miR-622 Increases miR-30a Expression through Inhibition of Hypoxia-Inducible Factor 1α to Improve Metastasis and Chemoresistance in Human Invasive Breast Cancer Cells

Author:

Cheng Chun-Wen12,Liu Yu-Fan3,Liao Wen-Ling45ORCID,Chen Po-Ming1ORCID,Hung Yueh-Tzu1,Lee Huei-Jane6ORCID,Cheng Yu-Chun7,Wu Pei-Ei8,Lu Yen-Shen910,Shen Chen-Yang811

Affiliation:

1. Institute of Medicine, Chung Shan Medical University, Taichung 40201, Taiwan

2. Department of Medical Research, Chung Shan Medical University Hospital, Taichung 40201, Taiwan

3. Department of Biomedical Sciences, Chung Shan Medical University, Taichung 40201, Taiwan

4. School of Medicine, China Medical University, Taichung 40604, Taiwan

5. Department of Medical Genetics and Medical Research, China Medical University Hospital, Taichung 40604, Taiwan

6. Department of Biochemistry, School of Medicine, College of Medicine, Chung Shan Medical University, Taichung 40201, Taiwan

7. Department of Internal Medicine, Cathay General Hospital, Taipei 10629, Taiwan

8. Institute of Biomedical Sciences, Academia Sinica, Taipei 11529, Taiwan

9. Department of Oncology, National Taiwan University Hospital, Taipei 10022, Taiwan

10. Department of Internal Medicine, National Taiwan University Hospital, Taipei 10022, Taiwan

11. College of Public Health, China Medical University, Taichung 40604, Taiwan

Abstract

Hypoxia-inducible factor 1α (HIF-1α) plays a pivotal role in the survival, metastasis, and response to treatment of solid tumors. Autophagy serves as a mechanism for tumor cells to eliminate misfolded proteins and damaged organelles, thus promoting invasiveness, metastasis, and resistance to treatment under hypoxic conditions. MicroRNA (miRNA) research underscores the significance of these non-coding molecules in regulating cancer-related protein synthesis across diverse contexts. However, there is limited reporting on miRNA-mediated gene expression studies, especially with respect to epithelial–mesenchymal transition (EMT) and autophagy in the context of hypoxic breast cancer. Our study reveals decreased levels of miRNA-622 (miR-622) and miRNA-30a (miR-30a) in invasive breast cancer cells compared to their non-invasive counterparts. Inducing miR-622 suppresses HIF-1α protein expression, subsequently activating miR-30a transcription. This cascade results in reduced invasiveness and migration of breast cancer cells by inhibiting EMT markers, such as Snail, Slug, and vimentin. Furthermore, miR-30a negatively regulates beclin 1, ATG5, and LC3-II and inhibits Akt protein phosphorylation. Consequently, this improves the sensitivity of invasive MDA-MB-231 cells to docetaxel treatment. In conclusion, our study highlights the therapeutic potential of inducing miR-622 to promote miR-30a expression and thus disrupt HIF-1α-associated EMT and autophagy pathways. This innovative strategy presents a promising approach to the treatment of aggressive breast cancer.

Funder

Ministry of Science and Technology of Taiwan

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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