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Published on: July 30, 2020
MicroRNA let-7b regulates genomic balance by targeting Aurora B kinase
Jenni Heidi Eveliina Mäki-Jouppila1, Sofia Pruikkonen2, Mahesh Balasaheb Tambe3
1VTT Health, VTT Technical Research Centre of Finland, 20520 Turku, Finland; Centre for Biotechnology, University of Turku, 20520 Turku, Finland; Drug Research Doctoral Programme and FinPharma Doctoral Program Drug Discovery, Finland; Department of Pharmacology, Drug Development and Therapeutics, University of Turku, 20520 Turku, Finland.
Abstract:
The let-7 microRNA (miRNA) family has been implicated in the regulation of diverse cellular processes and disease pathogenesis. In cancer, loss-of-function of let-7 miRNAs has been linked to tumorigenesis via increased expression of target oncogenes. Excessive proliferation rate of tumor cells is often associated with deregulation of mitotic proteins. Here, we show that let-7b contributes to the maintenance of genomic balance via targeting Aurora B kinase, a key regulator of the spindle assembly checkpoint (SAC). Our results indicate that let-7b binds to Aurora B kinase 3'UTR reducing mRNA and protein expression of the kinase. In cells, excess let-7b induced mitotic defects characteristic to Aurora B perturbation including increased rate of polyploidy and multipolarity, and premature SAC inactivation that leads to forced exit from chemically induced mitotic arrest. Moreover, the frequency of aneuploid HCT-116 cells was significantly increased upon let-7b overexpression compared to controls. Interestingly, together with a chemical Aurora B inhibitor, let-7b had an additive effect on polyploidy induction in HeLa cells. In breast cancer patients, reduced let-7b expression was found to be associated with increased Aurora B expression in grade 3 tumors. Furthermore, let-7b was found downregulated in the most aggressive forms of breast cancer determined by clinicopathological parameters. Together, our findings suggest that let-7b contributes to the fidelity of cell division via regulation of Aurora B. Moreover, the loss of let-7b in aggressive tumors may drive tumorigenesis by up-regulation of Aurora B and other targets of the miRNA, which further supports the role of let-7b in tumor suppression.
Insights
The let-7b microRNA (miRNA) maintains genomic stability by targeting Aurora B kinase, crucial for cell division. Reduced let-7b in aggressive breast cancers correlates with higher Aurora B, suggesting let-7b
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- The let-7 microRNA (miRNA) family plays a role in cellular processes and disease.
- Loss of let-7 miRNAs in cancer is linked to increased oncogene expression and uncontrolled cell proliferation.
- Mitotic protein deregulation is often observed in rapidly proliferating tumor cells.
Purpose of the Study:
- To investigate the role of let-7b in maintaining genomic balance.
- To determine if let-7b targets Aurora B kinase, a regulator of the spindle assembly checkpoint (SAC).
- To explore the clinical relevance of let-7b and Aurora B expression in breast cancer.
Main Methods:
- Assessed let-7b binding to Aurora B kinase 3'UTR.
- Measured mRNA and protein expression levels of Aurora B kinase.
- Induced let-7b overexpression in cell lines (HCT-116, HeLa) to observe mitotic defects.
- Analyzed let-7b and Aurora B expression in human breast cancer tissues.
Main Results:
- let-7b directly reduces Aurora B kinase mRNA and protein expression.
- Overexpression of let-7b leads to mitotic defects, including polyploidy, multipolarity, and premature SAC inactivation.
- Reduced let-7b expression in aggressive breast tumors correlates with increased Aurora B expression.
Conclusions:
- let-7b contributes to the fidelity of cell division by regulating Aurora B kinase.
- Downregulation of let-7b in aggressive cancers may promote tumorigenesis through Aurora B upregulation.
- let-7b functions as a tumor suppressor by maintaining genomic stability.
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