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Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions

The transport of drugs by efflux transporters in biomembranes limits their bioavailability and is a major determinant of drug resistance development by cancer cells and pathogens. A large number of chemically dissimilar drugs are transported, and despite extensive studies, the molecular determinants...

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Autores principales: Moreno, Maria João, Filipe, Hugo A. L., Cunha, Susana V. P., Ramos, Cristiana V., Martins, Patrícia A. T., Abel, Biebele, Loura, Luís M. S., Ambudkar, Suresh V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862096/
https://www.ncbi.nlm.nih.gov/pubmed/36678803
http://dx.doi.org/10.3390/pharmaceutics15010174
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author Moreno, Maria João
Filipe, Hugo A. L.
Cunha, Susana V. P.
Ramos, Cristiana V.
Martins, Patrícia A. T.
Abel, Biebele
Loura, Luís M. S.
Ambudkar, Suresh V.
author_facet Moreno, Maria João
Filipe, Hugo A. L.
Cunha, Susana V. P.
Ramos, Cristiana V.
Martins, Patrícia A. T.
Abel, Biebele
Loura, Luís M. S.
Ambudkar, Suresh V.
author_sort Moreno, Maria João
collection PubMed
description The transport of drugs by efflux transporters in biomembranes limits their bioavailability and is a major determinant of drug resistance development by cancer cells and pathogens. A large number of chemically dissimilar drugs are transported, and despite extensive studies, the molecular determinants of substrate specificity are still not well understood. In this work, we explore the role of polar and non-polar interactions on the interaction of a homologous series of fluorescent amphiphiles with the efflux transporter P-glycoprotein. The interaction of the amphiphiles with P-glycoprotein is evaluated through effects on ATPase activity, efficiency in inhibition of [(125)I]-IAAP binding, and partition to the whole native membranes containing the transporter. The results were complemented with partition to model membranes with a representative lipid composition, and details on the interactions established were obtained from MD simulations. We show that when the total concentration of amphiphile is considered, the binding parameters obtained are apparent and do not reflect the affinity for P–gp. A new formalism is proposed that includes sequestration of the amphiphiles in the lipid bilayer and the possible binding of several molecules in P–gp’s substrate-binding pocket. The intrinsic binding affinity thus obtained is essentially independent of amphiphile hydrophobicity, highlighting the importance of polar interactions. An increase in the lipophilicity and amphiphilicity led to a more efficient association with the lipid bilayer, which maintains the non-polar groups of the amphiphiles in the bilayer, while the polar groups interact with P–gp’s binding pocket. The presence of several amphiphiles in this orientation is proposed as a mechanism for inhibition of P-pg function.
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spelling pubmed-98620962023-01-22 Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions Moreno, Maria João Filipe, Hugo A. L. Cunha, Susana V. P. Ramos, Cristiana V. Martins, Patrícia A. T. Abel, Biebele Loura, Luís M. S. Ambudkar, Suresh V. Pharmaceutics Article The transport of drugs by efflux transporters in biomembranes limits their bioavailability and is a major determinant of drug resistance development by cancer cells and pathogens. A large number of chemically dissimilar drugs are transported, and despite extensive studies, the molecular determinants of substrate specificity are still not well understood. In this work, we explore the role of polar and non-polar interactions on the interaction of a homologous series of fluorescent amphiphiles with the efflux transporter P-glycoprotein. The interaction of the amphiphiles with P-glycoprotein is evaluated through effects on ATPase activity, efficiency in inhibition of [(125)I]-IAAP binding, and partition to the whole native membranes containing the transporter. The results were complemented with partition to model membranes with a representative lipid composition, and details on the interactions established were obtained from MD simulations. We show that when the total concentration of amphiphile is considered, the binding parameters obtained are apparent and do not reflect the affinity for P–gp. A new formalism is proposed that includes sequestration of the amphiphiles in the lipid bilayer and the possible binding of several molecules in P–gp’s substrate-binding pocket. The intrinsic binding affinity thus obtained is essentially independent of amphiphile hydrophobicity, highlighting the importance of polar interactions. An increase in the lipophilicity and amphiphilicity led to a more efficient association with the lipid bilayer, which maintains the non-polar groups of the amphiphiles in the bilayer, while the polar groups interact with P–gp’s binding pocket. The presence of several amphiphiles in this orientation is proposed as a mechanism for inhibition of P-pg function. MDPI 2023-01-03 /pmc/articles/PMC9862096/ /pubmed/36678803 http://dx.doi.org/10.3390/pharmaceutics15010174 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
Moreno, Maria João
Filipe, Hugo A. L.
Cunha, Susana V. P.
Ramos, Cristiana V.
Martins, Patrícia A. T.
Abel, Biebele
Loura, Luís M. S.
Ambudkar, Suresh V.
Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title_full Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title_fullStr Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title_full_unstemmed Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title_short Interaction of a Homologous Series of Amphiphiles with P-glycoprotein in a Membrane Environment—Contributions of Polar and Non-Polar Interactions
title_sort interaction of a homologous series of amphiphiles with p-glycoprotein in a membrane environment—contributions of polar and non-polar interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862096/
https://www.ncbi.nlm.nih.gov/pubmed/36678803
http://dx.doi.org/10.3390/pharmaceutics15010174
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