promoted it.
Conclusions:
- Antagonism of miR-125a-5p activates the p53 pathway in multiple myeloma cells.
- miR-125a-5p plays a critical role in the pathophysiology of MM.
- Combinatorial therapy using miR-125a inhibitors with miR-192 or miR-194 mimics presents a promising therapeutic strategy for MM.
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