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Identifying Ligand Binding Conformations of the β2-Adrenergic Receptor by Using Its Agonists as Computational Probes
Authors
Ashley M. Buckle
B Isin
+63 more
B Isin
B Isin
Basak Isin
BK Kobilka
BK Kobilka
C Gales
CD Strader
CD Strader
CD Strader
DL Farrens
DM Rosenbaum
DM Rosenbaum
DS Han
E Reiter
FZ Chung
G Liapakis
G Liapakis
G Swaminath
G Swaminath
Guillermina Estiu
GV Paolini
HW Choe
I Bahar
JA Javitch
JC Phillips
JE Olsson
JJ Liu
JP Overington
K Palczewski
K Wieland
KA Reynolds
L Shi
LM Luttrell
LS Barak
M Arakawa
M Azzi
MA Yildirim
MP Bokoch
MS Johnson
O Fritze
Olaf Wiest
P Ghanouni
PG Strange
R Nygaard
R Seifert
RA Friesner
RA Friesner
RO Dror
S Ahuja
S Bhattacharya
S Ludeke
SA Green
SG Rasmussen
SG Rasmussen
SG Rasmussen
T Palanche
TD Romo
U Gether
V Cherezov
X Deupi
X Yao
X Zhang
Zoltán N. Oltvai
Publication date
1 January 2011
Publisher
'Public Library of Science (PLoS)'
Doi
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on
PubMed
Abstract
Recently available G-protein coupled receptor (GPCR) structures and biophysical studies suggest that the difference between the effects of various agonists and antagonists cannot be explained by single structures alone, but rather that the conformational ensembles of the proteins need to be considered. Here we use an elastic network model-guided molecular dynamics simulation protocol to generate an ensemble of conformers of a prototypical GPCR, β2-adrenergic receptor (β2AR). The resulting conformers are clustered into groups based on the conformations of the ligand binding site, and distinct conformers from each group are assessed for their binding to known agonists of β2AR. We show that the select ligands bind preferentially to different predicted conformers of β2AR, and identify a role of β2AR extracellular region as an allosteric binding site for larger drugs such as salmeterol. Thus, drugs and ligands can be used as "computational probes" to systematically identify protein conformers with likely biological significance. © 2012 Isin et al
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