Jager_2007_J.Biol.Chem_282_34968

Reference

Title : Allosteric small molecules unveil a role of an extracellular E2\/transmembrane helix 7 junction for G protein-coupled receptor activation - Jager_2007_J.Biol.Chem_282_34968
Author(s) : Jager D , Schmalenbach C , Prilla S , Schrobang J , Kebig A , Sennwitz M , Heller E , Trankle C , Holzgrabe U , Holtje HD , Mohr K
Ref : Journal of Biological Chemistry , 282 :34968 , 2007
Abstract :

G protein-coupled receptors represent the largest superfamily of cell membrane-spanning receptors. We used allosteric small molecules as a novel approach to better understand conformational changes underlying the inactive-to-active switch in native receptors. Allosteric molecules bind outside the orthosteric area for the endogenous receptor activator. The human muscarinic M(2) acetylcholine receptor is prototypal for the study of allosteric interactions. We measured receptor-mediated G protein activation, applied a series of structurally diverse muscarinic allosteric agents, and analyzed their cooperative effects with orthosteric receptor agonists. A strong negative cooperativity of receptor binding was observed with acetylcholine and other full agonists, whereas a pronounced negative cooperativity of receptor activation was observed with the partial agonist pilocarpine. Applying a newly synthesized allosteric tool, point mutated receptors, radioligand binding, and a three-dimensional receptor model, we found that the deviating allosteric/orthosteric interactions are mediated through the core region of the allosteric site. A key epitope is M(2)Trp(422) in position 7.35 that is located at the extracellular top of transmembrane helix 7 and that contacts, in the inactive receptor, the extracellular loop E2. Trp 7.35 is critically involved in the divergent allosteric/orthosteric cooperativities with acetylcholine and pilocarpine, respectively. In the absence of allosteric agents, Trp 7.35 is essential for receptor binding of the full agonist and for receptor activation by the partial agonist. This study provides first evidence for a role of an allosteric E2/transmembrane helix 7 contact region for muscarinic receptor activation by orthosteric agonists.

PubMedSearch : Jager_2007_J.Biol.Chem_282_34968
PubMedID: 17890226

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Citations formats

Jager D, Schmalenbach C, Prilla S, Schrobang J, Kebig A, Sennwitz M, Heller E, Trankle C, Holzgrabe U, Holtje HD, Mohr K (2007)
Allosteric small molecules unveil a role of an extracellular E2\/transmembrane helix 7 junction for G protein-coupled receptor activation
Journal of Biological Chemistry 282 :34968

Jager D, Schmalenbach C, Prilla S, Schrobang J, Kebig A, Sennwitz M, Heller E, Trankle C, Holzgrabe U, Holtje HD, Mohr K (2007)
Journal of Biological Chemistry 282 :34968