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miR-16-5p enhances sensitivity to RG7388 through targeting PPM1D expression (WIP1) in Childhood Acute Lymphoblastic
Maryam Zanjirband1, Soheila Rahgozar1, Narges Aberuyi1
1Department of Cell and Molecular Biology & Microbiology, Faculty of Biological Science and Technology, University of Isfahan, Isfahan 15100, Iran.
Abstract:
Aim: Given the encouraging results of the p53-Mdm2 inhibitor RG7388 in clinical trials and the vital function of miR-16-5p in suppressing cell proliferation, the aim of the present study was to investigate the combined impact of RG7388 and miR-16-5p overexpression on the childhood acute lymphoblastic leukemia (chALL). Methods: miRTarBase and miRDB, along with KEGG and STRING databases, were used to predict miR-16-5p target genes and explore protein-protein interaction networks, respectively. B- and T-lymphoblastic cell lines, in addition to patient primary cells, were treated with RG7388. Ectopic overexpression of miR-16-5p in Nalm6 cell line was induced through cell electroporation and transfection of microRNA mimics was confirmed by qRT-PCR. Cell viability was evaluated using the MTT assay. Western blot analyses were performed to evaluate the effects of RG7388 and miR-16-5p upregulation on the protein levels of p53 and its downstream target genes in chALL cells. Paired sample t-test was employed for statistical analyses. Results: MTT assay showed RG7388-induced cytotoxicity in wild-type p53 Nalm6 cell line and p53 functional patient primary cells. However, CCRF-CEM and p53 non-functional leukemic cells indicated drug resistance. Western blot analyses validated the bioinformatics results, confirming the downregulation of WIP1, p53 stabilization, as well as overexpression of p21WAF1 and Mdm2 proteins in Nalm6 cells transfected with miR-16-5p. Moreover, enhanced sensitivity to RG7388 was observed in the transfected cells. Conclusion: This is the first study indicating the mechanistic importance of miR-16-5p overexpression in chALL and its inhibitory role in leukemia treatment when combined with the p53-Mdm2 antagonist, RG7388. These findings might be useful for researchers and clinicians to pave the way for better management of chALL.
Insights
Overexpressing miR-16-5p enhances childhood acute lymphoblastic leukemia (chALL) cell sensitivity to the p53-Mdm2 inhibitor RG7388. This combination therapy shows promise for improving chALL treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Childhood acute lymphoblastic leukemia (chALL) remains a significant challenge in pediatric oncology.
- The p53-Mdm2 pathway is a critical regulator of cell survival and proliferation, making it a target for cancer therapy.
- MicroRNAs, such as miR-16-5p, play vital roles in regulating gene expression and cellular processes, including proliferation suppression.
Purpose of the Study:
- To investigate the combined therapeutic effect of RG7388, a p53-Mdm2 inhibitor, and miR-16-5p overexpression in childhood acute lymphoblastic leukemia (chALL).
- To elucidate the molecular mechanisms underlying the interaction between RG7388 and miR-16-5p in chALL cells.
Main Methods:
- Bioinformatic prediction of miR-16-5p target genes and protein-protein interaction networks using databases like miRTarBase, miRDB, KEGG, and STRING.
- Treatment of B- and T-lymphoblastic cell lines and primary patient cells with RG7388.
- Ectopic overexpression of miR-16-5p in the Nalm6 cell line via electroporation and microRNA mimics, confirmed by qRT-PCR.
- Assessment of cell viability using MTT assays and protein level analysis via Western blot.
Main Results:
- RG7388 demonstrated cytotoxicity in wild-type p53 chALL cells but resistance in p53 non-functional cells.
- miR-16-5p overexpression in Nalm6 cells led to p53 stabilization, downregulation of WIP1, and upregulation of p21(WAF1) and Mdm2.
- Combined treatment with RG7388 and miR-16-5p overexpression resulted in enhanced sensitivity to RG7388 in chALL cells.
Conclusions:
- This study is the first to demonstrate the mechanistic role of miR-16-5p overexpression in chALL treatment.
- Overexpression of miR-16-5p potentiates the anti-leukemic effects of the p53-Mdm2 inhibitor RG7388.
- These findings offer a potential new therapeutic strategy for improving the management of chALL.

