Discovery of new STAT3 inhibitors as anticancer agents using ligand-receptor contact fingerprints and

Nour Jamal Jaradat1, Walhan Alshaer2, Mamon Hatmal3

  • 1Department of Pharmaceutical Sciences, Faculty of Pharmacy, University of Jordan Amman 11492 Jordan mutasem@ju.edu.jo +962 6 5339649 +962 6 5355000 ext. 23305.

RSC Advances
|February 10, 2023
PubMed

Insights

This study developed a machine learning model to identify STAT3 inhibitors for cancer therapy. Data augmentation with multiple docked poses improved model accuracy, leading to the discovery of novel anti-cancer compounds.

Area of Science:

  • Computational Chemistry
  • Medicinal Chemistry
  • Machine Learning in Drug Discovery

Background:

  • Signal transducer and activator of transcription 3 (STAT3) is implicated in various cancers.
  • STAT3 inhibition presents a promising therapeutic strategy for anti-cancer treatments.

Purpose of the Study:

  • To develop a machine learning quantitative structure-activity relationship (QSAR) model for STAT3 inhibitors.
  • To identify novel STAT3 inhibitors through in silico screening and in vitro validation.

Main Methods:

  • Augmented training data using multiple docked poses of STAT3 inhibitors.
  • Employed Ligand-Receptor Contact Fingerprints and scoring values as descriptors.
  • Utilized Random Forests and XGBoost coupled with genetic algorithms and SHAP for descriptor identification.
  • Performed in silico screening against the NCI database and in vitro evaluation of hits.

Main Results:

  • Identified two successful pharmacophores for in silico screening.
  • Discovered three novel chemotype hits with anti-STAT3 bioactivity.
  • One hit demonstrated potent direct STAT3 inhibition (IC50 = 0.44 μM) and reduced STAT3 downstream gene expression.

Conclusions:

  • Data augmentation with multiple docked poses is effective for building robust QSAR models.
  • The study successfully identified novel direct STAT3 inhibitors with therapeutic potential.
  • The findings support the use of machine learning in accelerating the discovery of anti-cancer agents.

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