Publication | Open Access
Design, Structure−Activity Relationships, X-ray Crystal Structure, and Energetic Contributions of a Critical P1 Pharmacophore: 3-Chloroindole-7-yl-Based Factor Xa Inhibitors
35
Citations
46
References
2008
Year
X-ray CrystallographyIndole GroupCompound 18Organic ChemistryChemistryHeterocycle ChemistryPharmaceutical ChemistryMedicinal ChemistryIndole-based P1 MoietyStructure ElucidationEnergetic ContributionsBiochemistryChemical BondMechanism Of ActionPharmacologyCritical P1 PharmacophoreMolecular ModelingNatural SciencesStructure−activity RelationshipsRational Drug DesignMedicineDrug Discovery
An indole-based P1 moiety was incorporated into a previously established factor Xa inhibitor series. The indole group was designed to hydrogen-bond with the carbonyl of Gly218, while its 3-methyl or 3-chloro substituent was intended to interact with Tyr228. These interactions were subsequently observed in the X-ray crystal structure of compound 18. SAR studies led to the identification of compound 20 as the most potent FXa inhibitor in this series (IC(50) = 2.4 nM, EC(2xPT) = 1.2 microM). An in-depth energetic analysis suggests that the increased binding energy of 3-chloroindole-versus 3-methylindole-containing compounds in this series is due primarily to (a) the more hydrophobic nature of chloro- versus methyl-containing compounds and (b) an increased interaction of 3-chloroindole versus 3-methylindole with Gly218 backbone. The stronger hydrophobicity of chloro- versus methyl-substituted aromatics may partly explain the general preference for chloro- versus methyl-substituted P1 groups in FXa, which extends beyond the current series.
| Year | Citations | |
|---|---|---|
Page 1
Page 1