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A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties

Neurotensin receptors have been studied as molecular targets for the treatment of pain, schizophrenia, addiction, or cancer. Neurotensin (NT) and Contulakin-G, a glycopeptide isolated from a predatory cone snail Conus geographus, share a sequence similarity at the C-terminus, which is critical for a...

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Autores principales: Lee, Hee-Kyoung, Zhang, Liuyin, Smith, Misty D., Walewska, Aleksandra, Vellore, Nadeem A., Baron, Riccardo, McIntosh, J. Michael, White, H. Steve, Olivera, Baldomero M., Bulaj, Grzegorz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4322620/
https://www.ncbi.nlm.nih.gov/pubmed/25713532
http://dx.doi.org/10.3389/fphar.2015.00011
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author Lee, Hee-Kyoung
Zhang, Liuyin
Smith, Misty D.
Walewska, Aleksandra
Vellore, Nadeem A.
Baron, Riccardo
McIntosh, J. Michael
White, H. Steve
Olivera, Baldomero M.
Bulaj, Grzegorz
author_facet Lee, Hee-Kyoung
Zhang, Liuyin
Smith, Misty D.
Walewska, Aleksandra
Vellore, Nadeem A.
Baron, Riccardo
McIntosh, J. Michael
White, H. Steve
Olivera, Baldomero M.
Bulaj, Grzegorz
author_sort Lee, Hee-Kyoung
collection PubMed
description Neurotensin receptors have been studied as molecular targets for the treatment of pain, schizophrenia, addiction, or cancer. Neurotensin (NT) and Contulakin-G, a glycopeptide isolated from a predatory cone snail Conus geographus, share a sequence similarity at the C-terminus, which is critical for activation of neurotensin receptors. Both peptides are potent analgesics, although affinity and agonist potency of Contulakin-G toward neurotensin receptors are significantly lower, as compared to those for NT. In this work, we show that the weaker agonist properties of Contulakin-G result in inducing significantly less desensitization of neurotensin receptors and preserving their cell-surface density. Structure-activity relationship (SAR) studies suggested that both glycosylation and charged amino acid residues in Contulakin-G or NT played important roles in desensitizing neurotensin receptors. Computational modeling studies of human neurotensin receptor NTS1 and Contulakin-G confirmed the role of glycosylation in weakening interactions with the receptors. Based on available SAR data, we designed, synthesized, and characterized an analog of Contulakin-G in which the glycosylated amino acid residue, Gal-GalNAc-Thr10, was replaced by memantine-Glu10 residue. This analog exhibited comparable agonist potency and weaker desensitization properties as compared to that of Contulakin-G, while producing analgesia in the animal model of acute pain following systemic administration. We discuss our study in the context of feasibility and safety of developing NT therapeutic agents with improved penetration across the blood-brain barrier. Our work supports engineering peptide-based agonists with diverse abilities to desensitize G-protein coupled receptors and further emphasizes opportunities for conotoxins as novel pharmacological tools and drug candidates.
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spelling pubmed-43226202015-02-24 A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties Lee, Hee-Kyoung Zhang, Liuyin Smith, Misty D. Walewska, Aleksandra Vellore, Nadeem A. Baron, Riccardo McIntosh, J. Michael White, H. Steve Olivera, Baldomero M. Bulaj, Grzegorz Front Pharmacol Pharmacology Neurotensin receptors have been studied as molecular targets for the treatment of pain, schizophrenia, addiction, or cancer. Neurotensin (NT) and Contulakin-G, a glycopeptide isolated from a predatory cone snail Conus geographus, share a sequence similarity at the C-terminus, which is critical for activation of neurotensin receptors. Both peptides are potent analgesics, although affinity and agonist potency of Contulakin-G toward neurotensin receptors are significantly lower, as compared to those for NT. In this work, we show that the weaker agonist properties of Contulakin-G result in inducing significantly less desensitization of neurotensin receptors and preserving their cell-surface density. Structure-activity relationship (SAR) studies suggested that both glycosylation and charged amino acid residues in Contulakin-G or NT played important roles in desensitizing neurotensin receptors. Computational modeling studies of human neurotensin receptor NTS1 and Contulakin-G confirmed the role of glycosylation in weakening interactions with the receptors. Based on available SAR data, we designed, synthesized, and characterized an analog of Contulakin-G in which the glycosylated amino acid residue, Gal-GalNAc-Thr10, was replaced by memantine-Glu10 residue. This analog exhibited comparable agonist potency and weaker desensitization properties as compared to that of Contulakin-G, while producing analgesia in the animal model of acute pain following systemic administration. We discuss our study in the context of feasibility and safety of developing NT therapeutic agents with improved penetration across the blood-brain barrier. Our work supports engineering peptide-based agonists with diverse abilities to desensitize G-protein coupled receptors and further emphasizes opportunities for conotoxins as novel pharmacological tools and drug candidates. Frontiers Media S.A. 2015-02-10 /pmc/articles/PMC4322620/ /pubmed/25713532 http://dx.doi.org/10.3389/fphar.2015.00011 Text en Copyright © 2015 Lee, Zhang, Smith, Walewska, Vellore, Baron, McIntosh, White, Olivera and Bulaj. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Lee, Hee-Kyoung
Zhang, Liuyin
Smith, Misty D.
Walewska, Aleksandra
Vellore, Nadeem A.
Baron, Riccardo
McIntosh, J. Michael
White, H. Steve
Olivera, Baldomero M.
Bulaj, Grzegorz
A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title_full A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title_fullStr A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title_full_unstemmed A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title_short A marine analgesic peptide, Contulakin-G, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
title_sort marine analgesic peptide, contulakin-g, and neurotensin are distinct agonists for neurotensin receptors: uncovering structural determinants of desensitization properties
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4322620/
https://www.ncbi.nlm.nih.gov/pubmed/25713532
http://dx.doi.org/10.3389/fphar.2015.00011
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