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Published on: July 21, 2018
PFKP Mediates Breast Cancer Metastasis Through Altered Glycolysis
Summayya Anwar1, Farhan Haq1, Muhammad Saeed1
1Biosciences, Commission on Science and Technology for Sustainable Development in the South (COMSATS) University Islamabad, Islamabad, PAK.
Abstract:
Background Despite recent breakthroughs in genetic profiling, breast cancer metastasis remains a considerable challenge affecting treatment and overall patient survival. Therefore, the discovery of target alternatives to restrain metastasis is urgently needed. In the current study, we aimed to identify novel targets driving metastasis and elucidate the underlying mechanisms. Methods We initially identified differentially expressed genes between primary breast tumors and metastatic breast cancer patients using datasets from the Gene Expression Omnibus (GEO) database. Subsequently, we validated these findings by examining the changes in gene expression and their direction in external datasets. Furthermore, we identified the significantly enriched pathways associated with gene expression. We analyzed PFKP expression patterns in 100 samples (normal, primary breast tumor, and metastasis) using quantitative real-time polymerase chain reaction (qRT-PCR), and survival analyses were performed. Results We identified 34 differentially expressed genes in metastatic breast tumors, with CCDC6, PKIA, UACA, and PFKP significantly upregulated (p < 0.05). PFKP was highly expressed in metastasis, negatively correlated with ER/PR/HER2 status, and linked to glycolysis-related genes (ENO1, PGM1, LDHB, and PGK1). Gene set enrichment analysis (GSEA) highlighted its role in glucose metabolism, hypoxia, and angiogenesis. qRT-PCR confirmed PFKP (p < 0.001) and Ki67 (p < 0.001) upregulation in 100 breast cancer samples. PFKP correlated with Ki67, and receiver operating characteristic (ROC) analysis (area under the curve (AUC) > 71%) indicated a strong predictive value. Higher PFKP expression was associated with poor survival, supporting its role as a prognostic marker. Conclusion The current study showed that PFKP promotes tumor metastasis through hypoxia-mediated altered glycolysis and can be a potential prognostic marker used to identify breast cancer metastasis.
Insights
Researchers identified Phosphofructokinase-platelet (PFKP) as a key driver of breast cancer metastasis. Targeting PFKP may offer new strategies to combat metastasis and improve patient survival outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Breast cancer metastasis presents a significant challenge to patient survival and treatment efficacy.
- Novel therapeutic targets are urgently needed to effectively manage metastatic breast cancer.
- Genetic profiling advancements highlight the need for identifying new metastasis drivers.
Purpose of the Study:
- To identify novel molecular targets that drive breast cancer metastasis.
- To elucidate the underlying mechanisms by which these targets promote metastasis.
- To evaluate the potential of identified targets as prognostic markers for breast cancer metastasis.
Main Methods:
- Differential gene expression analysis using Gene Expression Omnibus (GEO) datasets.
- Validation of gene expression changes in external datasets.
- Quantitative real-time polymerase chain reaction (qRT-PCR) for PFKP and Ki67 expression analysis.
- Survival analysis and receiver operating characteristic (ROC) curve analysis.
Main Results:
- Identified 34 differentially expressed genes in metastatic breast tumors; PFKP was significantly upregulated.
- PFKP expression correlated with glycolysis-related genes, hypoxia, and angiogenesis pathways.
- PFKP upregulation was confirmed in patient samples and associated with Ki67 expression.
- High PFKP expression served as a predictive marker for metastasis and was linked to poor patient survival.
Conclusions:
- PFKP promotes breast cancer metastasis via hypoxia-induced alterations in glycolysis.
- PFKP is a potential prognostic marker for identifying breast cancer metastasis.
- Targeting PFKP may represent a novel therapeutic strategy against breast cancer metastasis.
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