Integrative transcriptome analysis of triple negative breast cancer profiles for identification of druggable targets

Poornima Arumugam1, Vignesh Ramesh2, Banupriya Sampathkumar1

  • 1Department of Biochemistry, Biotechnology and Bioinformatics, Avinashilingam Institute for Home Science and Higher Education For Women, Coimbatore, Tamil Nadu, India.

Insights

Researchers identified 45 consistently differentially expressed genes (CDGs) in triple-negative breast cancer (TNBC). The drug doxorubicin and phytocompound anethole showed potential for targeted TNBC therapy by downregulating these genes.

Area of Science:

  • Genomics and Bioinformatics
  • Cancer Biology
  • Pharmacology

Background:

  • Triple-negative breast cancer (TNBC) lacks specific molecular targets, necessitating research into gene dysregulation for therapeutic advancements.
  • Identifying consistently differentially expressed genes (CDGs) in TNBC is crucial for understanding tumorigenesis and discovering novel therapeutic targets.

Approach:

  • A meta-analysis of TNBC mRNA profiles identified 45 CDGs (36 upregulated, 9 downregulated).
  • Pathway analysis (MsigDB) and interaction mapping elucidated gene functions.
  • Drug screening using connectivity mapping identified doxorubicin as a modulator of CDGs.
  • Molecular docking assessed interactions between doxorubicin, anethole, and key CDGs (e.g., AURKA, CDC6, E2F1).
  • Gene expression analysis in MDA-MB-231 cells confirmed the synergistic downregulation effect of anethole and doxorubicin on selected CDGs.

Key Points:

  • 45 consistently differentially expressed genes (CDGs) were identified in triple-negative breast cancer.
  • Doxorubicin and the phytocompound anethole demonstrated significant interactions with key CDGs.
  • Synergistic treatment with anethole and doxorubicin effectively downregulated CDG expression in MDA-MB-231 cells.

Conclusions:

  • The identified CDGs hold clinical significance for triple-negative breast cancer.
  • The combination of anethole and doxorubicin presents a promising strategy for targeted TNBC therapy.

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