Bioinformatics and network-based screening and discovery of potential molecular targets and small molecular drugs for

Md Shahin Alam1, Adiba Sultana1, Hongyang Sun1

  • 1Laboratory of Molecular Neuropathology, Department of Pharmacology, Jiangsu Key Laboratory of Neuropsychiatric Diseases and College of Pharmaceutical Sciences, Soochow University, Suzhou, Jiangsu, China.

Insights

This study identifies key genes and repurposes drugs for breast cancer (BC) treatment. Masitinib was validated to inhibit mTOR signaling and induce apoptosis in BC cell lines.

Area of Science:

  • Bioinformatics
  • Oncology
  • Genomics

Background:

  • Accurate identification of molecular targets is crucial for cancer diagnosis, prognosis, and therapy.
  • Breast cancer (BC) is a leading cause of cancer-related mortality in women globally.
  • Developing effective diagnostic and therapeutic strategies for BC remains a significant challenge.

Purpose of the Study:

  • To identify molecular targets and small molecule drugs for breast cancer (BC) diagnosis, prognosis, and therapy.
  • To leverage bioinformatics and network-based approaches for target and drug discovery.
  • To validate potential therapeutic agents in BC cell lines.

Main Methods:

  • Utilized nine gene expression profiles from the Gene Expression Omnibus (GEO) database.
  • Employed LIMMA and clusterProfiler for differential gene expression and enrichment analysis.
  • Constructed a protein-protein interaction (PPI) network using STRING and identified key genes (KGs) via topological measures in Cytoscape.
  • Analyzed drug enrichment, regulatory networks, and gene expression using GSCALite, Network Analyst, and GEPIA.
  • Assessed prognostic power using support vector machine (SVM) and performed molecular docking for drug candidates.
  • Validated drug efficacy in BC cell lines.

Main Results:

  • Identified eight key genes (EGFR, FN1, EZH2, MET, CDK1, AURKA, TOP2A, BIRC5) and their regulators (four TFs and four miRNAs).
  • Proposed 16 candidate repurposing drugs, including masitinib, dasatinib, and dabrafenib, through molecular docking.
  • Validated that masitinib inhibits the mTOR signaling pathway and induces apoptosis in BC cell lines.
  • Demonstrated the prognostic significance of key genes using SVM.

Conclusions:

  • The study successfully identified key molecular targets and potential repurposing drugs for breast cancer.
  • Masitinib shows promise as a therapeutic agent by targeting the mTOR pathway and inducing apoptosis.
  • The findings provide a foundation for developing novel diagnostic and therapeutic strategies for BC.

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