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  1. Home
  2. Scholalry Output
  3. Publications
  4. Discovery of Quinazoline and Quinoline-Based Small Molecules as Utrophin Upregulators via AhR Antagonism for the Treatment of Duchenne Muscular Dystrophy
 
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Discovery of Quinazoline and Quinoline-Based Small Molecules as Utrophin Upregulators via AhR Antagonism for the Treatment of Duchenne Muscular Dystrophy

Journal
Journal of Medicinal Chemistry
ISSN
00222623
Date Issued
2024
Author(s)
Surojit Ghosh
Mohammad Umar Arshi
Satyajit Ghosh
Moumita Jash
Samya Sen
Kamel Mamchaoui
Bhattacharyya, Sudipta 
Department of Bioscience and Bioengineering 
Rana, Nirmal Kumar 
Department of Chemistry 
Ghosh, Surajit 
Department of Bioscience and Bioengineering 
DOI
10.1021/acs.jmedchem.4c00398
Abstract
Duchenne muscular dystrophy (DMD) is a fatal muscle-wasting disease caused by the absence of a dystrophin protein. Elevating utrophin, a dystrophin paralogue, offers an alternative therapeutic strategy for treating DMD, irrespective of the mutation type. Herein, we report the design and synthesis of novel quinazoline and quinoline-based small molecules as potent utrophin modulators screened via high throughput In-Cell ELISA in C2C12 cells. Remarkably, lead molecule SG-02, identified from a library of 70 molecules, upregulates utrophin 2.7-fold at 800 nM in a dose-dependent manner, marking the highest upregulation within the nanomolar range. SG-02’s efficacy was further validated through DMD patient-derived cells, demonstrating a significant 2.3-fold utrophin expression. Mechanistically, SG-02 functions as an AhR antagonist, with excellent binding affinity (Kd = 41.68 nM). SG-02 also enhances myogenesis, as indicated by an increased MyHC expression. ADME evaluation supports SG-02’s oral bioavailability. Overall, SG-02 holds promise for addressing the global DMD population. © 2024 American Chemical Society.
Subjects
  • Animals

  • Basic Helix-Loop-Heli...

  • Cell Line

  • Drug Discovery

  • Humans

  • Mice

  • Muscular Dystrophy

  • Duchenne

  • Quinazolines

  • Quinolines

  • Receptors

  • Aryl Hydrocarbon

  • Small Molecule Librar...

  • Structure-Activity Re...

  • Up-Regulation

  • Utrophin

  • aromatic hydrocarbon ...

  • messenger RNA

  • myosin heavy chain

  • piperine

  • quinazoline derivativ...

  • quinoline derivative

  • sg 02

  • sg 39

  • sg 60

  • unclassified drug

  • utrophin

  • AHR protein

  • human

  • basic helix loop heli...

  • quinoline

  • animal cell

  • Article

  • binding affinity

  • C2C12 cell line

  • controlled study

  • drug design

  • drug efficacy

  • drug potency

  • drug receptor binding...

  • drug synthesis

  • Duchenne muscular dys...

  • enzyme linked immunos...

  • high throughput scree...

  • human cell

  • immunocytochemistry

  • molecular docking

  • molecular library

  • molecular size

  • muscle atrophy

  • muscle development

  • myotube

  • nonhuman

  • protein expression le...

  • structure activity re...

  • upregulation

  • animal

  • cell line

  • chemistry

  • drug development

  • drug effect

  • drug therapy

  • metabolism

  • mouse

  • pharmacology

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