Cargando…

Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration

[Image: see text] The most commonly used antidepressant drugs are the serotonin transporter inhibitors. Their effects depend strongly on the selectivity for a single monoamine transporter compared to other amine transporters or receptors, and the selectivity is roughly influenced by the spatial prot...

Descripción completa

Detalles Bibliográficos
Autores principales: Ortore, Gabriella, Orlandini, Elisabetta, Betti, Laura, Giannaccini, Gino, Mazzoni, Maria Rosa, Camodeca, Caterina, Nencetti, Susanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015229/
https://www.ncbi.nlm.nih.gov/pubmed/32991141
http://dx.doi.org/10.1021/acschemneuro.0c00304
_version_ 1783673639097335808
author Ortore, Gabriella
Orlandini, Elisabetta
Betti, Laura
Giannaccini, Gino
Mazzoni, Maria Rosa
Camodeca, Caterina
Nencetti, Susanna
author_facet Ortore, Gabriella
Orlandini, Elisabetta
Betti, Laura
Giannaccini, Gino
Mazzoni, Maria Rosa
Camodeca, Caterina
Nencetti, Susanna
author_sort Ortore, Gabriella
collection PubMed
description [Image: see text] The most commonly used antidepressant drugs are the serotonin transporter inhibitors. Their effects depend strongly on the selectivity for a single monoamine transporter compared to other amine transporters or receptors, and the selectivity is roughly influenced by the spatial protein structure. Here, we provide a computational study on three human monoamine transporters, i.e., DAT, NET, and SERT. Starting from the construction of hDAT and hNET models, whose three-dimensional structure is unknown, and the prediction of the binding pose for 19 known inhibitors, 3D-QSAR models of three human transporters were built. The training set variability, which was high in structure and activity profile, was validated using a set of in-house compounds. Results concern more than one aspect. First of all, hDAT and hNET three-dimensional structures were built, validated, and compared to the hSERT one; second, the computational study highlighted the differences in binding site arrangement statistically correlated to inhibitor selectivity; third, the profiling of new inhibitors pointed out a conservation of the inhibitory activity trend between rabbit and human SERT with a difference of about 1 order of magnitude; fourth, binding and functional studies confirmed 4-(benzyloxy)-4-phenylpiperidine 20a–d and 21a–d as potent SERT inhibitors. In particular, one of the compounds (compound 20b) revealed a higher affinity for SERT than paroxetine in human platelets.
format Online
Article
Text
id pubmed-8015229
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-80152292021-04-02 Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration Ortore, Gabriella Orlandini, Elisabetta Betti, Laura Giannaccini, Gino Mazzoni, Maria Rosa Camodeca, Caterina Nencetti, Susanna ACS Chem Neurosci [Image: see text] The most commonly used antidepressant drugs are the serotonin transporter inhibitors. Their effects depend strongly on the selectivity for a single monoamine transporter compared to other amine transporters or receptors, and the selectivity is roughly influenced by the spatial protein structure. Here, we provide a computational study on three human monoamine transporters, i.e., DAT, NET, and SERT. Starting from the construction of hDAT and hNET models, whose three-dimensional structure is unknown, and the prediction of the binding pose for 19 known inhibitors, 3D-QSAR models of three human transporters were built. The training set variability, which was high in structure and activity profile, was validated using a set of in-house compounds. Results concern more than one aspect. First of all, hDAT and hNET three-dimensional structures were built, validated, and compared to the hSERT one; second, the computational study highlighted the differences in binding site arrangement statistically correlated to inhibitor selectivity; third, the profiling of new inhibitors pointed out a conservation of the inhibitory activity trend between rabbit and human SERT with a difference of about 1 order of magnitude; fourth, binding and functional studies confirmed 4-(benzyloxy)-4-phenylpiperidine 20a–d and 21a–d as potent SERT inhibitors. In particular, one of the compounds (compound 20b) revealed a higher affinity for SERT than paroxetine in human platelets. American Chemical Society 2020-09-29 /pmc/articles/PMC8015229/ /pubmed/32991141 http://dx.doi.org/10.1021/acschemneuro.0c00304 Text en © 2020 American Chemical Society Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ortore, Gabriella
Orlandini, Elisabetta
Betti, Laura
Giannaccini, Gino
Mazzoni, Maria Rosa
Camodeca, Caterina
Nencetti, Susanna
Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title_full Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title_fullStr Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title_full_unstemmed Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title_short Focus on Human Monoamine Transporter Selectivity. New Human DAT and NET Models, Experimental Validation, and SERT Affinity Exploration
title_sort focus on human monoamine transporter selectivity. new human dat and net models, experimental validation, and sert affinity exploration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015229/
https://www.ncbi.nlm.nih.gov/pubmed/32991141
http://dx.doi.org/10.1021/acschemneuro.0c00304
work_keys_str_mv AT ortoregabriella focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT orlandinielisabetta focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT bettilaura focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT giannaccinigino focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT mazzonimariarosa focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT camodecacaterina focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration
AT nencettisusanna focusonhumanmonoaminetransporterselectivitynewhumandatandnetmodelsexperimentalvalidationandsertaffinityexploration