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Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
Transcriptomic analysis revealed potential regulatory biomarkers and repurposable drugs for breast cancer treatment
Most Shornale Akter1, Md Helal Uddin1, Sheikh Atikur Rahman1
1Department of Biotechnology and Genetic Engineering, Islamic University, Kushtia, Bangladesh.
Abstract:
Breast cancer (BC) is the most widespread cancer worldwide. Over 2 million new cases of BC were identified in 2020 alone. Despite previous studies, the lack of specific biomarkers and signaling pathways implicated in BC impedes the development of potential therapeutic strategies. We employed several RNAseq datasets to extract differentially expressed genes (DEGs) based on the intersection of all datasets, followed by protein-protein interaction network construction. Using the shared DEGs, we also identified significant gene ontology (GO) and KEGG pathways to understand the signaling pathways involved in BC development. A molecular docking simulation was performed to explore potential interactions between proteins and drugs. The intersection of the four datasets resulted in 146 DEGs common, including AURKB, PLK1, TTK, UBE2C, CDCA8, KIF15, and CDC45 that are significant hub-proteins associated with breastcancer development. These genes are crucial in complement activation, mitotic cytokinesis, aging, and cancer development. We identified key microRNAs (i.e., hsa-miR-16-5p, hsa-miR-1-3p, hsa-miR-147a, hsa-miR-195-5p, and hsa-miR-155-5p) that are associated with aggressive tumor behavior and poor clinical outcomes in BC. Notable transcription factors (TFs) were FOXC1, GATA2, FOXL1, ZNF24 and NR2F6. These biomarkers are involved in regulating cancer cell proliferation, invasion, and migration. Finally, molecular docking suggested Hesperidin, 2-amino-isoxazolopyridines, and NMS-P715 as potential lead compounds against BC progression. We believe that these findings will provide important insight into the BC progression as well as potential biomarkers and drug candidates for therapeutic development.
Insights
This study identifies key genes, microRNAs, and transcription factors involved in breast cancer (BC) progression. It also suggests potential drug compounds for developing new BC therapies.
Area of Science:
- Oncology
- Genomics
- Bioinformatics
Background:
- Breast cancer (BC) is a leading global cancer, with over 2 million cases in 2020.
- Lack of specific biomarkers and signaling pathways hinders effective BC therapeutic strategies.
- Identifying novel molecular targets is crucial for advancing BC treatment.
Purpose of the Study:
- To identify differentially expressed genes (DEGs) and key signaling pathways in breast cancer.
- To discover potential biomarkers and therapeutic drug candidates for BC.
- To analyze protein-protein interactions and molecular docking for drug discovery.
Main Methods:
- Utilized multiple RNAseq datasets to identify common DEGs.
- Constructed protein-protein interaction networks and analyzed gene ontology (GO) and KEGG pathways.
- Performed molecular docking simulations to evaluate potential drug interactions.
Main Results:
- Identified 146 common DEGs, including hub-proteins like AURKB, PLK1, and TTK, crucial for BC development.
- Discovered significant microRNAs (e.g., hsa-miR-16-5p) and transcription factors (e.g., FOXC1) linked to aggressive BC.
- Molecular docking identified Hesperidin, 2-amino-isoxazolopyridines, and NMS-P715 as potential therapeutic compounds.
Conclusions:
- The identified DEGs, microRNAs, and transcription factors serve as potential biomarkers for BC progression.
- These findings offer insights into BC pathogenesis and suggest novel drug candidates for therapeutic development.
- This research provides a foundation for future BC treatment strategies.

