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Starvation Stress Attenuates the MiRNA-target Interaction in Suppressing Breast Cancer Cell Proliferation

Overview
Journal BMC Cancer
Publisher Biomed Central
Specialty Oncology
Date 2020 Jul 8
PMID 32631271
Citations 3
Authors
Affiliations
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Abstract

Background: Emerging evidence has demonstrated the limited access to metabolic substrates as an effective approach to block cancer cell growth. The mechanisms remain unclear. Our previous work has revealed that miR-221/222 plays important role in regulating breast cancer development and progression through interaction with target gene p27.

Results: Herein, we determined the miRNA-mRNA interaction in breast cancer cells under induced stress status of starvation. Starvation stimulation attenuated the miR-221/222-p27 interaction in MDA-MB-231 cells, thereby increased p27 expression and suppressed cell proliferation. Through overexpression or knockdown of miR-221/222, we found that starvation-induced stress attenuated the negative regulation of p27 expression by miR-221/222. Similar patterns for miRNA-target mRNA interaction were observed between miR-17-5p and CyclinD1, and between mR-155 and Socs1. Expression of Ago2, one of the key components of RNA-induced silencing complex (RISC), was decreased under starvation-induced stress status, which took responsibility for the impaired miRNA-target interaction since addition of exogenous Ago2 into MDA-MB-231 cells restored the miR-221/222-p27 interaction in starvation condition.

Conclusions: We demonstrated the attenuated interaction between miR-221/222 and p27 by starvation-induced stress in MDA-MB-231 breast cancer cells. The findings add a new page to the general knowledge of negative regulation of gene expression by miRNAs, also demonstrate a novel mechanism through which limited access to nutrients suppresses cancer cell proliferation. These insights provide a basis for development of novel therapeutic options for breast cancer.

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References
1.
Miller T, Ghoshal K, Ramaswamy B, Roy S, Datta J, Shapiro C . MicroRNA-221/222 confers tamoxifen resistance in breast cancer by targeting p27Kip1. J Biol Chem. 2008; 283(44):29897-903. PMC: 2573063. DOI: 10.1074/jbc.M804612200. View

2.
Lichtman S . Guidelines for the treatment of elderly cancer patients. Cancer Control. 2003; 10(6):445-53. DOI: 10.1177/107327480301000602. View

3.
Ferlay J, Colombet M, Soerjomataram I, Dyba T, Randi G, Bettio M . Cancer incidence and mortality patterns in Europe: Estimates for 40 countries and 25 major cancers in 2018. Eur J Cancer. 2018; 103:356-387. DOI: 10.1016/j.ejca.2018.07.005. View

4.
Li Z, Peng Z, Gu S, Zheng J, Feng D, Qin Q . Global Analysis of miRNA-mRNA Interaction Network in Breast Cancer with Brain Metastasis. Anticancer Res. 2017; 37(8):4455-4468. DOI: 10.21873/anticanres.11841. View

5.
Millar E, Graham P, McNeil C, Browne L, OToole S, Boulghourjian A . Prediction of outcome of early ER+ breast cancer is improved using a biomarker panel, which includes Ki-67 and p53. Br J Cancer. 2011; 105(2):272-80. PMC: 3142808. DOI: 10.1038/bjc.2011.228. View