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PMID: 23816042 Published · ppublish English

Synthetic studies of centromere-associated protein-E (CENP-E) inhibitors: 1.Exploration of fused bicyclic core scaffolds using electrostatic potential map.

Bioorganic & medicinal chemistry ·Vol. 21 ·No. 17 ·2014-03-18

Hirayama Takaharu, Okaniwa Masanori, Imada Takashi, Ohashi Akihiro, Ohori Momoko, Iwai Kenichi, Mori Kouji, Kawamoto Tomohiro, Yokota Akihiro, Tanaka Toshimasa, Ishikawa Tomoyasu

Abstract

Centromere-associated protein-E (CENP-E), a mitotic kinesin that plays an important role in mitotic progression, is an attractive target for cancer therapeutic drugs. For the purpose of developing novel CENP-E inhibitors as cancer therapeutics, we investigated a fused bicyclic compound identified by high throughput screening, 4-oxo-4,5-dihydrothieno[3,4-c]pyridine-6-carboxamide 1a. Based on this scaffold, we designed inhibitors for efficient binding at the L5 site in CENP-E utilizing homology modeling as well as electrostatic potential map (EPM) analysis to enhance CENP-E inhibitory activity. This resulted in a new lead, 5-bromoimidazo[1,2-a]pyridine 7, which showed potent CENP-E enzyme inhibition (IC50: 50nM) and cellular activity with accumulation of phosphorylated histone H3 in HeLa cells. Our homology model and EPM analysis proved to be useful tools for the rational design of CENP-E inhibitors.

Keywords
(1)H NMR 4-Oxo-4 5-dihydrothieno[3 4-c]pyridine-6-carboxamide CENP-E DSC EPM Electrostatic potential map (EPM) Imidazo[1 2-a]pyridine PD SAR ZATPRXWLTXOXAQ-UHFFFAOYSA-N centromere-associated protein-E differential scanning calorimetry electrostatic potential map pharmacodynamic proton nuclear magnetic resonance structure–activity relationship
Article Info
Journal
Bioorganic & medicinal chemistry
Abbr.
Bioorg Med Chem
Published
2014-03-18
Indexed
2013-08-09
Updated
2016-11-25
Language
English
Country/Region
England
NLM ID
9413298
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