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Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1

The organic cation transporter 1 (OCT1, SLC22A1) transports a large number of structurally diverse endogenous and exogenous substrates. There are numerous known competitive and non-competitive inhibitors of OCT1, but there are no studies systematically analyzing the relationship between transport, s...

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Autores principales: Jensen, Ole, Gebauer, Lukas, Brockmöller, Jürgen, Dücker, Christof
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878159/
https://www.ncbi.nlm.nih.gov/pubmed/35216120
http://dx.doi.org/10.3390/ijms23042007
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author Jensen, Ole
Gebauer, Lukas
Brockmöller, Jürgen
Dücker, Christof
author_facet Jensen, Ole
Gebauer, Lukas
Brockmöller, Jürgen
Dücker, Christof
author_sort Jensen, Ole
collection PubMed
description The organic cation transporter 1 (OCT1, SLC22A1) transports a large number of structurally diverse endogenous and exogenous substrates. There are numerous known competitive and non-competitive inhibitors of OCT1, but there are no studies systematically analyzing the relationship between transport, stimulation, and inhibition. Here, we tested in vitro OCT1 inhibition by OCT1 substrates and transport of OCT1 inhibitors under uniform analytical conditions. Beyond inhibition testing with two model substrates, we tested nine additional OCT1 substrates for their mutual inhibition. Inhibition of ASP(+) uptake by most OCT1 substrates was weak. The model substrate sumatriptan, with its moderately stronger inhibitability, was used to confirm this. Interestingly, OCT1 substrates exhibiting stronger OCT1 inhibition were mainly biaromatic β-agonistic drugs, such as dobutamine, fenoterol, ractopamine and ritodrine. Biaromatic organic cations were both, strong inhibitors and good substrates, but many OCT1 substrates showed little pairwise inhibition. Surprisingly, sumatriptan did significantly enhance dobutamine uptake. This effect was concentration dependent and additional experiments indicated that efflux inhibition may be one of the underlying mechanisms. Our data suggests, that OCT1 substrates are mainly weak OCT1 inhibitors and among those inhibiting well, noncompetitive inhibition could be responsible. Weak competitive inhibition confirms that OCT1 inhibition screenings poorly predict OCT1 substrates. Additionally, we showed that the OCT1 substrate sumatriptan can enhance uptake of some other OCT1 substrates. OCT1 transport stimulation was already observed earlier but is still poorly understood. Low OCT1 uptake inhibition and strong OCT1 efflux inhibition could be mechanisms exploitable for enhancing transport.
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spelling pubmed-88781592022-02-26 Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1 Jensen, Ole Gebauer, Lukas Brockmöller, Jürgen Dücker, Christof Int J Mol Sci Article The organic cation transporter 1 (OCT1, SLC22A1) transports a large number of structurally diverse endogenous and exogenous substrates. There are numerous known competitive and non-competitive inhibitors of OCT1, but there are no studies systematically analyzing the relationship between transport, stimulation, and inhibition. Here, we tested in vitro OCT1 inhibition by OCT1 substrates and transport of OCT1 inhibitors under uniform analytical conditions. Beyond inhibition testing with two model substrates, we tested nine additional OCT1 substrates for their mutual inhibition. Inhibition of ASP(+) uptake by most OCT1 substrates was weak. The model substrate sumatriptan, with its moderately stronger inhibitability, was used to confirm this. Interestingly, OCT1 substrates exhibiting stronger OCT1 inhibition were mainly biaromatic β-agonistic drugs, such as dobutamine, fenoterol, ractopamine and ritodrine. Biaromatic organic cations were both, strong inhibitors and good substrates, but many OCT1 substrates showed little pairwise inhibition. Surprisingly, sumatriptan did significantly enhance dobutamine uptake. This effect was concentration dependent and additional experiments indicated that efflux inhibition may be one of the underlying mechanisms. Our data suggests, that OCT1 substrates are mainly weak OCT1 inhibitors and among those inhibiting well, noncompetitive inhibition could be responsible. Weak competitive inhibition confirms that OCT1 inhibition screenings poorly predict OCT1 substrates. Additionally, we showed that the OCT1 substrate sumatriptan can enhance uptake of some other OCT1 substrates. OCT1 transport stimulation was already observed earlier but is still poorly understood. Low OCT1 uptake inhibition and strong OCT1 efflux inhibition could be mechanisms exploitable for enhancing transport. MDPI 2022-02-11 /pmc/articles/PMC8878159/ /pubmed/35216120 http://dx.doi.org/10.3390/ijms23042007 Text en © 2022 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
Jensen, Ole
Gebauer, Lukas
Brockmöller, Jürgen
Dücker, Christof
Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title_full Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title_fullStr Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title_full_unstemmed Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title_short Relationships between Inhibition, Transport and Enhanced Transport via the Organic Cation Transporter 1
title_sort relationships between inhibition, transport and enhanced transport via the organic cation transporter 1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878159/
https://www.ncbi.nlm.nih.gov/pubmed/35216120
http://dx.doi.org/10.3390/ijms23042007
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