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Effect of N-1 arylation of monastrol on kinesin Eg5 inhibition in glioma cell lines.

Itamar Luís GonçalvesLiliana RockenbachGustavo Machado das NevesGabriela GöethelFabiana NascimentoLuciano Porto KagamiFabrício FigueiróGabriel Oliveira de AzambujaAmanda de Fraga DiasAndressa AmaroLauro Mera de SouzaIvan da Rocha PittaDaiana Silva AvilaDaniel Fábio KawanoSolange Cristina GarciaAna Maria Oliveira BattastiniVera Lucia Eifler-Lima
Published in: MedChemComm (2018)
An original and focused library of two sets of dihydropyrimidin-2-thiones (DHPMs) substituted with N-1 aryl groups derived from monastrol was designed and synthesized in order to discover a more effective Eg5 ligand than the template. Based on molecular docking studies, four ligands were selected to perform pharmacological investigations against two glioma cell lines. The results led to the discovery of two original compounds, called 20h and 20e, with an anti-proliferative effects, achieving IC50 values of about half that of the IC50 of monastrol in both cell lines. As with monastrol, flow cytometry analyses showed that the 20e and 20h compounds induced cell cycle arrest in the G2/M phase, and immunocytochemistry essays revealed the formation of monopolar spindles due to Eg5 inhibition without any toxicity to Caenorhabditis elegans.
Keyphrases
  • molecular docking
  • flow cytometry
  • cell cycle arrest
  • molecular dynamics simulations
  • cell death
  • pi k akt
  • small molecule
  • high glucose
  • oxidative stress
  • high throughput
  • signaling pathway
  • drug induced
  • high resolution