Distinct inactive conformations of the dopamine D2 and D3 receptors correspond to different extents of inverse agonism

By analyzing and simulating inactive conformations of the highly homologous dopamine D and D receptors (D R and D R), we find that eticlopride binds D R in a pose very similar to that in the D R/eticlopride structure but incompatible with the D R/risperidone structure. In addition, risperidone occup...

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Veröffentlicht in:eLife 2020-01, Vol.9
Hauptverfasser: Lane, J Robert, Abramyan, Ara M, Adhikari, Pramisha, Keen, Alastair C, Lee, Kuo-Hao, Sanchez, Julie, Verma, Ravi Kumar, Lim, Herman D, Yano, Hideaki, Javitch, Jonathan A, Shi, Lei
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Sprache:eng
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Zusammenfassung:By analyzing and simulating inactive conformations of the highly homologous dopamine D and D receptors (D R and D R), we find that eticlopride binds D R in a pose very similar to that in the D R/eticlopride structure but incompatible with the D R/risperidone structure. In addition, risperidone occupies a sub-pocket near the Na binding site, whereas eticlopride does not. Based on these findings and our experimental results, we propose that the divergent receptor conformations stabilized by Na -sensitive eticlopride and Na -insensitive risperidone correspond to different degrees of inverse agonism. Moreover, our simulations reveal that the extracellular loops are highly dynamic, with spontaneous transitions of extracellular loop 2 from the helical conformation in the D R/risperidone structure to an extended conformation similar to that in the D R/eticlopride structure. Our results reveal previously unappreciated diversity and dynamics in the inactive conformations of D R. These findings are critical for rational drug discovery, as limiting a virtual screen to a single conformation will miss relevant ligands.
ISSN:2050-084X
2050-084X
DOI:10.7554/elife.52189