Title of article
Chemogenomic Discovery of Allosteric Antagonists at the GPRC6A Receptor Original Research Article
Author/Authors
David E. Gloriam، نويسنده , , Petrine Wellendorph، نويسنده , , Lars D. Johansen، نويسنده , , Alex Rojas Bie Thomsen، نويسنده , , Karina Phonekeo، نويسنده , , Daniel Sejer Pedersen، نويسنده , , Hans Br?uner-Osborne، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
10
From page
1489
To page
1498
Abstract
GPRC6A is a Family C G protein-coupled receptor recently discovered and deorphanized by our group. This study integrates chemogenomic ligand inference, homology modeling, compound synthesis, and pharmacological mechanism-of-action studies to disclose two noticeable results of methodological and pharmacological character: (1) chemogenomic lead identification through the first, to our knowledge, ligand inference between two different GPCR families, Families A and C; and (2) the discovery of the most selective GPRC6A allosteric antagonists discovered to date. The unprecedented inference of pharmacological activity across GPCR families provides proof-of-concept for in silico approaches against Family C targets based on Family A templates, greatly expanding the prospects of successful drug design and discovery. The antagonists were tested against a panel of seven Family A and C G protein-coupled receptors containing the chemogenomic binding sequence motif where some of the identified GPRC6A antagonists showed some activity. However, three compounds with at least ∼3-fold selectivity for GPRC6A were discovered, which present a significant step forward compared with the previously published GPRC6A antagonists, calindol and NPS 2143, which both display ∼30-fold selectivity for the calcium-sensing receptor compared to GPRC6A. The antagonists constitute novel research tools toward investigating the signaling mechanism of the GPRC6A receptor at the cellular level and serve as initial ligands for further optimization of potency and selectivity enabling future ex vivo/in vivo pharmacological studies.
Journal title
Chemistry and Biology
Serial Year
2011
Journal title
Chemistry and Biology
Record number
1160168
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