| Literature DB >> 27434274 |
Christine E Mona1,2, Élie Besserer-Offroy1,2, Jérôme Cabana1,2, Marilou Lefrançois1,2, Philip E Boulais1,2, Marie-Reine Lefebvre1,2, Richard Leduc1,2, Pierre Lavigne3,2, Nikolaus Heveker4, Éric Marsault1,2, Emanuel Escher1,2.
Abstract
The CXCR4 receptor binds with meaningful affinities only CXCL12 and synthetic antagonists/inverse agonists. We recently described high affinity synthetic agonists for this chemokine receptor, obtained by grafting the CXCL12 N-terminus onto the inverse agonist T140. While those chimeric molecules behave as agonists for CXCR4, their binding and activation mode are unknown. The present SAR of those CXCL12-oligopeptide grafts reveals the key determinants involved in CXCR4 activation. Position 3 (Val) controls affinity, whereas position 7 (Tyr) acts as an efficacy switch. Chimeric molecules bearing aromatic residues in position 3 possess high binding affinities for CXCR4 and are Gαi full agonists with robust chemotactic properties. Fine-tuning of electron-poor aromatic rings in position 7 enhances receptor activation. To rationalize these results, a homology model of a receptor-ligand complex was built using the published crystal structures of CXCR4. Molecular dynamics simulations reveal further details accounting for the observed SAR for this series.Entities:
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Year: 2016 PMID: 27434274 DOI: 10.1021/acs.jmedchem.6b00566
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446