| Literature DB >> 27992115 |
Maude Giroud1, Jakov Ivkovic1, Mara Martignoni1, Marianne Fleuti1, Nils Trapp1, Wolfgang Haap2, Andreas Kuglstatter2, Jörg Benz2, Bernd Kuhn2, Tanja Schirmeister3, François Diederich1.
Abstract
We report an extensive "heteroarene scan" of triazine nitrile ligands of the cysteine protease human cathepsin L (hCatL) to investigate π-stacking on the peptide amide bond Gly67-Gly68 at the entrance of the S3 pocket. This heteroarene⋅⋅⋅peptide bond stacking was supported by a co-crystal structure of an imidazopyridine ligand with hCatL. Inhibitory constants (Ki ) are strongly influenced by the diverse nature of the heterocycles and specific interactions with the local environment of the S3 pocket. Binding affinities vary by three orders of magnitude. All heteroaromatic ligands feature enhanced binding by comparison with hydrocarbon analogues. Predicted energetic contributions from the orientation of the local dipole moments of heteroarene and peptide bond could not be confirmed. Binding of benzothienyl (Ki =4 nm) and benzothiazolyl (Ki =17 nm) ligands was enhanced by intermolecular C-S⋅⋅⋅O=C interactions (chalcogen bonding) with the backbone C=O of Asn66 in the S3 pocket. The ligands were also tested for the related enzyme rhodesain.Entities:
Keywords: chalcogen bonding; conformational analysis; cysteine proteases; heteroarene scan; peptide amide bonds; π-stacking
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Year: 2017 PMID: 27992115 DOI: 10.1002/cmdc.201600563
Source DB: PubMed Journal: ChemMedChem ISSN: 1860-7179 Impact factor: 3.466