Nifuroxazide as JAK2 inhibitor: A binding mode proposal and Hel cell proliferation assay

Marcela Oliveira Legramanti da Costa1, Thais Fernanda Amorim Pavani1, Angélica Nakagawa Lima2

  • 1Grupo de Pesquisas Químico-Farmacêuticas, Departamento de Ciências Farmacêuticas, Instituto de Ciências Ambientais, Químicas e Farmacêuticas, Universidade Federal de São Paulo, Campus Diadema.

Insights

Nifuroxazide and its analogue GPQF-63 show potential as JAK2 inhibitors, inducing apoptosis and inhibiting cell growth in HEL cells. This study explores their binding modes and therapeutic promise for JAK-STAT related diseases.

Area of Science:

  • Pharmacology
  • Medicinal Chemistry
  • Molecular Biology

Background:

  • Nifuroxazide, an antidiarrheal agent, has re-emerged due to its potential antitumoral activity via JAK2 inhibition.
  • Over 70 papers published since 2008 highlight research interest in Nifuroxazide's JAK2 inhibitory potential.

Purpose of the Study:

  • To elucidate the binding mode of Nifuroxazide in the JAK2 ATP and allosteric sites using molecular modeling.
  • To synthesize and evaluate Nifuroxazide and its analogue GPQF-63 for JAK2 inhibition and anti-cancer activity in HEL cells.
  • To investigate the mechanistic effects of these compounds on cell apoptosis and growth.

Main Methods:

  • Molecular modeling and dynamics simulations to predict Nifuroxazide binding.
  • Synthesis of Nifuroxazide and its sulfur bioisosteric analogue, GPQF-63.
  • Experimental assays using HEL cells (harboring JAK2 V617F mutation) to assess cell growth inhibition and apoptosis induction.

Main Results:

  • Molecular modeling suggests Nifuroxazide can bind to both ATP and allosteric sites of JAK2, acting as a Type II kinase inhibitor.
  • Nifuroxazide and GPQF-63 demonstrated significant inhibition of cell growth in HEL cells.
  • Both compounds were found to induce apoptosis in HEL cells, indicating a mechanistic link to their anti-cancer effects.

Conclusions:

  • N-acylhydrazones, including Nifuroxazide and GPQF-63, are promising starting points for developing novel JAK2 modulators.
  • The study provides the first proposed binding mode for Nifuroxazide against JAK2 and its activity against JAK2 V617F-mutated HEL cells.
  • These findings suggest potential therapeutic applications for N-acylhydrazones in managing JAK-STAT pathway-related diseases like myeloproliferative neoplasms.

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