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Controlling the selectivity of aminergic GPCR ligands from the extracellular vestibule

Authors :
María Isabel Loza
Rob Leurs
Chris de Graaf
András Visegrády
Attila Egyed
György M. Keserű
José Brea
Ádám Andor Kelemen
Stephanie A. Thee
Zhiyong Wang
Márton Vass
Medicinal chemistry
AIMMS
Source :
Bioorganic Chemistry, 111:104832, 1-11. Academic Press Inc., Egyed, A, Kelemen, Á A, Vass, M, Visegrády, A, Thee, S A, Wang, Z, de Graaf, C, Brea, J, Loza, M I, Leurs, R & Keserű, G M 2021, ' Controlling the selectivity of aminergic GPCR ligands from the extracellular vestibule ', Bioorganic Chemistry, vol. 111, 104832, pp. 1-11 . https://doi.org/10.1016/j.bioorg.2021.104832
Publication Year :
2021

Abstract

In addition to the orthosteric binding pocket (OBP) of GPCRs, recent structural studies have revealed that there are several allosteric sites available for pharmacological intervention. The secondary binding pocket (SBP) of aminergic GPCRs is located in the extracellular vestibule of these receptors, and it has been suggested to be a potential selectivity pocket for bitopic ligands. Here, we applied a virtual screening protocol based on fragment docking to the SBP of the orthosteric ligand-receptor complex. This strategy was employed for a number of aminergic receptors. First, we designed dopamine D3 preferring bitopic compounds from a D2 selective orthosteric ligand. Next, we designed 5-HT2B selective bitopic compounds starting from the 5-HT1B preferring ergoline core of LSD. Comparing the serotonergic profiles of the new derivatives to that of LSD, we found that these derivatives became significantly biased towards the desired 5-HT2B receptor target. Finally, addressing the known limitations of H1 antihistamines, our protocol was successfully used to eliminate the well-known side effects related to the muscarinic M1 activity of amitriptyline while preserving H1 potency in some of the designed bitopic compounds. These applications highlight the usefulness of our new virtual screening protocol and offer a powerful strategy towards bitopic GPCR ligands with designed receptor profiles.

Details

Language :
English
ISSN :
00452068
Volume :
111
Database :
OpenAIRE
Journal :
Bioorganic Chemistry
Accession number :
edsair.doi.dedup.....4b05fe1ab8d56524eef48524ef62e088