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Optimization of 1,4-bis(arylsulfonamido)naphthalene-N,N'-diacetic acids as inhibitors of Keap1-Nrf2 protein-protein interaction to suppress neuroinflammation

  • Dhulfiqar Ali Abed
  • , Sumi Lee
  • , Xia Wen
  • , Ahmed R. Ali
  • , Vaibhav Mangipudy
  • , Lauren M. Aleksunes
  • , Longqin Hu*
  • *Corresponding author for this work
  • Rutgers - The State University of New Jersey, New Brunswick

Research output: Contribution to journalJournal articlepeer-review

Abstract

The protein–protein interaction (PPI) between kelch-like ECH-associated protein 1 (Keap1) and nuclear factor erythroid 2-related factor 2 (Nrf2) is recognized as a promising target for the prevention and treatment of oxidative stress-related inflammatory diseases. Herein, a series of novel 1,4-bis(arylsulfonamido)naphthalene-N,N'-diacetic acid analogs (7p-t and 8c) were designed to further explore the structure–activity relationships of the series. Their activities were measured first with a fluorescence polarization (FP) assay and more potent compounds were further evaluated using a more sensitive time-resolved fluorescence energy transfer (TR-FRET) assay, demonstrating IC50 values between 7.2 and 31.3 nM. In cytotoxicity studies, the naphthalene derivatives did not show noticeable toxicity to human HepG2-C8 and mouse brain BV-2 microglia cells. Among them, compound 7q bearing oxygen-containing fused rings was shown to significantly stimulate the cellular Nrf2 signaling pathway, including activation of antioxidant response element (ARE)-controlled expression of Nrf2 target genes and proteins. More importantly, 7q suppressed up-regulation of several pro-inflammatory cytokines in lipopolysaccharide (LPS)-challenged BV-2 microglial cells, representing a potential therapeutic application for controlling neuroinflammatory disorders.

Original languageEnglish
Article number116300
JournalBioorganic and Medicinal Chemistry
Volume44
DOIs
StatePublished - 2021.08.15

Keywords

  • Keap1
  • Keap1-Nrf2 interaction
  • Neuroinflammation
  • Nrf2
  • Oxidative stress
  • Protein-protein interaction inhibitor
  • Structure-activity relationship

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