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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
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.
Abstract:
Nifuroxazide has been employed as an anti-diarrheic agent since 1966, but in the last decade has brought to the research spotlight again due to its recently described antitumoral activity through the JAK2 inhibitory potential. Since 2008, more than 70 papers have been published about the issue and more are expected to the following years. Herein we discuss the findings of molecular modelling studies which were performed to elucidate the potential binding mode of this drug into the JAK2 ATP recognition site and also into the allosteric region near the catalytic site. Molecular modelling followed by dynamics simulations indicated the NFZ could bind at both sites, such as a Type II kinase inhibitor since residues from both ATP and modulatory site would exhibit contacts with the drug when in a stable complex. Synthesis of NFZ and its sulfur bioisosteric analogue GPQF-63 were performed and experimental assays against HEL cells indicate the potential of NFZ and, mainly of its analogue GPQF-63 in acting as inhibitors of cell growth. HEL-cells present the JAK2 V617F mutation which leads to an enhanced JAK/STAT pathway and they have never been tested by the NFZ activity before. A mechanistic approach was also performed and revealed that both compounds induce cell apoptosis.Taken together, both the theoretical and experimental approaches point out the N-acylhydrazones as good starting points in the search for JAK2 modulatory small molecules which could then, be studied as promising leads toward new alternatives to control the JAK-STAT pathway related pathologies. This is the first study, as far as we have known, to propose a potential binding mode for NFZ as well as reporting the activity of this drug against HEL cells, which are a usual cellular model to human erythroleukemia and other myeloproliferative diseases.
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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