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Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes

[Image: see text] The P2Y(14) receptor (P2Y(14)R), one of eight P2Y G protein-coupled receptors (GPCR), is involved in inflammatory, endocrine, and hypoxic processes and is an attractive pharmaceutical target. The goal of this research is to develop high-affinity P2Y(14)R fluorescent probes based on...

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Autores principales: Kiselev, Evgeny, Barrett, Matthew O., Katritch, Vsevolod, Paoletta, Silvia, Weitzer, Clarissa D., Brown, Kyle A., Hammes, Eva, Yin, Andrew L., Zhao, Qiang, Stevens, Raymond C., Harden, T. Kendall, Jacobson, Kenneth A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4273980/
https://www.ncbi.nlm.nih.gov/pubmed/25299434
http://dx.doi.org/10.1021/cb500614p
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author Kiselev, Evgeny
Barrett, Matthew O.
Katritch, Vsevolod
Paoletta, Silvia
Weitzer, Clarissa D.
Brown, Kyle A.
Hammes, Eva
Yin, Andrew L.
Zhao, Qiang
Stevens, Raymond C.
Harden, T. Kendall
Jacobson, Kenneth A.
author_facet Kiselev, Evgeny
Barrett, Matthew O.
Katritch, Vsevolod
Paoletta, Silvia
Weitzer, Clarissa D.
Brown, Kyle A.
Hammes, Eva
Yin, Andrew L.
Zhao, Qiang
Stevens, Raymond C.
Harden, T. Kendall
Jacobson, Kenneth A.
author_sort Kiselev, Evgeny
collection PubMed
description [Image: see text] The P2Y(14) receptor (P2Y(14)R), one of eight P2Y G protein-coupled receptors (GPCR), is involved in inflammatory, endocrine, and hypoxic processes and is an attractive pharmaceutical target. The goal of this research is to develop high-affinity P2Y(14)R fluorescent probes based on the potent and highly selective antagonist 4-(4-(piperidin-4-yl)-phenyl)-7-(4-(trifluoromethyl)-phenyl)-2-naphthoic acid (6, PPTN). A model of hP2Y(14)R based on recent hP2Y(12)R X-ray structures together with simulated antagonist docking suggested that the piperidine ring is suitable for fluorophore conjugation while preserving affinity. Chain-elongated alkynyl or amino derivatives of 6 for click or amide coupling were synthesized, and their antagonist activities were measured in hP2Y(14)R-expressing CHO cells. Moreover, a new Alexa Fluor 488 (AF488) containing derivative 30 (MRS4174, K(i) = 80 pM) exhibited exceptionally high affinity, as compared to 13 nM for the alkyne precursor 22. A flow cytometry assay employing 30 as a fluorescent probe was used to quantify specific binding to P2Y(14)R. Known P2Y receptor ligands inhibited binding of 30 with properties consistent with their previously established receptor selectivities and affinities. These results illustrate that potency in this series of 2-naphthoic acid derivatives can be preserved by chain functionalization, leading to highly potent fluorescent molecular probes for P2Y(14)R. Such conjugates will be useful tools in expanding the SAR of this receptor, which still lacks chemical diversity in its collective ligands. This approach demonstrates the predictive power of GPCR homology modeling and the relevance of newly determined X-ray structures to GPCR medicinal chemistry.
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spelling pubmed-42739802015-10-09 Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes Kiselev, Evgeny Barrett, Matthew O. Katritch, Vsevolod Paoletta, Silvia Weitzer, Clarissa D. Brown, Kyle A. Hammes, Eva Yin, Andrew L. Zhao, Qiang Stevens, Raymond C. Harden, T. Kendall Jacobson, Kenneth A. ACS Chem Biol [Image: see text] The P2Y(14) receptor (P2Y(14)R), one of eight P2Y G protein-coupled receptors (GPCR), is involved in inflammatory, endocrine, and hypoxic processes and is an attractive pharmaceutical target. The goal of this research is to develop high-affinity P2Y(14)R fluorescent probes based on the potent and highly selective antagonist 4-(4-(piperidin-4-yl)-phenyl)-7-(4-(trifluoromethyl)-phenyl)-2-naphthoic acid (6, PPTN). A model of hP2Y(14)R based on recent hP2Y(12)R X-ray structures together with simulated antagonist docking suggested that the piperidine ring is suitable for fluorophore conjugation while preserving affinity. Chain-elongated alkynyl or amino derivatives of 6 for click or amide coupling were synthesized, and their antagonist activities were measured in hP2Y(14)R-expressing CHO cells. Moreover, a new Alexa Fluor 488 (AF488) containing derivative 30 (MRS4174, K(i) = 80 pM) exhibited exceptionally high affinity, as compared to 13 nM for the alkyne precursor 22. A flow cytometry assay employing 30 as a fluorescent probe was used to quantify specific binding to P2Y(14)R. Known P2Y receptor ligands inhibited binding of 30 with properties consistent with their previously established receptor selectivities and affinities. These results illustrate that potency in this series of 2-naphthoic acid derivatives can be preserved by chain functionalization, leading to highly potent fluorescent molecular probes for P2Y(14)R. Such conjugates will be useful tools in expanding the SAR of this receptor, which still lacks chemical diversity in its collective ligands. This approach demonstrates the predictive power of GPCR homology modeling and the relevance of newly determined X-ray structures to GPCR medicinal chemistry. American Chemical Society 2014-10-09 2014-12-19 /pmc/articles/PMC4273980/ /pubmed/25299434 http://dx.doi.org/10.1021/cb500614p Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Kiselev, Evgeny
Barrett, Matthew O.
Katritch, Vsevolod
Paoletta, Silvia
Weitzer, Clarissa D.
Brown, Kyle A.
Hammes, Eva
Yin, Andrew L.
Zhao, Qiang
Stevens, Raymond C.
Harden, T. Kendall
Jacobson, Kenneth A.
Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title_full Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title_fullStr Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title_full_unstemmed Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title_short Exploring a 2-Naphthoic Acid Template for the Structure-Based Design of P2Y(14) Receptor Antagonist Molecular Probes
title_sort exploring a 2-naphthoic acid template for the structure-based design of p2y(14) receptor antagonist molecular probes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4273980/
https://www.ncbi.nlm.nih.gov/pubmed/25299434
http://dx.doi.org/10.1021/cb500614p
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