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      Antidepressants and Antipsychotic Drugs Colocalize with 5-HT 3 Receptors in Raft-Like Domains

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          Abstract

          Despite different chemical structure and pharmacodynamic signaling pathways, a variety of antidepressants and antipsychotics inhibit ion fluxes through 5-HT 3 receptors in a noncompetitive manner with the exception of the known competitive antagonists mirtazapine and clozapine. To further investigate the mechanisms underlying the noncompetitive inhibition of the serotonin-evoked cation current, we quantified the concentrations of different types of antidepressants and antipsychotics in fractions of sucrose flotation gradients isolated from HEK293 (human embryonic kidney 293) cells stably transfected with the 5-HT 3A receptor and of N1E-115 neuroblastoma cells in relation to the localization of the 5-HT 3 receptor protein within the cell membrane. Western blots revealed a localization of the 5-HT 3 receptor protein exclusively in the low buoyant density (LBD) fractions compatible with a localization within raft-like domains. Also, the antidepressants desipramine, fluoxetine, and reboxetine and the antipsychotics fluphenazine, haloperidol, and clozapine were markedly enriched in LBD fractions, whereas no accumulation occurs for mirtazapine, carbamazepine, moclobemide, and risperidone. The concentrations of psychopharmacological drugs within LBD fractions was strongly associated with their inhibitory potency against serotonin-induced cation currents. The noncompetitive antagonism of antidepressants at the 5-HT 3 receptor was not conferred by an enhancement of receptor internalization as shown by immunofluorescence studies, assessment of receptor density in clathrin-coated vesicles, and electrophysiological recordings after coexpression of a dominant-negative mutant of dynamin I, which inhibits receptor internalization. In conclusion, enrichment of antidepressants and antipsychotics in raft-like domains within the cell membrane appears to be crucial for their antagonistic effects at ligand-gated ion channels such as 5-HT 3 receptors.

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          Author and article information

          Journal
          J Neurosci
          J. Neurosci
          jneuro
          The Journal of Neuroscience
          Society for Neuroscience
          0270-6474
          1529-2401
          2 November 2005
          : 25
          : 44
          : 10198-10206
          Affiliations
          [1 ]Max-Planck-Institute of Psychiatry, D-80804 Munich, Germany, [2 ]Department of Psychiatry, Ludwig-Maximilians-Universität, D-80336 Munich, Germany, [3 ]Institute of Biochemistry, Johannes-Gutenberg-Universität, D-55099 Mainz, Germany, [4 ]Department of Pharmacology and Neuroscience, Ninewells Medical School, University of Dundee, Dundee DD1 9SY, United Kingdom, and [5 ]Clinic for Anaesthesiology, Technical-University, 81675 Munich, Germany
          Article
          PMC6725799 PMC6725799 6725799 002510198
          10.1523/JNEUROSCI.2460-05.2005
          6725799
          16267227
          3a451f2d-9e94-4026-a0f6-120f94647655
          Copyright © 2005 Society for Neuroscience 0270-6474/05/2510198-09.00/0
          History
          : 19 August 2005
          : 16 June 2005
          : 9 August 2005
          Categories
          Cellular/Molecular
          Custom metadata
          10198
          ARTICLE

          5-HT3 receptor,lipid rafts,antipsychotics,antidepressants,ligand-gated ion channel,receptor internalization

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