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Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors

A series of peptide NK2 receptor agonists was evaluated for affinity, potency, efficacy, and selectivity at human recombinant NK2 and NK1 receptors expressed in CHO cells to identify compounds with the greatest separation between NK2 and NK1 receptor agonist activity. Binding studies were performed...

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Autores principales: Rupniak, Nadia M. J., Perdona, Elisabetta, Griffante, Cristiana, Cavallini, Palmina, Sava, Anna, Ricca, Daniel J., Thor, Karl B., Burgard, Edward C., Corsi, Mauro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201908/
https://www.ncbi.nlm.nih.gov/pubmed/30359406
http://dx.doi.org/10.1371/journal.pone.0205894
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author Rupniak, Nadia M. J.
Perdona, Elisabetta
Griffante, Cristiana
Cavallini, Palmina
Sava, Anna
Ricca, Daniel J.
Thor, Karl B.
Burgard, Edward C.
Corsi, Mauro
author_facet Rupniak, Nadia M. J.
Perdona, Elisabetta
Griffante, Cristiana
Cavallini, Palmina
Sava, Anna
Ricca, Daniel J.
Thor, Karl B.
Burgard, Edward C.
Corsi, Mauro
author_sort Rupniak, Nadia M. J.
collection PubMed
description A series of peptide NK2 receptor agonists was evaluated for affinity, potency, efficacy, and selectivity at human recombinant NK2 and NK1 receptors expressed in CHO cells to identify compounds with the greatest separation between NK2 and NK1 receptor agonist activity. Binding studies were performed using displacement of [(125)I]-NKA binding to NK2 receptors and displacement of [(3)H]-Septide binding to NK1 receptors expressed in CHO cells. Functional studies examining the increase in intracellular calcium levels and cyclic AMP stimulation were performed using the same cell lines. A correlation was demonstrated between binding affinities (Ki) and potency to increase intracellular calcium (EC(50)) for NK2 and NK1 receptors. Ranking compounds by their relative affinity (Ki) or potency (EC(50)) at NK2 or NK1 receptors indicated that the most selective NK2 agonists tested were [Lys(5),MeLeu(9),Nle(10)]-NKA(4-10) (NK1/NK2 Ki ratio = 674; NK1/NK2 EC(50) ratio = 105) and [Arg(5),MeLeu(9),Nle(10)]-NKA(4-10) (NK1/NK2 Ki ratio = 561; NK1/NK2 EC(50) ratio = 70). The endogenous peptide, NKA, lacked selectivity with an NK1/NK2 Ki ratio = 20 and NK1/NK2 EC(50) ratio = 1. Of the compounds selected for evaluation in cyclic AMP stimulation assays, [β-Ala(8)]-NKA(4–10) had the greatest selectivity for activation of NK2 over NK1 receptors (NK1/NK2 EC(50) ratio = 244), followed by [Lys(5),MeLeu(9),Nle(10)]-NKA(4-10) (ratio = 74), and NKA exhibited marginal selectivity (ratio = 2.8).
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spelling pubmed-62019082018-11-19 Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors Rupniak, Nadia M. J. Perdona, Elisabetta Griffante, Cristiana Cavallini, Palmina Sava, Anna Ricca, Daniel J. Thor, Karl B. Burgard, Edward C. Corsi, Mauro PLoS One Research Article A series of peptide NK2 receptor agonists was evaluated for affinity, potency, efficacy, and selectivity at human recombinant NK2 and NK1 receptors expressed in CHO cells to identify compounds with the greatest separation between NK2 and NK1 receptor agonist activity. Binding studies were performed using displacement of [(125)I]-NKA binding to NK2 receptors and displacement of [(3)H]-Septide binding to NK1 receptors expressed in CHO cells. Functional studies examining the increase in intracellular calcium levels and cyclic AMP stimulation were performed using the same cell lines. A correlation was demonstrated between binding affinities (Ki) and potency to increase intracellular calcium (EC(50)) for NK2 and NK1 receptors. Ranking compounds by their relative affinity (Ki) or potency (EC(50)) at NK2 or NK1 receptors indicated that the most selective NK2 agonists tested were [Lys(5),MeLeu(9),Nle(10)]-NKA(4-10) (NK1/NK2 Ki ratio = 674; NK1/NK2 EC(50) ratio = 105) and [Arg(5),MeLeu(9),Nle(10)]-NKA(4-10) (NK1/NK2 Ki ratio = 561; NK1/NK2 EC(50) ratio = 70). The endogenous peptide, NKA, lacked selectivity with an NK1/NK2 Ki ratio = 20 and NK1/NK2 EC(50) ratio = 1. Of the compounds selected for evaluation in cyclic AMP stimulation assays, [β-Ala(8)]-NKA(4–10) had the greatest selectivity for activation of NK2 over NK1 receptors (NK1/NK2 EC(50) ratio = 244), followed by [Lys(5),MeLeu(9),Nle(10)]-NKA(4-10) (ratio = 74), and NKA exhibited marginal selectivity (ratio = 2.8). Public Library of Science 2018-10-25 /pmc/articles/PMC6201908/ /pubmed/30359406 http://dx.doi.org/10.1371/journal.pone.0205894 Text en © 2018 Rupniak et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Rupniak, Nadia M. J.
Perdona, Elisabetta
Griffante, Cristiana
Cavallini, Palmina
Sava, Anna
Ricca, Daniel J.
Thor, Karl B.
Burgard, Edward C.
Corsi, Mauro
Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title_full Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title_fullStr Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title_full_unstemmed Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title_short Affinity, potency, efficacy, and selectivity of neurokinin A analogs at human recombinant NK2 and NK1 receptors
title_sort affinity, potency, efficacy, and selectivity of neurokinin a analogs at human recombinant nk2 and nk1 receptors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201908/
https://www.ncbi.nlm.nih.gov/pubmed/30359406
http://dx.doi.org/10.1371/journal.pone.0205894
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