| Literature DB >> 34949836 |
Ji Young Lee1, Alex D White2, Ieva Sutkeviciute3, Christian Santa Maria4, Karina A Peña2, Sofya Savransky2,5, Pemra Doruker1, Hongchun Li1,6, Saifei Lei2,7, Burak Kaynak1, Chialing Tu4, Lisa J Clark2,8, Subramaniam Sanker2, Thomas J Gardella9, Wenhan Chang4, Ivet Bahar10, Jean-Pierre Vilardaga11.
Abstract
Class B G protein-coupled receptors (GPCRs) are notoriously difficult to target by small molecules because their large orthosteric peptide-binding pocket embedded deep within the transmembrane domain limits the identification and development of nonpeptide small molecule ligands. Using the parathyroid hormone type 1 receptor (PTHR) as a prototypic class B GPCR target, and a combination of molecular dynamics simulations and elastic network model-based methods, we demonstrate that PTHR druggability can be effectively addressed. Here we found a key mechanical site that modulates the collective dynamics of the receptor and used this ensemble of PTHR conformers to identify selective small molecules with strong negative allosteric and biased properties for PTHR signaling in cell and PTH actions in vivo. This study provides a computational pipeline to detect precise druggable sites and identify allosteric modulators of PTHR signaling that could be extended to GPCRs to expedite discoveries of small molecules as novel therapeutic candidates.Entities:
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Year: 2021 PMID: 34949836 PMCID: PMC8891041 DOI: 10.1038/s41589-021-00929-w
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 16.174