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Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity

Transient receptor potential cation channel subfamily M member 8 (TRPM8) is a Ca(2+) non-selective ion channel implicated in a variety of pathological conditions, including cancer, inflammatory and neuropathic pain. In previous works we identified a family of chiral, highly hydrophobic β–lactam deri...

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Autores principales: Bonache, María Ángeles, Llabrés, Pedro Juan, Martín-Escura, Cristina, De la Torre-Martínez, Roberto, Medina-Peris, Alicia, Butrón, Laura, Gómez-Monterrey, Isabel, Roa, Ana María, Fernández-Ballester, Gregorio, Ferrer-Montiel, Antonio, Fernández-Carvajal, Asia, González-Muñiz, Rosario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956626/
https://www.ncbi.nlm.nih.gov/pubmed/33673444
http://dx.doi.org/10.3390/ijms22052370
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author Bonache, María Ángeles
Llabrés, Pedro Juan
Martín-Escura, Cristina
De la Torre-Martínez, Roberto
Medina-Peris, Alicia
Butrón, Laura
Gómez-Monterrey, Isabel
Roa, Ana María
Fernández-Ballester, Gregorio
Ferrer-Montiel, Antonio
Fernández-Carvajal, Asia
González-Muñiz, Rosario
author_facet Bonache, María Ángeles
Llabrés, Pedro Juan
Martín-Escura, Cristina
De la Torre-Martínez, Roberto
Medina-Peris, Alicia
Butrón, Laura
Gómez-Monterrey, Isabel
Roa, Ana María
Fernández-Ballester, Gregorio
Ferrer-Montiel, Antonio
Fernández-Carvajal, Asia
González-Muñiz, Rosario
author_sort Bonache, María Ángeles
collection PubMed
description Transient receptor potential cation channel subfamily M member 8 (TRPM8) is a Ca(2+) non-selective ion channel implicated in a variety of pathological conditions, including cancer, inflammatory and neuropathic pain. In previous works we identified a family of chiral, highly hydrophobic β–lactam derivatives, and began to intuit a possible effect of the stereogenic centers on the antagonist activity. To investigate the influence of configuration on the TRPM8 antagonist properties, here we prepare and characterize four possible diastereoisomeric derivatives of 4-benzyl-1-[(3′-phenyl-2′-dibenzylamino)prop-1′-yl]-4-benzyloxycarbonyl-3-methyl-2-oxoazetidine. In microfluorography assays, all isomers were able to reduce the menthol-induced cell Ca(2+) entry to larger or lesser extent. Potency follows the order 3R,4R,2′R > 3S,4S,2′R ≅ 3R,4R,2′S > 3S,4S,2′S, with the most potent diastereoisomer showing a half inhibitory concentration (IC(50)) in the low nanomolar range, confirmed by Patch-Clamp electrophysiology experiments. All four compounds display high receptor selectivity against other members of the TRP family. Furthermore, in primary cultures of rat dorsal root ganglion (DRG) neurons, the most potent diastereoisomers do not produce any alteration in neuronal excitability, indicating their high specificity for TRPM8 channels. Docking studies positioned these β-lactams at different subsites by the pore zone, suggesting a different mechanism than the known N-(3-aminopropyl)-2-[(3-methylphenyl)methoxy]-N-(2-thienylmethyl)-benzamide (AMTB) antagonist.
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spelling pubmed-79566262021-03-16 Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity Bonache, María Ángeles Llabrés, Pedro Juan Martín-Escura, Cristina De la Torre-Martínez, Roberto Medina-Peris, Alicia Butrón, Laura Gómez-Monterrey, Isabel Roa, Ana María Fernández-Ballester, Gregorio Ferrer-Montiel, Antonio Fernández-Carvajal, Asia González-Muñiz, Rosario Int J Mol Sci Article Transient receptor potential cation channel subfamily M member 8 (TRPM8) is a Ca(2+) non-selective ion channel implicated in a variety of pathological conditions, including cancer, inflammatory and neuropathic pain. In previous works we identified a family of chiral, highly hydrophobic β–lactam derivatives, and began to intuit a possible effect of the stereogenic centers on the antagonist activity. To investigate the influence of configuration on the TRPM8 antagonist properties, here we prepare and characterize four possible diastereoisomeric derivatives of 4-benzyl-1-[(3′-phenyl-2′-dibenzylamino)prop-1′-yl]-4-benzyloxycarbonyl-3-methyl-2-oxoazetidine. In microfluorography assays, all isomers were able to reduce the menthol-induced cell Ca(2+) entry to larger or lesser extent. Potency follows the order 3R,4R,2′R > 3S,4S,2′R ≅ 3R,4R,2′S > 3S,4S,2′S, with the most potent diastereoisomer showing a half inhibitory concentration (IC(50)) in the low nanomolar range, confirmed by Patch-Clamp electrophysiology experiments. All four compounds display high receptor selectivity against other members of the TRP family. Furthermore, in primary cultures of rat dorsal root ganglion (DRG) neurons, the most potent diastereoisomers do not produce any alteration in neuronal excitability, indicating their high specificity for TRPM8 channels. Docking studies positioned these β-lactams at different subsites by the pore zone, suggesting a different mechanism than the known N-(3-aminopropyl)-2-[(3-methylphenyl)methoxy]-N-(2-thienylmethyl)-benzamide (AMTB) antagonist. MDPI 2021-02-27 /pmc/articles/PMC7956626/ /pubmed/33673444 http://dx.doi.org/10.3390/ijms22052370 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bonache, María Ángeles
Llabrés, Pedro Juan
Martín-Escura, Cristina
De la Torre-Martínez, Roberto
Medina-Peris, Alicia
Butrón, Laura
Gómez-Monterrey, Isabel
Roa, Ana María
Fernández-Ballester, Gregorio
Ferrer-Montiel, Antonio
Fernández-Carvajal, Asia
González-Muñiz, Rosario
Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title_full Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title_fullStr Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title_full_unstemmed Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title_short Phenylalanine-Derived β-Lactam TRPM8 Modulators. Configuration Effect on the Antagonist Activity
title_sort phenylalanine-derived β-lactam trpm8 modulators. configuration effect on the antagonist activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7956626/
https://www.ncbi.nlm.nih.gov/pubmed/33673444
http://dx.doi.org/10.3390/ijms22052370
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