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Structure-Based Design of a Chemical Probe Set for the 5-HT5A Serotonin Receptor.


ABSTRACT: The 5-HT5A receptor (5-HT5AR), for which no selective agonists and a few antagonists exist, remains the least understood serotonin receptor. A single commercial antagonist, SB-699551, has been widely used to investigate the 5-HT5AR function in neurological disorders, including pain, but this molecule has substantial liabilities as a chemical probe. Accordingly, we sought to develop an internally controlled probe set. Docking over 6 million molecules against a 5-HT5AR homology model identified 5 mid-μM ligands, one of which was optimized to UCSF678, a 42 nM arrestin-biased partial agonist at the 5-HT5AR with a more restricted off-target profile and decreased assay liabilities versus SB-699551. Site-directed mutagenesis supported the docked pose of UCSF678. Surprisingly, analogs of UCSF678 that lost the 5-HT5AR activity revealed that 5-HT5AR engagement is nonessential for alleviating pain, contrary to studies with less-selective ligands. UCSF678 and analogs constitute a selective probe set with which to study the function of the 5-HT5AR.

SUBMITTER: Levit Kaplan A 

PROVIDER: S-EPMC9116900 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Structure-Based Design of a Chemical Probe Set for the 5-HT<sub>5A</sub> Serotonin Receptor.

Levit Kaplan Anat A   Strachan Ryan T RT   Braz Joao M JM   Craik Veronica V   Slocum Samuel S   Mangano Thomas T   Amabo Vanessa V   O'Donnell Henry H   Lak Parnian P   Basbaum Allan I AI   Roth Bryan L BL   Shoichet Brian K BK  

Journal of medicinal chemistry 20220223 5


The 5-HT<sub>5A</sub> receptor (5-HT<sub>5A</sub>R), for which no selective agonists and a few antagonists exist, remains the least understood serotonin receptor. A single commercial antagonist, SB-699551, has been widely used to investigate the 5-HT<sub>5A</sub>R function in neurological disorders, including pain, but this molecule has substantial liabilities as a chemical probe. Accordingly, we sought to develop an internally controlled probe set. Docking over 6 million molecules against a 5-H  ...[more]

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