Literature DB >> 10377218

Tricyclic farnesyl protein transferase inhibitors: crystallographic and calorimetric studies of structure-activity relationships.

C L Strickland1, P C Weber, W T Windsor, Z Wu, H V Le, M M Albanese, C S Alvarez, D Cesarz, J del Rosario, J Deskus, A K Mallams, F G Njoroge, J J Piwinski, S Remiszewski, R R Rossman, A G Taveras, B Vibulbhan, R J Doll, V M Girijavallabhan, A K Ganguly.   

Abstract

Crystallographic and thermodynamic studies of farnesyl protein transferase (FPT) complexed with novel tricyclic inhibitors provide insights into the observed SAR for this unique class of nonpeptidic FPT inhibitors. The crystallographic structures reveal a binding pattern conserved across the mono-, di-, and trihalogen series. In the complexes, the tricycle spans the FPT active site cavity and interacts with both protein atoms and the isoprenoid portion of bound farnesyl diphosphate. An amide carbonyl, common to the tricyclic compounds described here, participates in a water-mediated hydrogen bond to the protein backbone. Ten high-resolution crystal structures of inhibitors complexed with FPT are reported. Included are crystallographic data for FPT complexed with SCH 66336, a compound currently undergoing clinical trials as an anticancer agent (SCH 66336, 4-[2-[4-(3,10-dibromo-8-chloro-6,11-dihydro-5H-benzo[5, 6]cyclohepta[1, 2-b]pyridin-11-yl)-1-piperidinyl]-2-oxoethyl]-1-piperidinecarbo xamide ). Thermodynamic binding parameters show favorable enthalpies of complex formation and small net entropic contributions as observed for 4-[2-[4-(3,10-dibromo-8-chloro-6,11-dihydro-11H-benzo[5, 6]cyclohepta[1, 2-b]pyridin-11-ylidene)-1-piperidinyl]-2-oxoethyl]pyridine N-oxide where DeltaH degrees bind = -12.5 kcal/mol and TDeltaS degrees bind = -1.5 kcal/mol.

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Year:  1999        PMID: 10377218     DOI: 10.1021/jm990030g

Source DB:  PubMed          Journal:  J Med Chem        ISSN: 0022-2623            Impact factor:   7.446


  15 in total

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5.  Successful molecular dynamics simulation of the zinc-bound farnesyltransferase using the cationic dummy atom approach.

Authors:  Y P Pang; K Xu; J E Yazal; F G Prendergas
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7.  The crystal structure of human protein farnesyltransferase reveals the basis for inhibition by CaaX tetrapeptides and their mimetics.

Authors:  S B Long; P J Hancock; A M Kral; H W Hellinga; L S Beese
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8.  Prenyltransferase Inhibitors: Treating Human Ailments from Cancer to Parasitic Infections.

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9.  A photoactive isoprenoid diphosphate analogue containing a stable phosphonate linkage: synthesis and biochemical studies with prenyltransferases.

Authors:  Amanda J DeGraw; Zongbao Zhao; Corey L Strickland; A Huma Taban; John Hsieh; Michael Jefferies; Wenshuang Xie; David K Shintani; Colleen M McMahan; Katrina Cornish; Mark D Distefano
Journal:  J Org Chem       Date:  2007-05-04       Impact factor: 4.354

10.  Synthesis, properties, and applications of diazotrifluropropanoyl-containing photoactive analogs of farnesyl diphosphate containing modified linkages for enhanced stability.

Authors:  Marisa L Hovlid; Rebecca L Edelstein; Olivier Henry; Joshua Ochocki; Amanda DeGraw; Stepan Lenevich; Trista Talbot; Victor G Young; Alan W Hruza; Fernando Lopez-Gallego; Nicholas P Labello; Corey L Strickland; Claudia Schmidt-Dannert; Mark D Distefano
Journal:  Chem Biol Drug Des       Date:  2010-01       Impact factor: 2.817

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