Evaluation of Functional Selectivity of Haloperidol, Clozapine, and LASSBio-579, an Experimental Compound With Antipsychotic-Like Actions in Rodents, at G Protein and Arrestin Signaling Downstream of the Dopamine D 2 Receptor.

FRONTIERS IN PHARMACOLOGY(2019)

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摘要
LASSBio-579, an N-phenylpiperazine antipsychotic lead compound, has been previously reported as a D-2 receptor (D2R) ligand with antipsychotic-like activities in rodent models of schizophrenia. In order to better understand the molecular mechanism of action of LASSBio-579 and of its main metabolite, LQFM 037, we decided to address the hypothesis of functional selectivity at the D2R. HEK-293T cells transiently coexpressing the human long isoform of D-2 receptor (D2LR) and bioluminescence resonance energy transfer (BRET)-based biosensors were used. The antagonist activity was evaluated using different concentrations of the compounds in the presence of a submaximal concentration of dopamine (DA), after 5 and 20 min. For both signaling pathways, haloperidol, clozapine, and our compounds act as DA antagonists in a concentration-dependent manner, with haloperidol being by far the most potent, consistent with its nanomolar D2R affinity measured in binding assays. In our experimental conditions, only haloperidol presented a robust functional selectivity, being four-to fivefold more efficient for inhibiting translocation of beta-arrestin-2 (beta-arr2) than for antagonizing Gi activation. Present data are the first report on the effects of LASSBio-579 and LQFM 037 on the beta-arr2 signaling pathway and further illustrate that the functional activity could vary depending on the assay conditions and approaches used.
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关键词
LASSBio-579,D2,schizophrenia,antipsychotics,beta-arrestin,functional selectivity,biased agonism,clozapine
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