Unraveling the Complexities in TNBC Gene Interaction Networks Towards Better Therapeutics

Priyanga Paranthaman1, HemaNandini Rajendran Krishnamoorthy1, Selvakumar Veluchamy2

  • 1Department of Biotechnology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, Tamil Nadu, India.

Insights

Triple-negative breast cancer (TNBC) is aggressive. Network analysis identified EP300 as a key protein, leading to the discovery of tirbanibulin as a potential drug candidate for repurposing against TNBC.

Area of Science:

  • Oncology
  • Bioinformatics
  • Computational Biology

Background:

  • Triple-negative breast cancer (TNBC) is an aggressive subtype with limited targeted therapies.
  • Network-based analysis of protein-protein interactions (PPI) can identify key regulatory proteins in cancer.

Purpose of the Study:

  • To identify hub proteins in TNBC using PPI network analysis.
  • To discover potential drug candidates for EP300, a key protein in TNBC, through drug repurposing.

Main Methods:

  • Constructed a PPI network of 1413 dysregulated genes in TNBC.
  • Identified hub proteins including TP53, SRC, EP300, AKT1, HSP90AA1, MAPK3, EGFR, and SMAD3.
  • Utilized molecular docking, MM-GBSA, and ML-based rescoring to screen FDA-approved compounds against EP300, identifying tirbanibulin (DB06137).

Main Results:

  • The PPI network revealed significant interactions among hub genes.
  • No FDA-approved drugs directly target the EP300 protein.
  • Tirbanibulin (DB06137) demonstrated strong binding affinity and structural stability with EP300, suggesting therapeutic potential.

Conclusions:

  • Tirbanibulin is a promising repurposed drug candidate for targeting EP300 in TNBC.
  • Further experimental validation is warranted to explore tirbanibulin's efficacy and mechanism against EP300.
  • This study highlights the potential of network analysis and drug repurposing in advancing TNBC therapeutics.

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