A novel β-TrCP1/NRF2 interaction inhibitor for effective anti-inflammatory therapy

Ángel J García-Yagüe1,2,3,4, Lucía Cañizares-Moscato5,6,7, José Antonio Encinar8

  • 1Department of Biochemistry, School of Medicine, Autonomous University of Madrid (UAM), Madrid, Spain. ajgarcia@iib.uam.es.

PubMed
Abstract

Insights

A novel compound, P10, activates the NRF2 pathway by inhibiting the β-TrCP1/NRF2 interaction. This small molecule demonstrates anti-inflammatory and antioxidant effects, showing potential for treating liver inflammation.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Pharmacology

Background:

  • Non-communicable chronic diseases involve inflammation and oxidative stress.
  • NRF2 is a key therapeutic target, but existing activators have side effects.
  • A novel approach targets the β-TrCP1/NRF2 interaction to activate NRF2.

Purpose of the Study:

  • To identify and characterize a novel small molecule inhibitor of the β-TrCP1/NRF2 interaction.
  • To evaluate the therapeutic potential of this compound in preclinical models of inflammation.

Main Methods:

  • In silico screening of ~1 million compounds followed by molecular docking, ADMET, and molecular dynamics simulations.
  • In vitro validation using luciferase reporter assays, co-immunoprecipitation, and ubiquitination experiments.
  • In vivo studies in mice models of acute liver inflammation induced by lipopolysaccharide (LPS).

Main Results:

  • The novel compound P10 selectively inhibits the β-TrCP1/NRF2 interaction, stabilizing NRF2 and upregulating its target genes.
  • P10 exhibits antioxidant and anti-inflammatory effects in vitro and in vivo, dependent on NRF2.
  • P10 significantly reduces LPS-induced liver inflammation in a preclinical model, confirmed in Nrf2-knockout mice.

Conclusions:

  • P10 is a promising NRF2 activator that selectively targets the β-TrCP1/NRF2 interaction.
  • P10 demonstrates significant therapeutic potential for acute liver inflammation and related diseases.

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