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Published on: April 6, 2012
MicroRNA-561-3p indirectly regulates the PD-L1 expression by targeting ZEB1, HIF1A, and MYC genes in breast cancer
Atena Yousefi1, Fattah Sotoodehnejadnematalahi1, Nahid Nafissi2
1Department of Biology, School of Basic Science, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Abstract:
Globally, breast cancer is the second most common cause of cancer-related deaths among women. In breast cancer, microRNAs (miRNAs) are essential for both the initiation and development of tumors. It has been suggested that the tumor suppressor microRNA-561-3p (miR-561-3p) is crucial in arresting the growth of cancer cells. Further research is necessary to fully understand the role and molecular mechanism of miR-561 in human BC. The aim of this study was to investigate the inhibitory effect of miR-561-3p on ZEB1, HIF1A, and MYC expression as oncogenes that have the most impact on PD-L1 overexpression and cellular processes such as proliferation, apoptosis, and cell cycle in breast cancer (BC) cell lines. The expression of ZEB1, HIF1A, and MYC genes and miR-561-3p were measured in BC clinical samples and cell lines via qRT-PCR. The luciferase assay, MTT, Annexin-PI staining, and cell cycle experiments were used to assess the effect of miR-561-3p on candidate gene expression, proliferation, apoptosis, and cell cycle progression. Flow cytometry was used to investigate the effects of miR-561 on PD-L1 suppression in the BC cell line. The luciferase assay showed that miRNA-561-3p targets the 3'-UTRs of ZEB1, HIF1A and MYC genes significantly. In BC tissues, the qRT-PCR results demonstrated that miR-561-3p expression was downregulated and the expression of ZEB1, HIF1A and MYC genes was up-regulated. It was shown that overexpression of miR-561-3p decreased PD-L1 expression and BC cell proliferation, and induced apoptosis and cell cycle arrest through downregulation of candidate oncogenes. Furthermore, inhibition of candidate genes by miR-561-3p reduced PD-L1 at both mRNA and protein levels. Our research investigated the impact of miR-561-3p on the expression of ZEB1, HIF1A and MYC in breast cancer cells for the first time. Our findings may help clarify the role of miR-561-3p in PD-L1 regulation and point to this miR as a potential biomarker and novel therapeutic target for cancer immunotherapy.
Insights
MicroRNA-561-3p (miR-561-3p) suppresses breast cancer growth by inhibiting oncogenes ZEB1, HIF1A, and MYC. This downregulation reduces PD-L1 expression, proliferation, and promotes apoptosis, offering a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- Breast cancer (BC) is a leading cause of cancer deaths in women.
- MicroRNAs (miRNAs) play critical roles in BC initiation and progression.
- MicroRNA-561-3p (miR-561-3p) is a potential tumor suppressor, but its precise role in BC requires further elucidation.
Purpose of the Study:
- To investigate the inhibitory effect of miR-561-3p on ZEB1, HIF1A, and MYC oncogenes in breast cancer.
- To determine the impact of miR-561-3p on PD-L1 expression, proliferation, apoptosis, and cell cycle.
- To explore miR-561-3p as a potential therapeutic target and biomarker in breast cancer immunotherapy.
Main Methods:
- Quantitative real-time PCR (qRT-PCR) to measure gene and miRNA expression in BC samples and cell lines.
- Luciferase assay to confirm direct targeting of ZEB1, HIF1A, and MYC by miR-561-3p.
- MTT assay, Annexin-PI staining, cell cycle analysis, and flow cytometry to assess functional effects.
Main Results:
- miR-561-3p directly targets the 3'-UTRs of ZEB1, HIF1A, and MYC.
- miR-561-3p was significantly downregulated, while ZEB1, HIF1A, and MYC were upregulated in BC tissues.
- Overexpression of miR-561-3p reduced BC cell proliferation, decreased PD-L1 expression, induced apoptosis, and caused cell cycle arrest.
Conclusions:
- miR-561-3p acts as a tumor suppressor in breast cancer by downregulating ZEB1, HIF1A, and MYC.
- miR-561-3p inhibits PD-L1 expression, proliferation, and promotes apoptosis in BC cells.
- miR-561-3p represents a promising biomarker and therapeutic target for breast cancer immunotherapy.
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