Factor VIIa inhibitors: Gaining selectivity within the trypsin family

A series of highly selective and potent factor VIIa-tissue factor (fVIIa/TF) complex inhibitors were generated via a Suzuki-based synthesis strategy. With this scaffold class (9), we propose that a unique hydrogen bond interaction between a hydroxyl on the biaryl system and the backbone carbonyl of...

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Veröffentlicht in:Bioorganic & medicinal chemistry letters 2006-03, Vol.16 (6), p.1596-1600
Hauptverfasser: Shrader, William D., Kolesnikov, Aleksandr, Burgess-Henry, Jana, Rai, Roopa, Hendrix, John, Hu, Huiyong, Torkelson, Steve, Ton, Tony, Young, Wendy B., Katz, Bradley A., Yu, Christine, Tang, Jie, Cabuslay, Ronnel, Sanford, Ellen, Janc, James W., Sprengeler, Paul A.
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Sprache:eng
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Zusammenfassung:A series of highly selective and potent factor VIIa-tissue factor (fVIIa/TF) complex inhibitors were generated via a Suzuki-based synthesis strategy. With this scaffold class (9), we propose that a unique hydrogen bond interaction between a hydroxyl on the biaryl system and the backbone carbonyl of fVIIa Lys-192 provides a basis for enhanced selectivity and potency. Within the trypsin family of coagulation proteases, obtaining highly selective inhibitors of factor VIIa has been challenging. We report a series of factor VIIa (fVIIa) inhibitors based on the 5-amidino-2-(2-hydroxy-biphenyl-3-yl)-benzimidazole (1) scaffold with potency for fVIIa and high selectivity against factors IIa, Xa, and trypsin. With this scaffold class, we propose that a unique hydrogen bond interaction between a hydroxyl on the distal ring of the biaryl system and the backbone carbonyl of fVIIa lysine-192 provides a basis for enhanced selectivity and potency for fVIIa.
ISSN:0960-894X
1464-3405
DOI:10.1016/j.bmcl.2005.12.040