Multi-step in silico study of potential estrogen receptor alpha modulators: Integrating hierarchical virtual

Minakshi Chanda1, Akhilesh Gangwar1, Agnidipta Das1

  • 1Department of Pharmaceutical Sciences and Natural Products, Central University of Punjab, Ghudda, Bathinda, 151401, India.

Insights

Researchers identified a novel pyrimidine derivative, HIT 1, as a promising inhibitor for estrogen receptor alpha (ERα). This molecule shows potential for developing safer breast cancer treatments by targeting ERα-mediated progression and angiogenesis.

Area of Science:

  • Computational chemistry
  • Drug discovery
  • Molecular modeling

Background:

  • Estrogen receptor alpha (ERα) is vital in breast cancer (BC) progression.
  • Current anti-estrogen therapies face resistance and side effects.
  • Novel ERα modulators are needed for safer and more effective BC treatment.

Purpose of the Study:

  • To investigate pyrimidine derivatives as potential ERα modulators.
  • To identify novel inhibitors targeting the ERα ligand-binding domain.
  • To explore compounds that could suppress ERα-mediated BC progression and angiogenesis.

Main Methods:

  • High-throughput virtual screening of a large pyrimidine dataset.
  • Structure-based docking analysis against ERα (PDB ID: 4XI3).
  • Molecular dynamics simulations and DFT calculations for stability and feasibility.

Main Results:

  • HIT 1 exhibited a superior docking score compared to raloxifene.
  • Favorable pharmacokinetic properties and binding free energies were estimated for HIT 1.
  • Molecular dynamics and DFT confirmed the stability and bio-feasibility of the ERα-HIT 1 complex.

Conclusions:

  • HIT 1 is a promising scaffold for developing novel ERα modulators.
  • This compound has potential to inhibit ERα-mediated BC progression.
  • HIT 1 may offer a safer alternative for breast cancer therapy targeting angiogenesis.