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Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry

The high structural similarity, especially in transmembrane regions, of dopamine, norepinephrine, and serotonin transporters, as well as the lack of all crystal structures of human isoforms, make the specific targeting of individual transporters rather challenging. Ligand design itself is also rathe...

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Autores principales: Kalaba, Predrag, Pacher, Katharina, Neill, Philip John, Dragacevic, Vladimir, Zehl, Martin, Wackerlig, Judith, Kirchhofer, Michael, Sartori, Simone B., Gstach, Hubert, Kouhnavardi, Shima, Fabisikova, Anna, Pillwein, Matthias, Monje-Quiroga, Francisco, Ebner, Karl, Prado-Roller, Alexander, Singewald, Nicolas, Urban, Ernst, Langer, Thierry, Pifl, Christian, Lubec, Jana, Leban, Johann Jakob, Lubec, Gert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10527105/
https://www.ncbi.nlm.nih.gov/pubmed/37759815
http://dx.doi.org/10.3390/biom13091415
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author Kalaba, Predrag
Pacher, Katharina
Neill, Philip John
Dragacevic, Vladimir
Zehl, Martin
Wackerlig, Judith
Kirchhofer, Michael
Sartori, Simone B.
Gstach, Hubert
Kouhnavardi, Shima
Fabisikova, Anna
Pillwein, Matthias
Monje-Quiroga, Francisco
Ebner, Karl
Prado-Roller, Alexander
Singewald, Nicolas
Urban, Ernst
Langer, Thierry
Pifl, Christian
Lubec, Jana
Leban, Johann Jakob
Lubec, Gert
author_facet Kalaba, Predrag
Pacher, Katharina
Neill, Philip John
Dragacevic, Vladimir
Zehl, Martin
Wackerlig, Judith
Kirchhofer, Michael
Sartori, Simone B.
Gstach, Hubert
Kouhnavardi, Shima
Fabisikova, Anna
Pillwein, Matthias
Monje-Quiroga, Francisco
Ebner, Karl
Prado-Roller, Alexander
Singewald, Nicolas
Urban, Ernst
Langer, Thierry
Pifl, Christian
Lubec, Jana
Leban, Johann Jakob
Lubec, Gert
author_sort Kalaba, Predrag
collection PubMed
description The high structural similarity, especially in transmembrane regions, of dopamine, norepinephrine, and serotonin transporters, as well as the lack of all crystal structures of human isoforms, make the specific targeting of individual transporters rather challenging. Ligand design itself is also rather limited, as many chemists, fully aware of the synthetic and analytical challenges, tend to modify lead compounds in a way that reduces the number of chiral centers and hence limits the potential chemical space of synthetic ligands. We have previously shown that increasing molecular complexity by introducing additional chiral centers ultimately leads to more selective and potent dopamine reuptake inhibitors. Herein, we significantly extend our structure-activity relationship of dopamine transporter-selective ligands and further demonstrate how stereoisomers of defined absolute configuration may fine-tune and direct the activity towards distinct targets. From the pool of active compounds, using the examples of stereoisomers 7h and 8h, we further showcase how in vitro activity significantly differs in in vivo drug efficacy experiments, calling for proper validation of individual stereoisomers in animal studies. Furthermore, by generating a large library of compounds with defined absolute configurations, we lay the groundwork for computational chemists to further optimize and rationally design specific monoamine transporter reuptake inhibitors.
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spelling pubmed-105271052023-09-28 Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry Kalaba, Predrag Pacher, Katharina Neill, Philip John Dragacevic, Vladimir Zehl, Martin Wackerlig, Judith Kirchhofer, Michael Sartori, Simone B. Gstach, Hubert Kouhnavardi, Shima Fabisikova, Anna Pillwein, Matthias Monje-Quiroga, Francisco Ebner, Karl Prado-Roller, Alexander Singewald, Nicolas Urban, Ernst Langer, Thierry Pifl, Christian Lubec, Jana Leban, Johann Jakob Lubec, Gert Biomolecules Article The high structural similarity, especially in transmembrane regions, of dopamine, norepinephrine, and serotonin transporters, as well as the lack of all crystal structures of human isoforms, make the specific targeting of individual transporters rather challenging. Ligand design itself is also rather limited, as many chemists, fully aware of the synthetic and analytical challenges, tend to modify lead compounds in a way that reduces the number of chiral centers and hence limits the potential chemical space of synthetic ligands. We have previously shown that increasing molecular complexity by introducing additional chiral centers ultimately leads to more selective and potent dopamine reuptake inhibitors. Herein, we significantly extend our structure-activity relationship of dopamine transporter-selective ligands and further demonstrate how stereoisomers of defined absolute configuration may fine-tune and direct the activity towards distinct targets. From the pool of active compounds, using the examples of stereoisomers 7h and 8h, we further showcase how in vitro activity significantly differs in in vivo drug efficacy experiments, calling for proper validation of individual stereoisomers in animal studies. Furthermore, by generating a large library of compounds with defined absolute configurations, we lay the groundwork for computational chemists to further optimize and rationally design specific monoamine transporter reuptake inhibitors. MDPI 2023-09-19 /pmc/articles/PMC10527105/ /pubmed/37759815 http://dx.doi.org/10.3390/biom13091415 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kalaba, Predrag
Pacher, Katharina
Neill, Philip John
Dragacevic, Vladimir
Zehl, Martin
Wackerlig, Judith
Kirchhofer, Michael
Sartori, Simone B.
Gstach, Hubert
Kouhnavardi, Shima
Fabisikova, Anna
Pillwein, Matthias
Monje-Quiroga, Francisco
Ebner, Karl
Prado-Roller, Alexander
Singewald, Nicolas
Urban, Ernst
Langer, Thierry
Pifl, Christian
Lubec, Jana
Leban, Johann Jakob
Lubec, Gert
Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title_full Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title_fullStr Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title_full_unstemmed Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title_short Chirality Matters: Fine-Tuning of Novel Monoamine Reuptake Inhibitors Selectivity through Manipulation of Stereochemistry
title_sort chirality matters: fine-tuning of novel monoamine reuptake inhibitors selectivity through manipulation of stereochemistry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10527105/
https://www.ncbi.nlm.nih.gov/pubmed/37759815
http://dx.doi.org/10.3390/biom13091415
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