Xue_2016_ChemMedChem_11_497

Reference

Title : Fragment Screening of Soluble Epoxide Hydrolase for Lead Generation-Structure-Based Hit Evaluation and Chemistry Exploration - Xue_2016_ChemMedChem_11_497
Author(s) : Xue Y , Olsson T , Johansson CA , Oster L , Beisel HG , Rohman M , Karis D , Backstrom S
Ref : ChemMedChem , 11 :497 , 2016
Abstract :

Soluble epoxide hydrolase (sEH) is involved in the regulation of many biological processes by metabolizing the key bioactive lipid mediator, epoxyeicosatrienoic acids. For the development of sEH inhibitors with improved physicochemical properties, we performed both a fragment screening and a high-throughput screening aiming at an integrated hit evaluation and lead generation. Followed by a joint dose-response analysis to confirm the hits, the identified actives were then effectively triaged by a structure-based hit-classification approach to three prioritized series. Two distinct scaffolds were identified as tractable starting points for potential lead chemistry work. The oxoindoline series bind at the right-hand side of the active-site pocket with hydrogen bonds to the protein. The 2-phenylbenzimidazole-4-sulfonamide series bind at the central channel with significant induced fit, which has not been previously reported. On the basis of the encouraging initial results, we envision that a new lead series with improved properties could be generated if a vector is found that could merge the cyclohexyl functionality of the oxoindoline series with the trifluoromethyl moiety of the 2-phenylbenzimidazole-4-sulfonamide series.

PubMedSearch : Xue_2016_ChemMedChem_11_497
PubMedID: 26845235
Gene_locus related to this paper: human-EPHX2

Related information

Inhibitor SZC
Gene_locus human-EPHX2
Family Epoxide_hydrolase
Structure 5FP0

Citations formats

Xue Y, Olsson T, Johansson CA, Oster L, Beisel HG, Rohman M, Karis D, Backstrom S (2016)
Fragment Screening of Soluble Epoxide Hydrolase for Lead Generation-Structure-Based Hit Evaluation and Chemistry Exploration
ChemMedChem 11 :497

Xue Y, Olsson T, Johansson CA, Oster L, Beisel HG, Rohman M, Karis D, Backstrom S (2016)
ChemMedChem 11 :497