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Drug repositioning to propose alternative modulators for glucocorticoid receptor through structure-based virtual

Reyhan Metin1, Ebru Demet Akten2

  • 1Graduate Program of Computational Biology and Bioinformatics, Graduate School of Science and Engineering, Kadir Has University, Istanbul, Turkey.

Journal of Biomolecular Structure & Dynamics
|August 6, 2021
PubMed
Summary

Drug repositioning identified novel compounds targeting the human glucocorticoid receptor (hGR). Structure-based modeling screened existing drugs, revealing 19 unique nonsteroidal candidates with potential for reduced side effects.

Keywords:
Glucocorticoid receptordockingdrug repositioningnonsteroidalpharmacophore screening

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Area of Science:

  • Computational chemistry
  • Drug discovery
  • Molecular modeling

Background:

  • Drug repositioning offers a strategy for identifying new therapeutic agents with improved safety profiles.
  • Existing drugs targeting the human glucocorticoid receptor (hGR) often present persistent side effects.
  • Novel modulators for hGR are needed to address limitations of current therapies.

Purpose of the Study:

  • To employ structure-based pharmacophore modeling and molecular docking to screen existing drug libraries for novel hGR modulators.
  • To identify potential drug candidates with unique scaffolds and reduced side effect profiles.
  • To accelerate the discovery of new therapeutic solutions for hGR-related conditions.

Main Methods:

  • Development of a shared pharmacophore model based on hGR crystal structures.
  • Screening of small and large drug databases (including FDA-approved and investigational compounds).
  • Structure-based virtual screening, molecular docking, and molecular dynamics simulations were utilized.

Main Results:

  • The shared pharmacophore model successfully distinguished between hGR agonists and antagonists.
  • A library of over 5000 compounds yielded 110 initial hits, with 54 meeting docking criteria.
  • Nineteen nonsteroidal compounds with unique scaffolds were identified among the final hits.
  • Molecular dynamics simulations confirmed stable binding conformations for selected candidates.

Conclusions:

  • Structure-based pharmacophore modeling is an effective strategy for drug repositioning against hGR.
  • The study identified promising nonsteroidal drug candidates for hGR modulation.
  • These novel compounds represent potential alternatives with unique structures and potentially fewer side effects.