Title
Multisite Model Of Allosterism For The Adenosine A1 Receptor
Abstract
Despite being a target for about one-third of approved drugs, G protein-coupled receptors (GPCRs) still represent a tremendous reservoir for therapeutic strategies against diseases. For example, several cardiovascular and central nervous system conditions could benefit from clinical agents that activate the adenosine 1 receptor (A(1)R); however, the pursuit of A(1)R agonists for clinical use is usually impeded by both on- and off-target side effects. One of the possible strategies to overcome this issue is the development of positive allosteric modulators (PAMs) capable of selectively enhancing the effect of a specific receptor subtype and triggering functional selectivity (a phenomenon also referred to as bias). Intriguingly, besides enforcing the effect of agonists upon binding to an allosteric site, most of the A(1)R PAMs display intrinsic partial agonism and orthosteric competition with antagonists. To rationalize this behavior, we simulated the binding of the prototypical PAMs PD81723 and VCP171, the full-agonist NECA, the antagonist 13B, and the bitopic agonist VCP746. We propose that a single PAM can bind several A(1)R sites rather than a unique allosteric pocket, reconciling the structure-activity relationship and the mutagenesis results.
Year
DOI
Venue
2021
10.1021/acs.jcim.0c01331
JOURNAL OF CHEMICAL INFORMATION AND MODELING
DocType
Volume
Issue
Journal
61
4
ISSN
Citations 
PageRank 
1549-9596
0
0.34
References 
Authors
0
4
Name
Order
Citations
PageRank
Giuseppe Deganutti100.34
Kerry Barkan200.34
Graham Ladds300.34
Christopher A Reynolds400.34